Forensic physical fits in the trace evidence discipline: A review.

Fractography Fracture fit Fracture match Physical fit Physical match Trace evidence

Journal

Forensic science international
ISSN: 1872-6283
Titre abrégé: Forensic Sci Int
Pays: Ireland
ID NLM: 7902034

Informations de publication

Date de publication:
Aug 2020
Historique:
received: 31 01 2020
revised: 22 05 2020
accepted: 25 05 2020
pubmed: 17 6 2020
medline: 10 2 2021
entrez: 17 6 2020
Statut: ppublish

Résumé

Physical fit examinations have long played a critical role in forensic science, particularly in the trace evidence, toolmark, and questioned documents disciplines. Specifically, in trace evidence, physical fits arise in various instances such as separated pieces of duct tape, torn textile fragments, and fractured polymeric items to name a few. The case report and research basis for forensic physical fit dates to the late 1700s and varies by material type. Three main areas of physical fit appear within the literature: case reports, fractography studies, and quantitative assessment of a fracture fit. A strong foundation within the discipline lies in case reports, articles demonstrating occurrences of physical fit the authors have experienced in their laboratories. Fractography research offers information about the fracturing mechanism of a given material for purposes of identifying a potential breaking source. Also, fractography studies demonstrate variation in fracture morphology per material types, with a qualitative basis for comparison and reporting. The current shift in the research appears to be more quantitative or performance-based, assessing the error rates associated with physical fit examinations, the application of likelihood ratios as a means to determine evidential weight, probabilistic interpretations of large sample sets, and the implementation of automatic edge-detection algorithms to support the examiner's expert opinion. This review aims to establish the current state of physical fit research through what has been accomplished, the limitations faced due to the unpredictable nature of casework, and the future directions of the discipline. In addition, current practice in the field is evaluated through a review of standard operating procedures.

Identifiants

pubmed: 32540760
pii: S0379-0738(20)30211-5
doi: 10.1016/j.forsciint.2020.110349
pii:
doi:

Substances chimiques

Metals 0
Plastics 0

Types de publication

Journal Article Review

Langues

eng

Sous-ensembles de citation

IM

Pagination

110349

Informations de copyright

Copyright © 2020 Elsevier B.V. All rights reserved.

Déclaration de conflit d'intérêts

Declaration of Competing Interest None.

Auteurs

Evie Brooks (E)

West Virginia University, Department of Forensic and Investigative Science, 208 Oglebay Hall, Morgantown, WV 26506, United States. Electronic address: ekb0011@mix.wvu.edu.

Meghan Prusinowski (M)

West Virginia University, Department of Forensic and Investigative Science, 208 Oglebay Hall, Morgantown, WV 26506, United States. Electronic address: mnp0006@mix.wvu.edu.

Susan Gross (S)

Bureau of Criminal Apprehension Forensic Science Services, 1430 Maryland Avenue East, St. Paul, MN 55106, United States. Electronic address: Susan.T.Gross@usdoj.gov.

Tatiana Trejos (T)

West Virginia University, Department of Forensic and Investigative Science, 208 Oglebay Hall, Morgantown, WV 26506, United States. Electronic address: Tatiana.trejos@mail.wvu.edu.

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Classifications MeSH