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Showing 1 – 50 of 74 results.
Curated

Adaptation of the DNase I Procedure to the Biomek ® NXP Robotic Platform for More Efficient and Automated Sexual Assault Sample Processing, Virginia, 2019-2022 (ICPSR 38903)

Released/updated on: 2025-08-28
Geographic coverage: Virginia
Time period: 2019-01-01--2022-01-01
The goal of the project was to adapt, optimize, validate and integrate DNase I differential extraction protocol into the current sexual assault casework workflow on the Beckman Coulter Biomek NXP automation workstations (Brea, CA) at the Virginia Department of Forensic Science. The end goal was to expedite, without compromising quality, the processing of sexual assault samples.
Curated

Advancing the Understanding of 3D Imaging for Firearms Identification, United States, 2021-2025 (ICPSR 39895)

Released/updated on: 2026-07-15
Geographic coverage: United States

The focus of this research study was to determine if the data and 3D images of bullet and cartridge cases acquired from different 3D imaging instruments are interchangeable between systems. The firearm that fired each bullet and cartridge case is known and scans were obtained with a variety of instruments. The gun, caliber, and type of ammunition were controlled.

Curated
Simple Crosstabs

Age and Sex Estimation from the Human Clavicle in the American Population, 1912-1938 and 1986-1998 (ICPSR 25901)

Released/updated on: 2014-06-19
Geographic coverage: United States
Time period: 1986-01-01--1998-01-01, 1912-01-01--1938-01-01
This study investigated skeletal maturation and gender dimorphism in the human clavicle in the American population. Biological data were collected on two skeletal collections: the William F. McCormick Clavicle Collection and the Hamann-Todd Osteological Collection. Size and shape data were collected from computed tomography (CT) scans of the McCormick clavicles. Several automated measurements were taken on 1,413 McCormick clavicles, including three traditional and six non-traditional measurements (Dataset 1). A total of 593 individuals from the William F. McCormick Clavicle Collection (Dataset 2) and 354 individuals from the Hamann-Todd Osteological Collection (Dataset 3) were scored for medial clavicular epiphyseal fusion using McKern and Stewart's (1957) five-phase rating system.
Curated

AI Enabled Community Supervision for Criminal Justice Services, 2020-2023 (ICPSR 38996)

Released/updated on: 2023-12-20

This project aimed to revolutionize the reentry process for justice-involved individuals (JII) by harnessing the power of artificial intelligence (AI) and advanced technologies. The centerpiece of the endeavor is the AI-based Support and Monitoring System, or AI-SMS, a cutting-edge platform designed to assist JII and their dedicated caseworkers in their journey to reintegrate seamlessly into the community. While the primary focus is on JII, the researchers recognize the critical role played by caseworkers-clinically trained individuals who facilitate the reentry process from a community perspective.

AI-SMS was conceived to be a multifaceted tool that provides case workers with early warning indicators of risky behavior and equips JII with the means and strategies to mitigate these risks, aligning with best practices in hybrid supervision. At its core, the system is committed to delivering personalized resources and opportunities to JII, complementing the support offered by caseworkers.

Curated

Analysis of Small Particles Adhering to the Edges of Duct Tape as a Means to Make Associations in a Way that is Independent of Manufactured Characteristics, 2022 (ICPSR 38909)

Released/updated on: 2023-09-05
This study collected data to determine if very small particles trapped in the adhesive along the exposed edges of duct tape rolls contains sufficient numbers and variety of small particles, acquired post-manufacture, to allow comparisons and measurable discrimination among tape segments from different rolls, and to allow meaningful, quantitative associations among tape segments from the same roll.
Curated

Application of the Human Virome to Touched Objects and Hair Shafts, Nebraska, 2019-2021 (ICPSR 39810)

Released/updated on: 2026-03-31
Geographic coverage: United States, Nebraska
Time period: 2019-01-01--2021-01-01

This study is designed to address the ongoing need to create forensically relevant linkages between persons, places, and objects by developing the untapped potential of the human viral microbiome (virome). The human virome is a source of rich genetic diversity that needs to be examined to determine if it is stable, transferable, and provides a sufficient power of discrimination to be used as an alternative to traditional human forensic deoxyribonucleic acid (DNA) tests when such tests are infeasible. The human bacterial microbiome is already being examined as an alternative method for human identification in forensically relevant cases. The human virome offers some advantages as the viral genomes are even smaller than those of bacteria, and thus are potentially more physically stable, have a variety of morphologies (double- and single-stranded) increasing the possible number of discriminating markers, and is present throughout the human body, including the skin and body fluids, making it transferable.

Curated

Automatic Acquisition and Identification of Footwear Class Characteristics, United States, 2020-2022 (ICPSR 39354)

Released/updated on: 2025-03-17

Most footwear evidence in the United States is evaluated on the basis of class characteristics, without regard for individualizing information. Unfortunately, it is very difficult to assess the strength of a class characteristic match due to lack of data about the frequency of class characteristics within a population. This project addresses the lack of data through the development of equipment and software which can automate the data collection process. The data include images taken with the prototype shoe scanner on a college campus located in Ames, Iowa.

For additional information, see the project's final report prepared for the National Institute of Justice.

Curated

A Black Box Study of the Accuracy and Reproducibility of Tire Evidence Examiners' Conclusions, 2022-2023 (ICPSR 39084)

Released/updated on: 2024-03-12

Tire impression evidence can be a valuable tool during a crime scene investigation - it can link vehicles to scenes or secondary locations, and reveal information about the series of events surrounding a crime. The interpretation of tire impression evidence relies on the expertise of forensic tire examiners; however, until this study was conducted there had not been any published research empirically evaluating the decisions reported by practicing forensic tire examiners. This study constitutes the first formal black box study of tire impression evidence examiners; the results are an empirical evaluation of the accuracy and reproducibility of 238 tire comparison decisions reported by 17 examiners. The results of this study provide key information about the practice of tire impression examination to laboratory managers, practitioners, and the legal system that can help to facilitate improvements in standardization, training, and practice.

Curated
Restricted

Blind Collaborative Justice Survey, 2014 [UNITED STATES] (ICPSR 35258)

Released/updated on: 2017-06-29
Geographic coverage: United States
Time period: 2014-04-11--2014-04-30

These data are part of NACJD's Fast Track Release and are distributed as they there received from the data depositor. The files have been zipped by NACJD for release, but not checked or processed except of the removal of direct identifiers. Users should refer to the accompany readme file for a brief description of the files available with this collections and consult the investigator(s) if further information is needed.

This study conducted an experimental investigation of two potential contributors to invalid testimony within adversarial litigation involving forensic evidence. First, the experts' knowledge of their party representation (i.e., prosecution vs. defense counsel), and secondly the lack of input from the relevant scientific community. The study used an experimental survey design with a realistic criminal case to examine the effects of blinding experts to their party representation and consensus feedback from a panel of experts to quantify and reduce testimonial bias.

