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Updated: Jan 11, 2026

Optical Coherence Tomography Based Biomechanical Fluid-Structure Interaction Analysis of Coronary Atherosclerosis Progression
Published on: January 15, 2022
Proximal pulmonary artery wall shear stress derived from computational fluid dynamics: A noninvasive biomarker for
Yahia Bellouche1,2, Cécile Tromeur2,3,4, Florent Le Ven1,2
1Département de Cardiologie, Centre Hospitalier Universitaire Brest, Brest, France.
Abstract:
Chronic thromboembolic pulmonary hypertension (CTEPH) is a severe complication of pulmonary embolism (PE), often diagnosed late due to nonspecific symptoms and limitations of current screening tools like V/Q scintigraphy. This study investigated whether computational fluid dynamics (CFD)-derived hemodynamic parameters, specifically time-averaged wall shear stress (TAWSS) and oscillatory shear index (OSI), in the proximal pulmonary arteries could serve as noninvasive biomarkers for CTEPH and chronic thromboembolic disease without pulmonary hypertension (CTEPD, non-CTEPH with V/Q mismatches). We retrospectively analyzed 90 patients (30 CTEPH, 30 CTEPD, and 30 controls without mismatch) using patient-specific 3D CFD models reconstructed from CTPA, with RCR boundary conditions tuned to RHC data. We found significantly reduced median TAWSS in CTEPH (16.5 dyn/cm2) and CTEPD (27.5 dyn/cm2) groups compared to controls (42.0 dyn/cm2) (p < 0.001), with TAWSS also significantly lower in CTEPH versus CTEPD. OSI showed no significant inter-group differences. Importantly, TAWSS exhibited a strong inverse correlation with V/Q mismatch status (ρ = -0.673, p < 0.001). ROC analysis revealed that TAWSS accurately predicted perfusion mismatches (AUC = 0.918), with an optimal cutoff of 27.0 dyn/cm2 yielding 100.0% specificity and 70.0% sensitivity. These findings demonstrate that CFD-derived proximal pulmonary artery TAWSS is a promising noninvasive indicator of chronic thromboembolic burden, including subclinical perfusion abnormalities, offering a potential tool to enhance early detection and management of CTEPH.
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