Shewale / Liu | Forensic DNA Analysis | E-Book | sack.de
E-Book

E-Book, Englisch, 445 Seiten

Shewale / Liu Forensic DNA Analysis

Current Practices and Emerging Technologies
1. Auflage 2013
ISBN: 978-1-4665-7136-5
Verlag: Taylor & Francis
Format: PDF
Kopierschutz: Adobe DRM (»Systemvoraussetzungen)

Current Practices and Emerging Technologies

E-Book, Englisch, 445 Seiten

ISBN: 978-1-4665-7136-5
Verlag: Taylor & Francis
Format: PDF
Kopierschutz: Adobe DRM (»Systemvoraussetzungen)



The field of forensic DNA analysis has grown immensely in the past two decades and genotyping of biological samples is now routinely performed in human identification (HID) laboratories. Application areas include paternity testing, forensic casework, family lineage studies, identification of human remains, and DNA databasing. Forensic DNA Analysis: Current Practices and Emerging Technologies explores the fundamental principles and the application of technologies for each aspect of forensic DNA analysis.

The book begins by discussing the value of DNA evidence and how to properly recognize, document, collect, and store it. The remaining chapters examine:

- The most widely adopted methods and the best practices for DNA isolation from forensic biological samples and human remains

- Studies carried out on the use of both messenger RNA and small (micro) RNA profiling

- Real-time polymerase chain reaction (PCR) methods for quantification and assessment of human DNA prior to genotyping

- Capillary electrophoresis (CE) as a tool for forensic DNA analysis

- Next-generation short tandem repeat (STR) genotyping kits for forensic applications, the biological nature of STR loci, and Y-chromosome STRs (Y-STRs)

- Mitochondrial DNA (mtDNA) sequence analysis

- Single nucleotide polymorphisms (SNPs) and insertion/deletion polymorphisms (indels) in typing highly degraded DNA

- Deep-sequencing technologies

- The current state of integrated systems in forensic DNA analysis

The book concludes by discussing various aspects of sample-processing training and the entities that provide such training programs. This volume is an essential resource for students, researchers, teaching faculties, and other professionals interested in human identification/forensic DNA analysis.

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Zielgruppe


Forensic scientists, pathologists and technicians, geneticists, molecular biologists, and criminal justice professionals.

Weitere Infos & Material


I. Sample Collection, Sample Storage, and DNA Extraction

Forensic DNA Evidence Collection at a Crime Scene: An Investigator’s Commentary; Joseph Blozis

Optimizing Storage and Handling of DNA Extracts; Steven B. Lee, Cecelia A. Crouse, and Margaret C. Kline

Extraction of DNA from Forensic Biological Samples for Genotyping; James E. Stray, Jason Y. Liu, Maxim G. Brevnov, and Jaiprakash G. Shewale

Extraction of DNA from Human Remains; James E. Stray and Jaiprakash G. Shewale

II. Sample Assessment

RNA Profiling for the Identification of the Tissue Origin of Dried Stains in Forensic Biology; Erin K. Hanson and Jack Ballantyne

Assessment of DNA Extracted from Forensic Samples Prior to Genotyping; Maura Barbisin and Jaiprakash G. Shewale

III. STRs—Proven Genotyping Markers

Principles, Practice, and Evolution of Capillary Electrophoresis as a Tool for Forensic DNA Analysis; Jaiprakash G. Shewale, Liwei Qi, and Lisa M. Calandro

Next-Generation STR Genotyping Kits for Forensic Applications; Julio J. Mulero and Lori K. Hennessy

Biology and Genetics of New Autosomal STR Loci Useful for Forensic DNA Analysis; John M. Butler and Carolyn R. Hill

Hidden Variation in Microsatellite Loci: Utility and Implications for Forensic DNA; John V. Planz and Thomas A. Hall

Additional Y-STRs in Forensics: Why, Which, and When; Kaye N. Ballantyne and Manfred Kayser

IV. Expanding the Genotyping Capabilities

Forensic Mitochondrial DNA Analysis: Current Practice and Future Potential; Mitchell Holland, Terry Melton, and Charity Holland

Applications of Autosomal SNPs and Indels in Forensic Analysis; Christopher Phillips

Deep-Sequencing Technologies and Potential Applications in Forensic DNA Testing; Roxanne R. Zascavage, Shantanu J. Shewale, and John V. Planz

Sample-to-Result STR Genotyping Systems: Potential and Status; Jenny A. Lounsbury, Joan M. Bienvenue, and James P. Landers

V. Training

Training of Forensic DNA Scientists—A Commentary; Meredith A. Turnbough, Arthur J. Eisenberg, Lisa Schade, and Jaiprakash G. Shewale

Index



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