Curated

Census of Publicly Funded Forensic Crime Laboratories, 2002 (ICPSR 4287)

Released/updated on: 2005-09-02
Geographic coverage: United States
Time period: 2003-01-01--2004-01-01
To obtain current baseline information about the workload and operations of the nation's forensic crime laboratories, the Bureau of Justice Statistics (BJS) conducted its first census of publicly funded forensic crime laboratories from 2003 to 2004. Data were collected on the organization, functions, budget, staffing, workload, and performance expectations of the nation's publicly funded federal, state, and local forensic crime laboratories currently operating.
Curated

Census of Publicly Funded Forensic Crime Laboratories, 2002 and 2005 (ICPSR 23120)

Released/updated on: 2008-10-24
Geographic coverage: United States
This data collection contains data from censuses of publicly funded crime laboratories in 2002 and 2005. The data were collected to examine change and stability in the operations of crime laboratories serving federal, state, and local jurisdictions. The Bureau of Justice Statistics (BJS) first surveyed forensic crime laboratories in 1998, focusing solely on agencies that performed DNA analysis. The National Institute of Justice (NIJ) funded the 1998 study as part of its DNA Laboratory Improvement Program. The BJS' National Study of DNA Laboratories was repeated in 2001. An expanded version of the data collection, called the Census of Publicly Funded Forensic Crime Laboratories, was first conducted among all forensic crime laboratories in 2002. Data were collected from 2003 to 2004 on the organization, functions, budget, staffing, workload, and performance expectations of the nation's forensic crime laboratories operating in 2002. A total of 306 of the 351 crime laboratories operating in 2002 responded to the census. The latest census obtained data from 351 of the 389 laboratories operating in 2005, including at least 1 laboratory from every state. The nation's publicly funded forensic crime laboratories performed a variety of forensic services in 2005, including DNA testing and controlled substance identification for federal, state, and local jurisdictions. The 2005 Census of Publicly Funded Forensic Crime Laboratories obtained detailed information on the types of forensic requests received by these laboratories and the resources needed to complete them. The census also collected data on crime laboratory budgets, personnel, accreditations, and backlogged cases.
Curated
Simple Crosstabs

Census of Publicly Funded Forensic Crime Laboratories, 2009 (ICPSR 34340)

Released/updated on: 2018-01-26
Geographic coverage: United States
This data collection contains data from censuses of publicly funded crime laboratories in 2009. The data were collected to examine change and stability in the operations of crime laboratories serving federal, state, and local jurisdictions. The Bureau of Justice Statistics (BJS) first surveyed forensic crime laboratories in 1998, focusing solely on agencies that performed DNA analysis. The National Institute of Justice (NIJ) funded the 1998 study as part of its DNA Laboratory Improvement Program. The BJS' National Study of DNA Laboratories was repeated in 2001. An expanded version of the data collection, called the Census of Publicly Funded Forensic Crime Laboratories, was first conducted among all forensic crime laboratories in 2002. For the 2009 study, data were collected from 2010 to 2011 on the organization, functions, budget, staffing, workload, and performance expectations of the nation's forensic crime laboratories operating in 2009. A total of 397 of the 411 eligible crime laboratories operating in 2009 responded to the census, including at least 1 laboratory from every state. The nation's publicly funded forensic crime laboratories performed a variety of forensic services in 2009, including DNA testing and controlled substance identification for federal, state, and local jurisdictions. The 2009 Census of Publicly Funded Forensic Crime Laboratories obtained detailed information on the types of forensic requests received by these laboratories and the resources needed to complete them. The census also collected data on crime laboratory budgets, personnel, accreditations, and backlogged cases.
Curated
Simple Crosstabs

Census of Publicly Funded Forensic Crime Laboratories, 2014 (ICPSR 36759)

Released/updated on: 2017-04-19
Geographic coverage: United States
This data collection contains data from censuses of publicly funded crime laboratories in 2014. The data were collected to examine change and stability in the operations of crime laboratories serving federal, state, and local jurisdictions. The Bureau of Justice Statistics (BJS) first surveyed forensic crime laboratories in 1998, focusing solely on agencies that performed DNA analysis. The National Institute of Justice (NIJ) funded the 1998 study as part of its DNA Laboratory Improvement Program. The BJS' National Study of DNA Laboratories was repeated in 2001. An expanded version of the data collection, called the Census of Publicly Funded Forensic Crime Laboratories, was first conducted among all forensic crime laboratories in 2002. For the 2014 study, data were collected from April 2015 to September 2015 on the organization, functions, budget, staffing, workload, and performance expectations of the nation's forensic crime laboratories operating in 2014. A total of 360 of the 409 eligible crime laboratories operating in 2014 responded to the census. The nation's publicly funded forensic crime laboratories performed a variety of forensic services in 2014, including DNA testing and controlled substance identification for federal, state, and local jurisdictions. The 2014 Census of Publicly Funded Forensic Crime Laboratories obtained detailed information on the types of forensic requests received by these laboratories and the resources needed to complete them. The census also collected data on crime laboratory budgets, personnel, accreditations, and backlogged cases.
Curated

Census of Publicly Funded Forensic Crime Laboratories, 2020 (ICPSR 38901)

Released/updated on: 2024-01-29
Geographic coverage: United States
Time period: 2019-01-01--2020-01-01

This data collection contains data from the 2020 Census of Publicly Funded Forensic Crime Laboratories (CPFFCL). The CPFFCL collected data on organizational characteristics, functions, budget, staffing, workload, resources, and quality assurance practices of publicly funded forensic crime laboratories operating in the U.S. and serving federal, state, and local jurisdictions. The CPFFCL includes crime labs that employed one or more full-time scientists who possess a minimum of a bachelor's degree in chemistry, physics, biology, criminalistics, forensic science or a closely related field and whose principal functions are examining physical evidence in criminal matters and providing reports and testimony to courts of law with respect to such evidence. Private laboratories were excluded from the CPFFCL. Laboratories may operate independently or as part of a larger system. Respondents to the CPFFCL could choose to respond as individual labs or as one system. A total of 423 individual labs, constituting 326 standalone labs and multilab systems, received the questionnaire. A total of 382 (90%) individual labs responded to the 2020 CPFFCL and 293 (90%) standalone labs and multilab systems responded. For the 2020 study, data were collected from July 2021 to February 2022.

The Bureau of Justice Statistics (BJS) first surveyed forensic crime laboratories in 1998, focusing solely on agencies that performed DNA analysis. The National Institute of Justice (NIJ) funded the 1998 study as part of its DNA Laboratory Improvement Program. The BJS' National Study of DNA Laboratories was repeated in 2001. An expanded version of the data collection, called the Census of Publicly Funded Forensic Crime Laboratories, was first conducted among all forensic crime laboratories in 2002.

Curated

Comparative Evaluation of Genotyping Technologies for Investigative Genetic Genealogy in Sexual Assault Casework, 2022-2024 (ICPSR 39288)

Released/updated on: 2024-12-03
Investigative Genetic Genealogy (IGG) offers a capability to identify investigative leads when the Combined DNA Index System (CODIS) searching is unproductive. IGG can provide time efficient methods for removing perpetrators of serial violent crimes, such as rape and murder from the community, thereby increasing public safety. However, use of IGG has preceded establishment of best practices. Development of best practices must start with a systematic evaluation of the laboratory technologies currently used to generate high-density single nucleotide polymorphism (SNP) genotypes. This study evaluated the three technologies currently available for developing high-density SNP genotypes from human DNA samples and compared their abilities to generate profiles from challenging forensic samples related to sexual assault casework across two separate phases to assess. More specifically, this project sought to investigate how low-template DNA (e.g., around 1-2 ng inputs) and highly degraded DNA would affect the quality, accuracy, and reproducibility of high-density SNP genotypes and ultimately affect the performance of IGG to identify potential relatives in the GEDmatch PRO database, a dedicated portal designed to support police and forensic teams with investigative comparisons to GEDmatch data.
Curated

Comparative Evaluation of Low- and High-Resolution Mass Spectrometric Approaches for Screening and Confirmation of New Psychoactive Substances in Human Specimen Matrices, 2022-2025 (ICPSR 39823)

Released/updated on: 2026-04-10
Time period: 2022-01-01--2025-01-01

New psychoactive substances (NPS) are emerging compounds that are analogs or derivatives of controlled substances and marketed as "legal highs" to evade law enforcement regulations. The most promising current approach to comprehensive screening and confirmation of NPS in forensic toxicology is analysis by liquid chromatography (LC) with mass spectrometric (MS) detection. This project performed side-by-side evaluations of targeted screening analyses for NPS by LC-QqQ-MS compared to LC-QTOF-MS and of untargeted analyses by LC-QTOF-MS compared to LC-Q-Orbitrap-MS. These comparisons were conducted using three important human specimen matrices: urine, whole blood, and oral fluid. The effectiveness of rapid sample preparation for both targeted and nontargeted screening was also demonstrated. Applicability of the MS workflows was confirmed by screening of authentic urine from a drug testing laboratory.

