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Journal of Molecular Modeling
|
August 28, 2015
Greedy replica exchange algorithm for heterogeneous computing grids
Christopher Lockhart, James O'Connor, Steven Armentrout, et al.
Journal of Forensic Sciences
|
February 6, 2024
Investigative genetic genealogy for human remains identification
Ellen Greytak, Stephanie Wyatt, Janet Cady, et al.
Medrxiv : the Preprint Server for Health Sciences
|
February 17, 2023
Epistatic Features and Machine Learning Improve Alzheimer's Risk Prediction Over Polygenic Risk Scores
Stephen Hermes, Janet Cady, Steven Armentrout, et al.
Forensic Science International. Genetics
|
December 13, 2021
Extended kinship analysis of historical remains using SNP capture
Erin M Gorden, Ellen M Greytak, Kimberly Sturk-Andreaggi, et al.
Journal of Alzheimer'S Disease : JAD
|
May 24, 2024
Epistatic Features and Machine Learning Improve Alzheimer's Disease Risk Prediction Over Polygenic Risk Scores
Stephen Hermes, Janet Cady, Steven Armentrout, et al.
Page
of 1
Search research articles
Search
Showing results (1-10 of 5) with videos related to
Sort By:
Page
of 1
Journal of Molecular Modeling
|
August 28, 2015
Greedy replica exchange algorithm for heterogeneous computing grids
Christopher Lockhart, James O'Connor, Steven Armentrout, et al.
Journal of Forensic Sciences
|
February 6, 2024
Investigative genetic genealogy for human remains identification
Ellen Greytak, Stephanie Wyatt, Janet Cady, et al.
Medrxiv : the Preprint Server for Health Sciences
|
February 17, 2023
Epistatic Features and Machine Learning Improve Alzheimer's Risk Prediction Over Polygenic Risk Scores
Stephen Hermes, Janet Cady, Steven Armentrout, et al.
Forensic Science International. Genetics
|
December 13, 2021
Extended kinship analysis of historical remains using SNP capture
Erin M Gorden, Ellen M Greytak, Kimberly Sturk-Andreaggi, et al.
Journal of Alzheimer'S Disease : JAD
|
May 24, 2024
Epistatic Features and Machine Learning Improve Alzheimer's Disease Risk Prediction Over Polygenic Risk Scores
Stephen Hermes, Janet Cady, Steven Armentrout, et al.
Page
of 1