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◆ Annals of biomedical engineering2026-09-18

Patient-Specific Aortic Growth Prediction in Type B Aortic Dissection Using Finite-Element Simulation Based on the Unified Fiber Distribution (UFD) Model.

Xue Liang, Marc-Philipp H Schmid, Minliang Liu, Hannah L Cebull, Michael Zhang, Sunny Xu, Muhammad Naeem, John N Oshinski, John A Elefteriades, Rudolph L Gleason, Bradley G Leshnower, Hai Dong

一句话结论 · In one sentence

This proof-of-concept study demonstrates the feasibility of patient-specific TBAD growth forecasting from routine CT imaging and blood pressure, which could support individualized surveillance planning and earlier, evidence-based decision-making for patients managed with OMT.

原始摘要(英文原文)· Original abstract
PURPOSE: Type B aortic dissection (TBAD) managed with optimal medical therapy (OMT) carries a 40-50% risk of progressive aneurysmal degeneration. Predicting which patients will experience significant aortic enlargement is critical for timely intervention. This study aimed to develop and evaluate a patient-specific finite-element (FE) framework for predicting aortic geometry and diameter growth in uncomplicated TBAD managed with OMT. METHODS: We extended our previously developed wall stress-driven growth framework and applied it to seven TBAD patients with each having three serial computed tomography (CT) scans. The unified fiber distribution (UFD) model was applied to describe aortic wall mechanics, and a novel centerline-based algorithm was developed to determine the local material coordinates of aortic tissues. Patient-specific aortic geometries from the three serial CT scans were obtained for each of the seven TBAD patients. Using the first two CT images and each patient's blood pressure, inverse FE analysis was performed to obtain patient-specific growth parameters. These parameters were then used to simulate forward growth and predict geometry at the third time point. RESULTS: Predicted aortic geometries and dimensions matched well with in vivo measurements: for all seven patients, the absolute percent error was < 3.5% for the predicted maximum aortic diameter and < 4% for the predicted mean diameter across all locations. CONCLUSION: This proof-of-concept study demonstrates the feasibility of patient-specific TBAD growth forecasting from routine CT imaging and blood pressure, which could support individualized surveillance planning and earlier, evidence-based decision-making for patients managed with OMT.
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Patient-Specific Aortic Growth Prediction in Type B Aortic Dissection Using Finite-Element Simulation Based on the Unified Fiber Distribution (UFD) Model. — 科研速览 Science Skim