Curated
Partially restricted

Database for Forensic Anthropology in the United States, 1962-1991 (ICPSR 2581)

Released/updated on: 2006-03-30
Geographic coverage: United States
Time period: 1962-01-01--1991-01-01
This project was undertaken to establish a computerized skeletal database composed of recent forensic cases to represent the present ethnic diversity and demographic structure of the United States population. The intent was to accumulate a forensic skeletal sample large and diverse enough to reflect different socioeconomic groups of the general population from different geographical regions of the country in order to enable researchers to revise the standards being used for forensic skeletal identification. The database is composed of eight data files, comprising four categories. The primary "biographical" or "identification" files (Part 1, Demographic Data, and Part 2, Geographic and Death Data) comprise the first category of information and pertain to the positive identification of each of the 1,514 data records in the database. Information in Part 1 includes sex, ethnic group affiliation, birth date, age at death, height (living and cadaver), and weight (living and cadaver). Variables in Part 2 pertain to the nature of the remains, means and sources of identification, city and state/country born, occupation, date missing/last seen, date of discovery, date of death, time since death, cause of death, manner of death, deposit/exposure of body, area found, city, county, and state/country found, handedness, and blood type. The Medical History File (Part 3) represents the second category of information and contains data on the documented medical history of the individual. Variables in Part 3 include general comments on medical history as well as comments on congenital malformations, dental notes, bone lesions, perimortem trauma, and other comments. The third category consists of an inventory file (Part 4, Skeletal Inventory Data) in which data pertaining to the specific contents of the database are maintained. This includes the inventory of skeletal material by element and side (left and right), indicating the condition of the bone as either partial or complete. The variables in Part 4 provide a skeletal inventory of the cranium, mandible, dentition, and postcranium elements and identify the element as complete, fragmentary, or absent. If absent, four categories record why it is missing. The last part of the database is composed of three skeletal data files, covering quantitative observations of age-related changes in the skeleton (Part 5), cranial measurements (Part 6), and postcranial measurements (Part 7). Variables in Part 5 provide assessments of epiphyseal closure and cranial suture closure (left and right), rib end changes (left and right), Todd Pubic Symphysis, Suchey-Brooks Pubic Symphysis, McKern & Steward--Phases I, II, and III, Gilbert & McKern--Phases I, II, and III, auricular surface, and dorsal pubic pitting (all for left and right). Variables in Part 6 include cranial measurements (length, breadth, height) and mandibular measurements (height, thickness, diameter, breadth, length, and angle) of various skeletal elements. Part 7 provides postcranial measurements (length, diameter, breadth, circumference, and left and right, where appropriate) of the clavicle, scapula, humerus, radius, ulna, scarum, innominate, femur, tibia, fibula, and calcaneus. A small file of noted problems for a few cases is also included (Part 8).
Curated

Decontamination of Crime Scene Equipment: Evaluating Current Methods and Determining Best Practices, United States, 2019-2020 (ICPSR 37977)

Released/updated on: 2024-05-29
Geographic coverage: United States
Time period: 2019-01-01--2020-01-01

A 2016 needs assessment conducted by the National Institute of Standards and Technology's Organization of Scientific Area Committees for Forensic Science (NIST/OSAC) Crime Scene Investigation (CSI) Subcommittee identified the decontamination of crime scene equipment as a gap that must be addressed. Currently, there are no widely accepted standard operating procedures (SOP) and/or best practices for crime scene investigators to follow regarding equipment decontamination. Furthermore, to date, there has been no peer-reviewed published research to assess the effectiveness of the different decontamination methods that are currently employed by crime laboratories and law enforcement agencies involved in crime scene investigations. Ineffective decontamination of crime scene equipment has the potential to lead to cross-contamination between scenes as well as secondary transfer to evidence after contact with equipment. With increased sensitivity of current DNA analysis protocols, the ineffective decontamination of CSI equipment has implication for wrongful convictions due to potential secondary DNA transfer.

To address this gap, and in response to the NIST/OSAC needs assessment, RTI International (RTI) performed a comprehensive evaluation of several decontamination methods on commonly used CSI equipment to provide the community with evidence-based recommendations of effective decontamination protocols. RTI identified reusable CSI equipment that is most likely to be contaminated with biological material after use at a crime scene based on literature searches, crime laboratory SOP reviews, and discussions with crime scene practitioners. Seven types of crime scene-related equipment were used to determine the extent of the effectiveness of nine frequently used decontamination methods. The total amount of DNA remaining on the equipment after a controlled decontamination was quantified using Quantifiler Trio DNA Quantification Kit and processed for short tandem repeat markers (STRs) with GlobalFiler. Quantifiler Trio includes a degradation index (DI) that provides an estimation of the quality of DNA in potentially degraded samples.

Curated

Detection and Identification of Hair Dyes by Surface-Enhanced Raman Spectroscopy (SERS), 2021-2026 (ICPSR 39772)

Released/updated on: 2026-03-25
Time period: 2021-01-01--2026-01-01

The primary goal of this project is to develop and deploy Surface-Enhanced Raman Spectroscopy (SERS) as a confirmatory, rapid, and minimally destructive tool for the forensic analysis of colorants directly on human hair at a crime scene.

There are several datasets associated with this study that are available for download.

Curated

Development of Microscopical Methods for the Systematic Analysis of Chemically Reacted, Improvised Low Explosives and Related Residues, Chicago, Illinois, 2020-2023 (ICPSR 39116)

Released/updated on: 2025-05-29
Geographic coverage: United States, Chicago, Illinois
Time period: 2020-01-01--2023-01-01

This 2020 study was funded by the National Institute of Justice to advance knowledge about the microscopical methods used to examine materials commonly found in commercial and improvised low explosives. To achieve this, researchers developed reference documentation and an "Atlas of Unburned, Partially Burned, and Fully Burned Low Explosive and Related Materials" for the characterization, comparison, and identification of such materials. This data collection includes 57 files with images and descriptive captions documenting methods of microscopical analysis for a variety of chemically reacted, improvised low explosives and related residues. Details on the optical and physical properties, information regarding chemical solubility, recrystallization, microcrystal and microchemical spot tests, melting points, potential decomposition products, references, and photomicrographs of these materials are included as a PDF table. Additional information on this research can be found on the McCrone Research Institute website.

Curated

Development of Next-Generation Fingermark Lifters and On-the-Spot Visualization Devices, Australia and United States, 2017-2021 (ICPSR 38316)

Released/updated on: 2023-02-13
Geographic coverage: United States, Australia
Time period: 2017-01-01--2021-01-01

Fingermark identification remains one of the most important and unambiguous approaches to place perpetrators at crime scenes. While a great number of forensic techniques for the visualization of latent marks already exist, they all suffer from one or more shortcomings such as: limited applicability with regard to the age of a mark or the nature of the surface it was deposited on ("substrate"); the requirement of expensive laboratory equipment and special training; and the potential to alter or even destroy evidence, or at least leave a visible record of their application.

The goal of this project was to develop and validate novel fingermark lifters, which allow instantaneous, on-the-spot visualization of marks. The underlying detection principle used with these lifters is based on the reaction of either pH-sensitive or amine-reactive substances - immobilized on suitable solid supports such as membranes - with chemicals contained in fingermark residues (e.g., lactic acid, amino acids, proteins, and amino sugars). The exposure of appropriate reagents to such an environment causes a change in their spectroscopic properties, which can be seen, depending on the type of reagent, either under ambient or luminescent light conditions.

