Tu.1.1.1
DMT: DEMOGRAPHIC CONDITIONING, MORPHOLOGY-ENHANCED TRANSFORMER FOR CUFFLESS BLOOD PRESSURE ESTIMATION FROM PPG SIGNALS
Yidan Shen, Neville Mathew, University of Houston; Maham Rahimi, Houston Methodist Hospital; Deependra Dhakal, George Zouridakis, Xin Fu, Renjie Hu, University of Houston
Session:
Tu.1.1: Blood Pressure and Cardiovascular Signal Processing Oral
Track:
Biomedical Signal Processing
Location:
Room 801B
Presentation Time:
Tuesday, 28 July, 08:30 - 08:45
Session Co-Chairs:
Dmitry Kireev and Marion Taconné
Presentation
Discussion
Resources
No resources available.
Session Tu.1.1
Tu.1.1.1: DMT: DEMOGRAPHIC CONDITIONING, MORPHOLOGY-ENHANCED TRANSFORMER FOR CUFFLESS BLOOD PRESSURE ESTIMATION FROM PPG SIGNALS
Yidan Shen, Neville Mathew, University of Houston; Maham Rahimi, Houston Methodist Hospital; Deependra Dhakal, George Zouridakis, Xin Fu, Renjie Hu, University of Houston
Tu.1.1.2: PHYSICS-INFORMED NEURAL NETWORKS FOR RECONSTRUCTING ARTERIAL HEMODYNAMICS VIA MULTI-FIDELITY DATA FUSION
Junki Hong, Bomi Lee, Adelle Ria Persad, Hyunwoo Song, Korea Advanced Institute of Science and Technology; Jae-Hak Jeong, Korea National University of Transportation; Yong-Hwa Park, Korea Advanced Institute of Science and Technology
Tu.1.1.3: A PHYSIOLOGY-GUIDED RESIDUAL CONSTRAINT FOR IMPROVING DYNAMIC BLOOD PRESSURE ESTIMATION USING MULTIMODAL SIGNALS
Ting Xiang, Zijun Liu, The Chinese University of Hong Kong; Yuanting Zhang, Hong Kong Institute of Medical Engineering
Tu.1.1.4: Only Arterial Blood Pressure Matters: Demographic-Free Cardiac Output Estimation via Morphology–Intensity Disentanglement
Junjun Wu, Manman Liu, Yanzhi Li, Xu Cheng, Nanjing University of Information Science and Technology
Tu.1.1.5: PHYSICS-INFORMED NEURAL NETWORK FOR TRANSFER FUNCTION PARAMETER ESTIMATION IN CENTRAL BLOOD PRESSURE RECONSTRUCTION
Hyunwoo Song, Bomi Lee, Junki Hong, Adelle Ria Persad, Korea Advanced Institute of Science and Technology; Jae-Hak Jeong, Korea National University of Transportation; Yong-Hwa Park, Korea Advanced Institute of Science and Technology
Tu.1.1.6: MODEL-BASED INFORMATION-THEORETIC ASSESSMENT OF BEAT-TO-BEAT ARTERIAL PRESSURE EFFECTS ON CEREBRAL AND PERIPHERAL BLOOD FLOW
Roberta Saputo, Riccardo Pernice, Angelica Alcuri, University of Palermo; Beatrice Cairo, Vlasta Bari, Alberto Porta, University of Milan; Luca Faes, University of Palermo
Resources
No resources available.