Deep learning enables accurate soft tissue deformation estimation in vivo

Reece D. Huff1, Frederick Houghton1, Conner C. Earl2, Elnaz Ghajar-Rahimi2, Ishan Dogra1, Denny Yu2, Craig J. Goergen2, Carisa Harris-Adamson1, & Grace D. O’Connell1

1UC Berkeley & 2Purdue University

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StrainNet

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Citation

@article{huff2023strainnet,
title={Deep learning enables accurate soft tissue deformation estimation in vivo},
author={Huff, Reece D and Houghton, Frederick and Earl, Conner C and Ghajar-Rahimi, Elnaz and Dogra, Ishan and Yu, Denny and Harris-Adamson, Carisa and Goergen, Craig J and O'Connell, Grace D},
journal={bioRxiv},
year={2023},
publisher={Cold Spring Harbor Laboratory},
doi = {10.1101/2023.09.04.556266}
}



Acknowledgements

This study was supported by the National Institutes of Health (NIH R21 AR075127-02), the National Science Foundation (NSF GRFP), and the National Institute for Occupational Safety and Health (NIOSH) / Centers for Disease Control and Prevention (CDC) (Training Grant T42OH008429).