Curated

DNA Contamination, Degradation, Damage and Associated Microbiomes: A Comparative Analysis Through Massive Parallel Sequencing and Capillary Electrophoresis, United States, 2019-2021 (ICPSR 38608)

Released/updated on: 2024-06-13
Geographic coverage: United States
Time period: 2019-01-01--2021-01-01

This project evaluated whether DNA contamination can mimic the characteristics of low copy number (LCN), aged, damaged, and degraded DNA samples. Massive Parallel Sequencing/Next Generation Sequencing (MPS/NGS) was used to see if specific patterns of nucleotide damage is present with surface DNA contamination that has been aged and/or exposed to varying concentrations of sodium hypochlorite (bleach) and ultraviolet (UV). The project included two phases.

  • Phase 1.0: Understand the process and rate of degradation and damage of applied touch DNA contamination on human skeletal remains and evidence tape. Five time intervals (ranging from 0 days to 1 year), three bleach treatments, and three UV treatments were tested. Two additional handlers (cumulative) created a scenario of minor contributors often encountered in forensic scenarios.
  • Phase 2.0: Understand the utility and degradation of the skin microbiome associated with touch DNA. This included determining if unique forensic signatures can be identified and compared, especially on bone substrates that may have their own microbiome signature.
Curated

Enhanced Ignitable Liquid and Substrate Database Functionality for Improved Casework and Research, 2022-2024 (ICPSR 39224)

Released/updated on: 2024-09-27
Time period: 2022-01-01--2024-01-01

The Ignitable Liquids Reference Collection (ILRC) and Substrate databases contain separate compilations of data from reference materials that is intended for use by forensic analysts to conduct fire debris analysis. The ILRC, Substrate, and Fire Debris databases were redesigned and made available on a single website to enhance usability in casework and research. This project also investigated the construction of digital fire debris data by mixing ignitable liquid and substrate(s) digital data. Total ion chromatograms and total ion spectra of in silico fire debris were created from data in the Ignitable Liquids Reference Collection and Substrate databases. In silico mixing provides the ability to develop large data sets for machine learning.

Curated

Estimating the Prevalence of Wrongful Convictions, Virginia, 1973-1987 (ICPSR 36836)

Released/updated on: 2021-09-15
Geographic coverage: United States, Virginia
Time period: 1973-01-01--1987-01-01
This study extends research on wrongful convictions in the United States and the factors associated with justice system errors that lead to the incarceration of innocent people. Among cases where physical evidence produced a DNA profile of known origin, 12.6 percent of the cases had DNA evidence that would support a claim of wrongful conviction. Extrapolating to all cases in our dataset, the investigators estimate a slightly smaller rate of 11.6 percent. This result was based on forensics, case processing, and disposition data collected on murder and sexual assault convictions in the 1970s and 1980s across 56 circuit courts in the state of Virginia. To address limitations in the amount and type of information provided in forensic files that were reviewed in the Urban Institute's prior examination of these data, the current research includes data collected through a review of all publicly available documents on court processes and dispositions across the 714 convictions, which the investigators use to reassess prior estimates of wrongful conviction.
Curated

Evaluation of the Bureau of Justice Assistance Sexual Assault Kit Initiative, United States, 2018 (ICPSR 37897)

Released/updated on: 2022-03-30
Geographic coverage: United States

Since 2015, the Bureau of Justice Assistance (BJA) has funded sites to engage in reforms intended to improve the national response to sexual assault cases. The goals of this initiative are to (1) create a coordinated community response that ensures just resolution to unsubmitted sexual assault kit (SAK) cases through a victim-centered approach and (2) build jurisdictions' capacity to prevent the development of conditions that lead to high numbers of unsubmitted sexual assault kits. Site efforts to address these issues include agencies such as law enforcement, prosecution, forensic laboratories, and victim advocacy service organizations. Westat was awarded a contract by the National Institute of Justice (NIJ) to assess components of BJA's Sexual Assault Kit Initiative (SAKI). The study includes (1) an evaluability assessment of 17 sites to determine their readiness for an evaluation, (2) a process evaluation and system reform assessment of the 17 sites, (3) a feasibility assessment of using case level data for an outcome evaluation, and analysis of a subset of unsubmitted SAK cases to identify how characteristics of incidents, offenders, and victims are associated with case processing decisions and outcomes, and (4) development of a long-term outcome evaluation plan.

Two sources of data are archived with NAJCD: (1) coded qualitative data from primarily on-site interviews the Westat Team conducted in 2018 with stakeholders from 17 of the fiscal year (FY) 2015 SAKI grantees and 2 private lab facilities and 2) quantitative case-level data from the 2 FY 2015 SAKI grantees on SAKI cases associated with previously unsubmitted sexual assault kits that were determined to contain foreign DNA or biological evidence through laboratory testing. The interview data file contains coded data from 172 interviews the research team conducted with one or more agency representatives regarding their organization's goals, strategies, and activities for processing sexual assault kits, and associated lessons learned, challenges, and expected outcomes. The quantitative case-level data file includes case-level information on 576 sexual assault kits determined to have DNA and associated cases included in the 2 sites' SAKI inventories. The case-level data captures information on case or offense-level information (e.g., date of offense, date offense reported to police, number of victims and suspects involved, investigation and prosecution activities), victim-level information (e.g., victim age, sex, race, participation in investigation), and suspect-level information (e.g., suspect's age, race, sex, criminal history).

Curated

Evaluation of the Occurrence and Associative Value of Non-Identifiable Fingermarks on Unfired Ammunition in Handguns for Evidence Supporting Proof of Criminal Possession, Use and Intent, 2022-2024 (ICPSR 39306)

Released/updated on: 2025-01-07

The overall goal of this project was to answer the question of how often non-identifiable fingermarks occur on naturally loaded handgun ammunition and what range of associative values can be expected. This is a potential new source of evidence, as current forensic science practices set these fingermarks aside, leaving them unexamined. The project was successful, with highly significant findings showing that non-identifiable fingermarks with strong associative value are found frequently on loaded handgun ammunition. Utilization of this new source of evidence will require adjustment of long-standing forensic examination practices and balancing the level of effort required with the utility of the resulting associations. To do this one important follow-on step is replacing the labor-intensive research laboratory methods applied in this project with more efficient technologies available in forensic laboratories.

The project produced datasets that include images of 415 non-identifiable fingermarks in .tif format, and corresponding images with annotation of fingermark minutiae in .jpg format. The accompanying spreadsheets contain summary information for each of 1263 rounds of ammunition (number of identifiable and non-identifiable fingermarks found, the number of annotated minutiae for the marks, the handgun type - semi-automatic vs. revolver - and the caliber class), as well as the results from each of the handguns sampled.

