<TEI xmlns="http://www.tei-c.org/ns/1.0"><teiHeader><fileDesc><titleStmt><title>Episciences.org TEI export of mbj:17939 - Multidisciplinary Biomechanics Journal, 2026-06-01, International Shoulder Group (ISG) Congress 2026</title></titleStmt><publicationStmt><distributor>CCSD - Episciences</distributor><availability status="restricted"><licence target="https://creativecommons.org/licenses/by/4.0">Attribution 4.0 International (CC BY 4.0)</licence></availability><date when="2026-06-01"/></publicationStmt><sourceDesc><p>Episciences.org API platform</p></sourceDesc></fileDesc></teiHeader><text><body><listBibl><biblFull><titleStmt><title xml:lang="en">Prediction of Deltoid Muscle Force in Reverse Total Shoulder Arthroplasty Using a Deep Learning Model</title><author role="aut"><persName><forename type="first">Léa</forename><surname>Pistorius</surname></persName><email/><affiliation ref="#struct-0"/></author><author role="aut"><persName><forename type="first">Dominique</forename><surname>Pioletti</surname></persName><email/><affiliation ref="#struct-0"/></author><author role="aut"><persName><forename type="first">Alexandre</forename><surname>Terrier</surname></persName><email/><affiliation ref="#struct-0"/></author></titleStmt><editionStmt><edition><date type="whenSubmitted">2026-04-03 16:31:44</date><date type="whenProduced">2026-06-01 20:36:01</date><ref type="file" target="http://mbj.episciences.org/17939/pdf"/></edition><respStmt><resp>contributor</resp><name key="666"><persName><forename>Episciences</forename><surname>System Account</surname></persName><email>system-account@episciences.org</email></name></respStmt></editionStmt><publicationStmt><distributor>CCSD</distributor><idno type="id">mbj:17939</idno><idno type="url">http://mbj.episciences.org/17939</idno><idno type="ref">mbj:17939 - Multidisciplinary Biomechanics Journal, 2026-06-01, International Shoulder Group (ISG) Congress 2026</idno><licence target="https://creativecommons.org/licenses/by/4.0">Attribution 4.0 International (CC BY 4.0)</licence></publicationStmt><sourceDesc><biblStruct><analytic><title xml:lang="en">Prediction of Deltoid Muscle Force in Reverse Total Shoulder Arthroplasty Using a Deep Learning Model</title><author role="aut"><persName><forename type="first">Léa</forename><surname>Pistorius</surname></persName><email/><affiliation ref="#struct-0"/></author><author role="aut"><persName><forename type="first">Dominique</forename><surname>Pioletti</surname></persName><email/><affiliation ref="#struct-0"/></author><author role="aut"><persName><forename type="first">Alexandre</forename><surname>Terrier</surname></persName><email/><affiliation ref="#struct-0"/></author></analytic><monogr><idno type="HAL">hal-05567937</idno><idno type="issn">3076-1158</idno><title level="j">Multidisciplinary Biomechanics Journal</title><imprint><publisher>Société de Biomécanique</publisher><pubPlace>Paris, France</pubPlace><biblScope unit="volume">International Shoulder Group (ISG) Congress 2026</biblScope><biblScope unit="issue">Methodological approaches for motion analysis</biblScope><date type="datePub">2026-06-01T20:36:01+02:00</date></imprint></monogr><idno type="doi">10.46298/mbj.17939</idno></biblStruct></sourceDesc><profileDesc><langUsage><language ident="en">English</language></langUsage><textClass><keywords scheme="author"><term>reverse total shoulder arthroplasty</term><term>deltoid muscle force</term><term>musculoskeletal model</term><term>deep learning model</term><term>[PHYS.MECA.BIOM]Physics [physics]/Mechanics [physics]/Biomechanics [physics.med-ph]</term></keywords></textClass><abstract><p>International audience</p></abstract></profileDesc></biblFull></listBibl></body><back><listOrg><org xml:id="struct-0"><idno type="ROR">https://ror.org/02s376052</idno><orgName>Ecole Polytechnique Fédérale de Lausanne</orgName><orgName acronym="EPFL"/></org></listOrg></back></text></TEI>