<records><record><language>eng</language><publisher>Société de Biomécanique</publisher><journalTitle>Multidisciplinary Biomechanics Journal</journalTitle><eissn>3076-1158</eissn><publicationDate>2025-10-24</publicationDate><volume>50th congress of the Société...</volume><issue>Fluid and biological flows</issue><doi>10.46298/mbj.16135</doi><publisherRecordId>16135</publisherRecordId><documentType>journal article</documentType><title language="eng">A combined modeling and AI-driven optimization approach to enhance surfactant replacement therapy in adult lungs</title><authors><author><name>Philippe Meliga</name><affiliationId>0</affiliationId><orcid_id>https://orcid.org/0000-0001-9889-0520</orcid_id></author><author><name>Gregor Roncin</name></author><author><name>Elie Hachem</name><orcid_id>https://orcid.org/0000-0002-2202-6397</orcid_id></author></authors><affiliationsList><affiliationName affiliationId="0">Centre de Mise en Forme des Matériaux</affiliationName></affiliationsList><fullTextUrl format="pdf">http://mbj.episciences.org/16135/pdf</fullTextUrl><keywords><keyword>Respiratory Distress Syndrome</keyword><keyword>Surfactant Replacement Therapy</keyword><keyword>Pulmonary Drug Delivery</keyword><keyword>Biological Fluid Mechanics</keyword><keyword>Deep Reinforcement Learning</keyword><keyword>[PHYS.MECA.BIOM]Physics [physics]/Mechanics [physics]/Biomechanics [physics.med-ph]</keyword></keywords></record></records>