Curated

Evaluation of the Phoenix, Arizona, Homicide Clearance Initiative, 2003-2005 (ICPSR 26081)

Released/updated on: 2011-07-05
Geographic coverage: United States, Phoenix, Arizona
Time period: 2003-07-01--2005-06-30
The purpose of the study was to conduct a process and outcome evaluation of the Homicide Clearance Project in the Phoenix, Arizona Police Department. The primary objective of the Homicide Clearance Project was to improve homicide clearance rates by increasing investigative time through the transfer of four crime scene specialists to the homicide unit. In 2004, the Phoenix Police Department received a grant from the Bureau of Justice Assistance providing support for the assignment of four crime scene specialists directly to the department's Homicide Unit. Responsibilities of the crime scene specialists were to collect evidence at homicide scenes, prepare scene reports, develop scene diagrams, and other supportive activities. Prior to the project, homicide investigators were responsible for evidence collection, which reduced the time they could devote to investigations. The crime scene specialists were assigned to two of the four investigative squads within the homicide unit. This organizational arrangement provided for a performance evaluation of the squads with crime scene specialists (experimental squads) against the performance of the other squads (comparison squads). During the course of the evaluation, research staff coded information from all homicides that occurred during the 12-month period prior to the transfers (July 1, 2003 - June 30, 2004), referred to as the baseline period, the 2-month training period (July 1, 2004 - August 31, 2004), and a 10-month test period (September 1, 2004 - June 30, 2005). Data were collected on 404 homicide cases (Part 1), 532 homicide victims and survivors (Part 2), and 3,338 records of evidence collected at homicide scenes (Part 3). The two primary sources of information for the evaluation were investigative reports from the department's records management system, called the Police Automated Computer Entry (PACE) system, and crime laboratory reports from the crime laboratory's Laboratory Information Management System (LIMS). Part 1, Part 2, and Part 3 each contain variables that measure squad type, time period, and whether six general categories of evidence were collected. Part 1 contains a total of 18 variables including number of investigators, number of patrol officers at the scene, number of witnesses, number of crime scene specialists at the scene, number of investigators collecting evidence at the scene, total number of evidence collectors, whether the case was open or closed, type of arrest, and whether the case was open or closed by arrest. Part 2 contains a total of 37 variables including victim characteristics and motives. Other variables in Part 2 include an instrumental/expressive homicide indicator, whether the case was open or closed, type of arrest, whether the case was open or closed by arrest, number of investigators, number of patrol officers at the scene, number of witnesses, and investigative time to closure. Part 3 contains a total of 46 variables including primary/secondary scene indicator, scene type, number of pieces of evidence, total time at the scene, and number of photos taken. Part 3 also includes variables that measure whether 16 specific types of evidence were found and the number of items of evidence that were collected for 13 specific evidence types.
Curated
Simple Crosstabs

Evidence, Sexual Assaults, and Case Outcomes: Understanding the Role of Sexual Assault Kits, Non-Forensic Evidence, and Case Characteristics, 2015-2017 (ICPSR 37261)

Released/updated on: 2020-03-31
Geographic coverage: United States
Time period: 2015-01-01--2017-01-01
This project examined the role of sexual assault medical forensic exams (sexual assault kits) and other case characteristics in achieving investigative and prosecutorial outcomes in sexual assault cases. The study team conducted comprehensive reviews of over 500 sexual assault cases based on reports to police to identify evidence and case characteristics as they progress through case processing. Using statistical models, the study team predicted case outcomes using a variety of case, suspect, and victim characteristics, with a focus on the role of sexual assault exams and kits. Additionally, the study team interviewed key stakeholders in each site to supplement the case-level information, including law enforcement, prosecutors, representatives from victim service agencies, and sexual assault nurse examiners.
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Examination of Crime Guns and Homicide in Pittsburgh, Pennsylvania, 1987-1998 (ICPSR 2895)

Released/updated on: 2006-03-30
Geographic coverage: United States, Pennsylvania, Pittsburgh
This study examined spatial and temporal features of crime guns in Pittsburgh, Pennsylvania, in order to ascertain how gun availability affected criminal behavior among youth, whether the effects differed between young adults and juveniles, and whether that relationship changed over time. Rather than investigating the general prevalence of guns, this study focused only on those firearms used in the commission of crimes. Crime guns were defined specifically as those used in murders, assaults, robberies, weapons offenses, and drug offenses. The emphasis of the project was on the attributes of crime guns and those who possess them, the geographic sources of those guns, the distribution of crime guns over neighborhoods in a city, and the relationship between the prevalence of crime guns and the incidence of homicide. Data for Part 1, Traced Guns Data, came from the City of Pittsburgh Bureau of Police. Gun trace data provided a detailed view of crime guns recovered by police during a two-year period, from 1995 to 1997. These data identified the original source of each crime gun (first sale to a non-FFL, i.e., a person not holding a Federal Firearms License) as well as attributes of the gun and the person possessing the gun at the time of the precipitating crime, and the ZIP-code location where the gun was recovered. For Part 2, Crime Laboratory Data, data were gathered from the local county crime laboratory on guns submitted by Pittsburgh police for forensic testing. These data were from 1993 to 1998 and provided a longer time series for examining changes in crime guns over time than the data in Part 1. In Parts 3 and 4, Stolen Guns by ZIP-Code Data and Stolen Guns by Census Tract Data, data on stolen guns came from the local police. These data included the attributes of the guns and residential neighborhoods of owners. Part 3 contains data from 1987 to 1996 organized by ZIP code, whereas Part 4 contains data from 1993 to 1996 organized by census tract. Part 5, Shots Fired Data, contains the final indicator of crime gun prevalence for this study, which was 911 calls of incidents involving shots fired. These data provided vital information on both the geographic location and timing of these incidents. Shots-fired incidents not only captured varying levels of access to crime guns, but also variations in the willingness to actually use crime guns in a criminal manner. Part 6, Homicide Data, contains homicide data for the city of Pittsburgh from 1990 to 1995. These data were used to examine the relationship between varying levels of crime gun prevalence and levels of homicide, especially youth homicide, in the same city. Part 7, Pilot Mapping Application, is a pilot application illustrating the potential uses of mapping tools in police investigations of crime guns traced back to original point of sale. NTC. It consists of two ArcView 3.1 project files and 90 supporting data and mapping files. Variables in Part 1 include date of manufacture and sale of the crime gun, weapon type, gun model, caliber, firing mechanism, dealer location (ZIP code and state), recovery date and location (ZIP code and state), age and state of residence of purchaser and possessor, and possessor role. Part 2 also contains gun type and model, as well as gun make, precipitating offense, police zone submitting the gun, and year the gun was submitted to the crime lab. Variables in Parts 3 and 4 include month and year the gun was stolen, gun type, make, and caliber, and owner residence. Residence locations are limited to owner ZIP code in Part 3, and 1990 Census tract number and neighborhood name in Part 4. Part 5 contains the date, time, census tract and police zone of 911 calls relating to shots fired. Part 6 contains the date and census tract of the homicide incident, drug involvement, gang involvement, weapon, and victim and offender ages. Data in Part 7 include state, county, and ZIP code of traced guns, population figures, and counts of crime guns recovered at various geographic locations (states, counties, and ZIP codes) where the traced guns first originated in sales by an FFL to a non-FFL individual. Data for individual guns are not provided in Part 7.
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Examination of the Conditions Affecting Forensic Scientists' Workplace Productivity and Occupational Stress [United States], 2012-2013 (ICPSR 35075)

Released/updated on: 2017-06-13
Geographic coverage: United States
Time period: 2012-01-01--2013-01-01

These data are part of NACJD's Fast Track Release and are distributed as they were received from the data depositor. The files have been zipped by NACJD for release, but not checked or processed except for the removal of direct identifiers. Users should refer to the accompanying readme file for a brief description of the files available with this collection and consult the investigator(s) if further information is needed.

This study assessed the occupational experiences of forensic scientists working in laboratories across the United States. The sample included 899 forensic scientists in public and private laboratories operating at the local, state, and federal level across the United States. The study addressed the levels of work stressors and satisfaction among forensic scientists across the various disciplines, along with any correlates to working conditions, requests from various criminal justice system actors, policies, procedures, and demographic conditions. The use of positive and negative coping strategies by scientists was also measured to assess how individuals working in the field are affected by their job. Finally, the ergonomic and working environment of bench scientists were assessed to consider any influence they might have on their reported levels of stress and satisfaction.

