260 citations
- University of PennsylvaniaUS27 papers
- Harvard UniversityUS6 papers
- Massachusetts General HospitalUS5 papers
- Children's NationalUS4 papers
- University of UtahUS4 papers
- Boston Children's HospitalUS3 papers
- Cincinnati Children's Hospital Medical CenterUS3 papers
- Columbia UniversityUS3 papers
- Cornell UniversityUS3 papers
- Massachusetts Institute of TechnologyUS3 papers
- Mayo Clinic in FloridaUS3 papers
- McGill UniversityCA3 papers
38 papers
An open-source computational framework for immersed fluid-structure interaction modeling using FEBio and MFEM
Ryan T. Black, Steve A. Maas, Wensi Wu +4
Fluid-structure interaction (FSI) simulation of biological systems presents significant computational challenges, particularly for applications involving large structural deformati…
Developer Insights into Designing AI-Based Computer Perception Tools
Maya Guhan, Meghan E. Hurley, Eric A. Storch +5
Artificial intelligence (AI)-based computer perception (CP) technologies use mobile sensors to collect behavioral and physiological data for clinical decision-making. These tools c…
Stakeholder Perspectives on Humanistic Implementation of Computer Perception in Healthcare: A Qualitative Study
Kristin M. Kostick-Quenet, Meghan E. Hurley, Syed Ayaz +7
Computer perception (CP) technologies (digital phenotyping, affective computing and related passive sensing approaches) offer unprecedented opportunities to personalize healthcare,…
Multimodal Integrated Knowledge Transfer to Large Language Models through Preference Optimization with Biomedical Applications
Zhanliang Wang, Da Wu, Quan Nguyen +2
The scarcity of high-quality multimodal biomedical data limits the ability to effectively fine-tune pretrained Large Language Models (LLMs) for specialized biomedical tasks. To add…
Integrating Chain-of-Thought and Retrieval Augmented Generation Enhances Rare Disease Diagnosis from Clinical Notes
Zhanliang Wang, Da Wu, Quan Nguyen +1
Background: Several studies show that large language models (LLMs) struggle with phenotype-driven gene prioritization for rare diseases. These studies typically use Human Phenotype…
FEBio FINESSE: An open-source finite element simulation approach to estimate in vivo heart valve strains using shape enforcement
Devin W. Laurence, Patricia M. Sabin, Analise M. Sulentic +4
Finite element simulations are an enticing tool to evaluate heart valve function in healthy and diseased patients; however, patient-specific simulations derived from 3D echocardiog…