Medicolegal death investigations
Microbiology of Death
Development of a Comprehensive Workflow for Postmortem Insulin Testing in Cases of Suspected Insulin Homicide
Mass Fatality And Disaster Response Preparedness Across Medical Examiner And Coroner Offices In The United States
Forensic Use of GPR and LiDAR Technology for Clandestine Grave Detection
Is It an Accident or Abuse? Researchers Develop Predictive Models for Pediatric Head Injuries
NIJ-supported research has enabled biomechanical experts to improve predictive models of head injuries in children, helping physicians and law enforcement to better distinguish between accidental injury and abuse.
What FSSP Leaders Should Know About Artificial Intelligence And Its Application To Forensic Science In-Brief
What Medical Examiner’s And Coroner’s Offices Should Know About Molecular Autopsy
Success Story: NIJ And The New York City OCME Validating Confirmatory Body Fluid Identification Assays For Real-World Impact
White Paper – Electronic Death Registry In Medicolegal Death Investigation
White Paper – Electronic Medical Records In Medicolegal Death Investigation
White Paper – Information Sharing Between Medicolegal Death Investigators And Toxicology Testing Services
Interactive Map: Medicolegal Death Investigation Data Flow
Development of Portable Surface-Enhanced Raman Spectroscopy Nanosensors for Ultrasensitive Characterization of Drugs in Human Biofluids
Mental Health and Wellness: Challenges Faced by Pathologists
Aptamer-Based Fentanyl Detection in Biological Fluids
Understanding Work-Related Stress among Medicolegal Death Investigators: A National Survey and Mixed-Methods Impact Study
Enhancing Foundational Validity of Forensic Findings in Medico-Legal Strangulation Examinations
Highlighting Significant NIJ Forensic Science Investments: The University of Tennessee, Knoxville Site Visit
Digital Evidence 101
Coroner Liaison
Grant Opportunities for Medical Examiner Facilities
Pathologists’ Assistants in Forensics