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Expanding Targeted Gas Chromatography Mass Spectrometry Capabilities for Controlled Substance Analysis, 2024-2025 (ICPSR 39896)

Released/updated on: 2026-07-15

The data for this study support efforts to identify compound identification limitations using gas chromatography mass spectrometry (GC-MS) for seized drug analysis. This is a component of a larger project to evaluate specialized GC-MS methods for various drug classes, such as steroids and stimulants, alongside a new general analysis method. The dataset contains method parameters, mass spectra, and associated retention times generated from the replicate analysis of seized drug standards.

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Experimental and Numerical Investigations for the Development and Validation of Thermo-Chemistry Models and Property Databases for Selected Wall Lining Materials Under Fire Exposure, United States, 2024-2025 (ICPSR 39812)

Released/updated on: 2026-04-03
Geographic coverage: United States
Time period: 2024-01-01--2025-01-01

Gypsum plasterboards (drywalls) are commonly used in building construction due to their fire-resistant properties. When exposed to fire, gypsum undergoes calcination, which leaves fire patterns on the gypsum board that can be used by fire investigators to determine the origin and cause of fires. Numerical prediction of gypsum calcination under fire exposure requires reliable gypsum thermochemistry models and material and thermophysical property data. While previous studies resulted in simplified correlations between the depth of calcination and incident heat flux for regular gypsum boards, these correlations were limited. Different types of wall lining materials (e.g., moisture-resistant, mold and mildew-resistant, fire-resistant, and sound-absorbing drywalls) contain various additives like glass fibers, cellulose fiber, mineral wool, and copper-based compounds that significantly change their behavior when exposed to fire.

This project analyzed different types of gypsum boards both macroscopically and microscopically. Variable heating rate thermo-chemistry models for different wall lining materials were developed. Thermogravimetric Analysis (TGA), Differential Scanning Calorimetry (DSC), and Fourier-Transform Infrared Spectroscopy (FTIR) were used to characterize the calcination of gypsum boards. The developed models were validated by comparing temperature predictions with experimental measurements of internal temperatures during dehydration. Controlled experiments were conducted to investigate the effect of uniform heat fluxes, as well as paint layers, on gypsum calcination. A three-dimensional (3D) computational model was developed and validated to analyze the effect of non-uniform heat flux, and the sensitivity of modeling parameters was assessed. Detailed microscopic analyses were performed to understand the behavior of different types of gypsum boards exposed to fire. Ultimately, the project created a user-friendly executable to help fire investigators estimate the depth of calcination based on fire spread history, alongside a comprehensive database of material, thermo-physical, and thermo-chemical properties.

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Expert Algorithm for Substance Identification (EASI), United States, 2016-2017 (ICPSR 39098)

Released/updated on: 2024-03-28

This study aimed to develop an Expert Algorithm for Substance Identification (EASI) that will both improve the confidence of drug identifications from mass spectra and enable reliable inter-laboratory identifications without the need to acquire contemporaneous spectra of standards. The data included 303 replicates of cocaine and 10 replicates of cocaine compounds (diastereomers), and showed the variance observed in operational crime labs over the course of several months for different drug standards.

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Exploration of RNA Degradation in Dried Body Fluid Stains as a Means of Estimating the Age of the Samples, Oklahoma, 2018-2019 (ICPSR 39458)

Released/updated on: 2026-01-14
Geographic coverage: United States, Oklahoma
Time period: 2018-01-01--2019-01-01

The overall goal of this project was to understand the degradation characteristics of mRNA molecules in dried body fluid stains such that the relationship between degradation and the passage of time could be explored and used to develop a forensic tool to estimate the age of the stain (i.e., determine the time since deposition, TsD). Research has demonstrated that RNA degradation correlates with the passage of time in dried stains and have defined degradation kinetics for multiple mRNA transcripts present in dried blood, semen, and saliva stains. The current study collected detailed degradation kinetics for multiple transcripts in stains stored in real world environments with varying conditions of temperature, relative humidity, and sunlight exposure. Results suggest it may be possible to model degradation kinetics mathematically and develop an algorithm useful for estimating TsD in biological evidence recovered from crime scenes.

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Fast Screening of Firearm Discharge Residues by Laser-based Spectrochemical Methods, Electrochemical Sensors, and Chemometrics, West Virginia, 2019-2021 (ICPSR 38296)

Released/updated on: 2026-04-16
Geographic coverage: West Virginia, United States
Time period: 2019-01-01--2021-01-01

The detection of gunshot residue (GSR) provides valuable information in violent crimes, accidental shootings, and terrorism. Despite the scientific validity of this discipline, there are persistent challenges regarding the speed of analysis, preservation of the evidence, and interpretation of results. Consequently, there is a critical need to improve the discipline's turnaround times and reliability. This study's overall purpose was to develop a comprehensive approach to overcome these significant concerns and enhance the criminal justice system capabilities. This project developed and validated fast and reliable tests, using laser-induced breakdown spectroscopy (LIBS) and electrochemical (EC) sensors for GSR detection. Also, statistical models were applied for the quantitative interpretation of the evidence. The combination of LIBS and EC data permitted the accurate identification of organic and inorganic residues (OGSR and IGSR, accuracy ranging from 92-99% depending on the subpopulation and classification models). This research focused on developing SMARTER (Simpler, Modern, Affordable, Rapid, Transformative, Effective, and Reliable) solutions for GSR examinations.

The main objectives were:

  1. Application of universal and expanded collection methods
  2. Development of novel, ultrafast methods for dual detection of IGSR and OGSR
  3. Development of modern 3D chemical imaging for crime scene reconstruction
  4. Development of novel micro-particle GSR standards
  5. Creation of a large population study and probabilistic interpretation framework
Curated

Forensic Evidence and the Police, 1976-1980 (ICPSR 8186)

Released/updated on: 2006-01-18
Geographic coverage: United States, Chicago, Illinois, Missouri, Peoria, Kansas City (Missouri), California, Oakland
Time period: 1976-01-01--1980-01-01
This data collection focuses on adult cases of serious crime such as homicide (and related death investigations), rape, robbery, aggravated assault/battery, burglary, and arson. Data are included for Peoria, Illinois, Chicago, Illinois, Kansas City, Missouri, and Oakland, California. The data consist of police, court, and laboratory records from reports submitted by police personnel during investigations of suspected criminal offenses. The primary source of information was police case files. Prosecutor and court files were reviewed for information regarding the disposition of suspects who were arrested and formally charged. Crime laboratory reports include information concerning the evidence submitted and the examiner's worksheets, notes, and final results. There are eight files in this dataset. Each of the four cities has one file for cases with physical evidence and one file for cases in which physical evidence was not collected or examined.
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Forensic Evidence in Homicide Investigations, Cleveland, Ohio, 2008-2011 (ICPSR 36202)

Released/updated on: 2018-02-13
Geographic coverage: United States, Ohio, Cleveland
Time period: 2008-01-01--2011-01-01

These data are part of NACJD's Fast Track Release and are distributed as they were received from the data depositor. The files have been zipped by NACJD for release, but not checked or processed except for the removal of direct identifiers. Users should refer to the accompanying readme file for a brief description of the files available with this collection and consult the investigator(s) if further information is needed.

The objective of this study was to determine how homicide investigators use evidence during the course of their investigations. Data on 294 homicide cases (315 victims) that occurred in Cleveland between 2008 and 2011 was collected from investigative reports, forensic analysis reports, prosecutors and homicide investigators, provided by the Cleveland Ohio Police Department, Cuyahoga County Medical Examiner's Office, and Cuyahoga County Clerk of Courts.

The study collection includes 1 Stata data file (NIJ_Cleveland_Homicides.dta, n=294, 109 variables).

