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ADEPT: A Noninvasive Method for Determining Elastic Parameters of Valve Tissue

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arxiv 2409.19081 v2 pith:3MZ2XOKW submitted 2024-09-27 q-bio.QM cs.CEphysics.comp-ph

classification q-bio.QMcs.CEphysics.comp-ph
keywords parametersvalvenoninvasiveaccuracyadeptapplicationcomputerdetermining
verification ladder T0 review T1 audit T2 compute T3 formal
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Computer simulation of "virtual interventions" may inform optimal valve repair for a given patient prior to intervention. However, the paucity of noninvasive methods to determine in vivo mechanical parameters of valves limits the accuracy of computer prediction and their clinical application. To address this, we propose ADEPT: A noninvasive method for Determining Elastic Parameters of valve Tissue. In this work, we demonstrated its application to the tricuspid valve of a child. We first tracked valve displacements from open to closed frames within a 3D echocardiogram time sequence using image registration. Physics-informed neural networks were subsequently applied to estimate the nonlinear mechanical properties from first principles and reference displacements. The simulated model using these patient-specific parameters closely aligned with the reference image segmentation, achieving a mean symmetric distance of less than 1 mm. Our approach doubled the accuracy of the simulated model compared to the generic parameters reported in the literature.

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