Review Articles · Review R4

Electronic-nose Applications in Forensic Science and for Analysis of Volatile Biomarkers in the Human Breath

Wilson AD

Forensic Science Seminar · 2015 · Volume 5 · Issue 2 · pp. 54–71

Peer Reviewed ISSN 2157-118X Available online 31 July 2015 Public PDF

Original Abstract

Abstract

The application of electronic-nose (E-nose) technologies in forensic science is a recent new development following a long history of progress in the development of diverse applications in the related biomedical and pharmaceutical fields. Data from forensic analyses must satisfy the needs and requirements of both the scientifi c and legal communities. The type of data collected from electronic-nose devices provides a means of identifying specific types of information about the chemical nature of evidentiary objects and samples under investigation using aroma signature profiles of complex gaseous mixtures containing volatile organic compounds (VOCs) released from manufactured products and parts of the human body. E-nose analyses also provide useful qualitative information about the physicochemical characteristics and metabolic conditions of human subjects without the need for time-consuming analyses to identify all chemical components in human-derived volatile mixtures. E-nose devices are capable of providing information for a wide range of forensic applications, useful for answering many types of questions relating to past events and details of circumstances and conditions that led to criminal activities involving human subjects and the perpetrators involved. E-nose devices have been used to help locate live subjects, buried in the rubble of collapsed buildings following natural disasters, as well as hidden bodies and the human remains of victims of accidents and crimes of aggression. The noninvasive analysis of gaseous mixtures in the human breath and lungs of living and deceased individuals provides a means for identifying the existence of diseases or adverse physiological conditions of human subjects (both before death and postmortem) potentially useful in determining the cause of death, time of death, and pertinent factors contributing to lethal events such as homicides and other violent crimes.

Keywords: Forensic science; Artificial olfaction; Biomarker indicator compounds; Breath gas analysis; Cadaverine; Disease diagnostics; Electronic aroma detection; E-nose; Metabolomics; Respiratory gas metabolites

The abstract is transcribed from the published first page. Typographic ligature-extraction artifacts have been normalized; the published wording has not been editorially rewritten.

Authors & Publication

Article Details

Affiliations
  1. Forest Insect and Disease Research, Southern Hardwoods Laboratory, Stoneville, Mississippi, USA.

Corresponding author: Wilson AD · dwilson02@fs.fed.us

Received12 May 2014
Revised30 September 2014
Accepted1 October 2014
Available Online31 July 2015

Citation Information

Document codeR4 · Review
JournalForensic Science Seminar
ISSN2157-118X
Volume / Issue5 / 2
Pages54–71
Publication date31 July 2015
Article HTMLhttps://fss.xxyy.info/journal/2015/2157118X.5.2.R4.html
Full text PDFhttps://fss.xxyy.info/journal/2015/2157118X.5.2.R4.pdf

Metadata Quality

The complete title has been restored independently of decorative drop-cap layout. Only real author names are stored in citation_author; affiliation letters a/b/c and * marks are excluded. C1/C2 are treated as Case Report document codes, not cover resources.