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Front-End Differentiation of Contributor Cell Populations and Estimation of DNA Content Using Novel Cellular Signatures, 2020-2024 (ICPSR 39293)

Released/updated on: 2024-12-22

The objective of this project is to develop a new method for screening trace biological samples for the number of contributors and DNA content based on the presence and relative abundance of key protein and hormone targets within cell populations. There is a critical need for presumptive techniques that could provide valuable information and enable more effective triaging of casework samples, particularly touch samples. To address this, we developed a novel workflow for analyzing biological evidence samples that (1) estimates on the number of contributors in a mixture based upon flow cytometry histogram profiles, (2) estimates the human-specific DNA content in the sample based upon fluorescent signal intensities, and (3) differentiates cell populations in the mixture based contributor-specific attributes. The primary advantage of using this approach with our novel signatures is that all aspects of the proposed workflow are inherently non-destructive. This is ideal for touch evidence samples since these are typically compromised and low in template quantity.

The aims and scope of this project specifically address three operational requirements identified by the 2019 Forensic Technology Working Group: (1) Biological evidence screening tools that can address number and proportion of contributors, (2) ability to differentiate and selectively analyze DNA and/or cells from multiple donors or multiple tissue/cell types contributing to mixtures, with minimal or no sample loss, and (3) comprehensive, systematic, well-controlled studies that provide both foundational knowledge and practical data about "touch evidence" DNA transfer and persistence in the real world.

Data associated with this study are available for download under two separate DOIs:

  • Supplemental Electropherogram Data
  • Morphological and Autofluorescence Dataset for 'Touch' Epidermal Cell Populations
Curated

Identification of Minor Dye Components of Fibers via Integrating Cavity-Enhanced Raman Spectroscopy, 2019-2022 (ICPSR 38884)

Released/updated on: 2023-09-05
The goal of this project is to evaluate integrating-cavity-enhanced Raman spectroscopy (ICERS) to measure anti-Stokes Raman spectra for the characterization of dyed fibers. ICERS has been developed for the ultrasensitive identification and characterization of materials, and enhancements of five orders of magnitude have been demonstrated. Using ICERS to measure anti-Stokes Raman spectra eliminates the fluorescence background, while the cavity design amplifies the anti-Stokes Raman signal. The combination of the two makes it possible to detect, identify, and characterize minor dye components without interference from fluorescence. Such an approach is expected to reveal more minor dye components which could help narrow down the source of the fiber in question.
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Impact of Forensic Evidence on Arrest and Prosecution (IFEAP) in Connecticut, United States, 2006-2009 (ICPSR 36695)

Released/updated on: 2018-04-09
Geographic coverage: Connecticut
Time period: 2006-01-01--2009-01-01

These data are part of NACJD's Fast Track Release and are distributed as they were received from the data depositor. The files have been zipped by NACJD for release, but not checked or processed except for the removal of direct identifiers. Users should refer to the accompanying readme file for a brief description of the files available with this collection and consult the investigator(s) if further information is needed.

This research was conducted in two phases. Phase one analyzed a random sample of approximately 2,000 case files from 2006 through 2009 that contain forensic analyses from the Connecticut State Forensic Science Laboratory, along with corresponding police and court case file data. As with Peterson, et al. (2010), this research had four objectives: 1) estimate the percentage of cases in which crime scene evidence is collected; 2) discover what kinds of forensic are being collected; 3)track such evidence through the criminal justice system; and 4)identify which forms of forensic evidence are most efficacious given the crime investigated.

Phase two consisted of a survey administered to detectives within the State of Connecticut regarding their comparative assessments of the utility of forensic evidence. These surveys further advance our understanding of how the success of forensic evidence in achieving arrests and convictions matches with detective opinion.

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Impact of Forensic Evidence on the Criminal Justice Process in Five Sites in the United States, 2003-2006 (ICPSR 29203)

Released/updated on: 2010-10-27
Geographic coverage: Indiana, United States, Los Angeles, California, Fort Wayne, South Bend, Evansville, Indianapolis
Time period: 2003-01-01--2006-01-01
The purpose of the study was to investigate the role and impact of forensic science evidence on the criminal justice process. The study utilized a prospective analysis of official record data that followed criminal cases in five jurisdictions (Los Angeles County, California; Indianapolis, Indiana; Evansville, Indiana; Fort Wayne, Indiana; and South Bend, Indiana) from the time of police incident report to final criminal disposition. The data were based on a random sample of the population of reported crime incidents between 2003 and 2006, stratified by crime type and jurisdiction. A total of 4,205 cases were sampled including 859 aggravated assaults, 1,263 burglaries, 400 homicides, 602 rapes, and 1,081 robberies. Descriptive and impact data were collected from three sources: police incident and investigation reports, crime lab reports, and prosecutor case files. The data contain a total of 175 variables including site, crime type, forensic variables, criminal offense variables, and crime dispositions variables.
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Implementation of a Sexual Assault Nurse Examiner (SANE) Practitioner Evaluation Toolkit, 2010-2012 Six Sites (ICPSR 34307)

Released/updated on: 2016-03-01
Geographic coverage: United States
Time period: 1995-01-01--2009-01-01

These data are part of NACJD's Fast Track Release and are distributed as they were received from the data depositor. The files have been zipped by NACJD for release, but not checked or processed except for the removal of direct identifiers. Users should refer to the accompanying readme file for a brief description of the files available with this collection and consult the investigator(s) if further information is needed.

To address the under-reporting and under-prosecution of adult sexual assaults, some communities in the United States implemented the Sexual Assault Nurse Examiner (SANE) Program whereby specially trained nurses provide comprehensive psychological, medical, and forensic services for sexual assault to improve post-assault care for victims and the criminal justice system response. The SANE Practitioner Toolkit was created to teach SANE program staff how to evaluate whether prosecution rates increased in their communities after the implantation of their SAME program.

Six SANE programs were selected and provided with comprehensive technical assistance to help them work through the steps in the Toolkit in order to evaluate whether the program was having a beneficial impact on prosecution rates. This study evaluated the effectiveness of the SANE program to increase prosecution rates of sexual assaults through the SANE Practitioner Evaluation Toolkit, and the technical assistance process and resources provided to the sites improved their evaluative abilities.

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Simple Crosstabs

Improving Juror Comprehension of Forensic Testimony and Its Effects on Decision-Making and Evidence Evaluation, United States, 2020 (ICPSR 39002)

Released/updated on: 2025-02-13
Geographic coverage: United States

Forensic science plays a vital role in the prosecution of criminal matters. Jurors, however, struggle with understanding both the science and statistics that underlie such testimony. Prior research on the effectiveness of jury instructions in training jurors to understand science and scientific testimony has been split, with some studies finding a beneficial effect, some finding no effect, and some finding that they cause jurors to be skeptical even of high-quality testimony. Here, investigators sought to empirically test the effectiveness of an instructional video at improving jurors' ability to detect low-quality forensic testimony. For the purposes of this study, testimony quality was defined based on the Department of Justice's Uniform Language for Testimony and Reports (DOJ ULTR).

The Gender Effects Paper Study Data made available through ICPSR includes data from the Main Study and a second pilot study conducted by researchers. These data were compiled to examine the impact of a forensic expert's gender on jurors' assessments of the quality of the expert's testimony.

There are two additional datasets associated with this study:

  • Main Study: Dataset contains survey results from a sample of 509 jury-eligible U.S adults who participated in the Main Study.
  • Pilot Study: Dataset contains survey results from a sample of 229 jury-eligible university undergraduates who completed the Pilot Study.
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Improving Results from Touch DNA Evidence with Optimized Direct Polymerase Chain Reaction Methods, 2020-2022 (ICPSR 39811)

Released/updated on: 2026-04-02

Direct polymerase chain reaction (PCR) is a DNA processing method in which a sample is added directly to an amplification reaction without prior purification or quantification and has been identified as a method that may improve genotyping data obtained from low-yield touch DNA samples. The goal of the project was to generate data in support of a re-evaluation of the Federal Bureau of Investigation's (FBI) Quality Assurance Standard (QAS) 9.4 and the 2018 Forensic Science Technology Working Group (TWG) operational requirements.

