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Remodeling Forensic Skeletal Age: Modern Applications and New Research Directions

Contributor(s): Algee‐hewitt, Bridget F B (Editor), Kim, Jieun (Editor)

ISBN: 9780128243701

Publisher: Academic Press

Hardcover
$150.00
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Pub Date: April 28, 2021

Dewey: 614.17

LCCN: 2021934882

Lexile Code: 0000

Features: Bibliography, Illustrated, Index

Target Age Group: NA to NA

Physical Info: 0.00" H x 0.00" L x 0.00" W ( 0.00 lbs) 260 pages

Descriptions, Reviews, etc.

Description: Remodeling Forensic Skeletal Age: Modern Applications and New Research Directions presents a comprehensive understanding of the analytical frameworks and conceptual approaches surrounding forensic age estimation and the current state of the field. The book also includes a series of recommendations of best practice through chapter-examples that offer theory and guidance for data acquisition, technique and/or model development, and the assessment of impact of the adopted approaches. Written by leading, international experts, the book's contributors provide an introduction, conceptual understanding and taxonomy of statistical frameworks and computational approaches, including the Bayesian paradigm and machine learning techniques for age estimation.

Brief description: Jieun is a biological anthropologist whose specialty lies in human skeletal biology and its application to forensic anthropology and bioarchaeology. Her doctoral dissertation investigated the extent of population variation (if it ever exits) in skeletal aging process using Southeast and East Asian populations and sought to develop a more inclusive age-at-death estimation method that is broadly applicable to Asians. To complete her fieldwork abroad, she was awarded the Wenner-Gren Foundation Doctoral Dissertation Fieldwork Grant, the W. M. Bass Endowment and W. Leitner Award offered by the Forensic Anthropology Center, UTK, and the W. K. McClure Scholarship for the Study of World Affairs, UTK. She has been working with skeletal remains in Korea, Japan, Thailand and the U.S., and as a part of the National Institute of Justice postdoctoral research, is currently building 3D laser scan data on those populations to extend the applicability of the fully computation age estimation methods to more diverse populations.

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