The project was performed in two phases. Phase I examined the direct PCR-compatible collection methods in conjunction with mock touch DNA evidence samples on a variety of substrates. Phase II examined direct PCR of touch DNA samples that were stored at room temperature for up to six months after collection and samples that were re-sampled after initial processing. Direct PCR was performed using GlobalFiler and PowerPlex Fusion 6C amplification methods that were already validated for standard casework processing.

Phase I and Phase II datasets are provided as .xslx and .csv files.

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Improving Results from Touch DNA Evidence with Optimized Direct Polymerase Chain Reaction (PCR) Methods, 2020-2022 (ICPSR 38910)

Released/updated on: 2023-09-20

Direct polymerase chain reaction (PCR) is a DNA processing method in which a sample is added directly to an amplification reaction without prior purification or quantification and has been identified as a method that may improve genotyping data obtained from low-yield touch DNA samples. The goal of the project was to generate data in support of a re-evaluation of the Federal Bureau of Investigation's (FBI) Quality Assurance Standard (QAS) 9.4 and the 2018 Forensic Science Technology Working Group (TWG) operational requirements.

The project was performed in two phases. Phase I examined the direct PCR-compatible collection methods in conjunction with mock touch DNA evidence samples on a variety of substrates. Phase II examined direct PCR of touch DNA samples that were stored at room temperature for up to six months after collection and samples that were re-sampled after initial processing. Direct PCR was performed using GlobalFiler and PowerPlex Fusion 6C amplification methods that were already validated for standard casework processing.

The technical summary for this project can be downloaded from the National Institute of Justice project page: https://nij.ojp.gov/library/publications/improving-results-touch-dna-evidence-optimized-direct-pcr-methods.

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Improving the Forensic Documentation of Injuries through Alternate Light: A Researcher- Practitioner Partnership, Maryland, 2021-2023 (ICPSR 39024)

Released/updated on: 2026-05-14
Geographic coverage: United States, Maryland
Time period: 2021-01-01--2023-01-01

This study assessed and evaluated the programmatic implementation of alternate light source (ALS) use during the examination of injuries among adult victims of sexual violence and intimate partner violence (IPV) in a hospital setting. Researchers selected two forensic nursing departments, one with no experience using ALS in clinical practice (Site A) and one with 10+ years' experience (Site B), and conducted a thorough contextual analysis of each site to 1. develop an evidence-based ALS implementation program for forensic nursing departments and 2. evaluate the feasibility of this ALS implementation program.

Contextual analysis involved the collection of qualitative data through structured focus groups with nurses and quantitative data using 6-months of de-identified forensic medical records from patients who received a medical forensic exam for reported (or suspected) sexual assault or IPV. Nurses were recruited to the study upon completing an anonymous survey about their prior knowledge of ALS, qualifications or certifications related to ALS, workplace team dynamics, and organizational support for changes in practice using the Organizational Readiness to Change Assessment [ORCA]. This Nurse Survey Data and aforementioned Medical Record Data are currently available for secondary users, and qualitative interview transcripts will be made available in a future update.

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Improving the Production and Use of Forensic Science, 5 U.S. counties, 2006-2009 (ICPSR 36727)

Released/updated on: 2022-03-16
Geographic coverage: Allegheny County, Bexar County, United States, Sedgwick County, Texas, Sacramento County, California, Kansas, King County, Washington, Pennsylvania
Time period: 2006-01-01--2009-01-01

This study collection sought to thoroughly understand the creation, testing, and use of forensic science in five jurisdictions across the country. A random sample was selected of recent criminal cases in the following jurisdictions and tracked from investigation to adjudication to understand how forensic evidence functions:

  • Sacramento County, CA: 990 cases
  • Segwick County, KS: 936 cases
  • Allegheny County, PA: 978 cases
  • Bexar County (San Antonio), TX: 936 cases
  • King County, WA: 892 cases

The Principal Investigator sought answers to the following seven primary research questions:

  • How often is forensic evidence collected and analyzed and how is it used pre-arrest?
  • What are the outcomes of forensic evidence testing?
  • What is the effect of forensic evidence on arrest and charging?
  • How does forensic evidence affect the plea-bargaining process?
  • What effect does forensic evidence have on conviction and sentencing outcomes?
  • Does the turnaround time for analysis of forensic evidence have any impact on case disposition?
  • Does the institutional configuration of the crime laboratory have any effect on its productivity?

Data for the following types of forensic testing are included in this data collection: hair, fibers, glass, paint, gas chromatography / mass spectrometry (GC/MS), Fourier transform infrared spectroscopy (FTIR), scanning electron microscopy / energy dispersive x-ray spectroscopy (SEM/EDX), physical match, drug identification, toxicology, serology, combined DNA index system (CODIS), DNA short tandem repeat (Y-STR), blood pattern, test fire, and comparison scope.

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Investigations on the Cellular and Morphologic Characteristics of Cranial Vault Fracture: Research and Development of a Time Since Fracture Protocol and Database, Arizona and Michigan, 2017-2020 (ICPSR 38054)

Released/updated on: 2023-05-30
Geographic coverage: United States, Arizona, Michigan
Time period: 2017-01-01--2020-01-01

The primary objective of this study was to determine the histological features associated with fracture repair in the human cranial vault, and to derive the trajectory of these features over the course of healing. Variations in the fracture repair process due to decedent age and type of injury were explored. The impacts of laboratory techniques, including decalcification and histological staining, upon the quality of fracture histology slides were also assessed. Calvarial fracture samples were collected from medical examiner cases and body donations from January 1, 2017 to November 31, 2020 for use in the analyses and for the creation of the Repository of Antemortem Injury Response (REPAIR), a deidentified online database of known-age cranial fractures and defects.

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Measurement of Heat Transfer and Fire Damage Patterns on Walls for Fire Model Validation, Ammendale, Maryland, 2021-2023 (ICPSR 39217)

Released/updated on: 2024-09-19

Fire investigators and researchers leverage fire models to predict fire growth and fire pattern development. These fire models incorporate simplifying assumptions in their representation of heat transfer through walls, but the impact of these assumptions on model predictions of fire exposures and fire damage patterns is not well understood. Experiments were conducted in which freestanding walls were subjected to exposure from controlled fire sources, including gas burners, liquid fuels, and furnishings. Experiments were conducted at the Bureau of Alcohol, Tobacco, Firearms and Explosives - Fire Research Laboratory (ATF-FRL) in Maryland. The experiments addressed three validation spaces: field heat flux from a fire to a wall, heat transfer through fire-exposed walls, and fire damage patterns arising on fire-exposed walls.

The data acquired from these experiments are available in a public repository.

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Meeting National Safety Council Recommendations: Accurate Rapid Tests and Laboratory Confirmation Procedures for Fentanyl and Prevalent Opioids in Oral Fluid, United States, 2024 (ICPSR 39353)

Released/updated on: 2025-03-17

This project was intended to develop a visually-read, rapid testing device for identifying the presence of fentanyl and/or synthetic opioids in oral fluids and environmentally-friendly laboratory confirmation methods for quantitation of the drugs in oral fluid using liquid chromatography with tandem mass spectral detection (LC-MS/MS). The testing device was developed by nform, a subrecipient of the National Institute of Justice award, and 9-Delta Analytical developed the confirmatory laboratory procedures. These research and development activities are one of many critical steps in addressing the ongoing opioid crisis in the United States.

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