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PMID: 42791699 Published · epublish English Journal Article

Patient-Specific Computational Fluid Dynamics of Pulmonary Arterial Hemodynamics in Dogs with and Without Pulmonic Stenosis.

Animals : an open access journal from MDPI ·Vol. 16 ·No. 18 ·2026-09-09

Zamora-Perarnau C, Malvè M, Sebastián-Marcos P, Fernández-Parra R

Abstract

Pulmonic stenosis (PS) is one of the most common congenital cardiac diseases in dogs. Although echocardiography and computed tomographic angiography (CTA) provide valuable diagnostic and anatomical information, the hemodynamic consequences of PS remain incompletely characterized. This study describes patient-specific pulmonary artery hemodynamics in dogs with and without PS using computational fluid dynamics (CFD). Contrast-enhanced CTA and echocardiographic data from five dogs with PS and five control dogs without PS were used to reconstruct three-dimensional pulmonary artery geometries and generate patient-specific CFD models. Pressure drop (Δp), blood flow velocity, mean wall shear stress (WSS), time-averaged WSS (TAWSS), oscillatory shear index (OSI), relative residence time (RRT), and pulmonary artery resistance were quantified and compared between groups. Dogs with PS exhibited markedly increased transvalvular pressure gradients, peak flow velocities, and pulmonary artery resistance, together with high-velocity jets and localized post-stenotic recirculation that were absent in control dogs. Mean WSS and TAWSS tended to be higher in the PS group, whereas OSI values were similar between groups. In contrast, RRT was significantly lower (p = 0.032) in dogs with PS. These findings demonstrate that patient-specific CFD enables detailed characterization of pulmonary artery hemodynamics in canine PS, providing information that complements conventional imaging. Although its clinical utility in veterinary medicine has yet to be fully established, CFD can provide valuable insight into flow behavior and disease pathophysiology; however, its ability to yield precise, clinically applicable quantitative values remains limited. This approach shows promise for future applications in the clinical evaluation of PS and other cardiovascular diseases, although further studies are warranted to determine its clinical relevance in veterinary medicine.

Keywords
computational fluid dynamics impedance-based pressure waveforms pulmonary artery hemodynamics pulmonic stenosis vascular resistance wall shear stress indicators
作者与单位
共 4 位作者,点击展开单位 / ORCID
Zamora-Perarnau Carla
Doctoral School, Catholic University of Valencia San Vicente Mártir, San Agustín Square, 3, 46002 Valencia, Spain. | Department of Small Animal Medicine and Surgery, Faculty of Veterinary Medicine and Experimental Sciences, Catholic University of Valencia San Vicente Mártir, Quevedo Street 2, 46001 Valencia, Spain. | Veterinary Referral Hospital UCV, Catholic University of Valencia San Vicente Mártir, Pérez Galdós Street 51, 46018 Valencia, Spain.
Malvè Mauro ORCID
Department of Engineering, Public University of Navarre (UPNA), Campus de Arrosadía s/n, 31006 Pamplona, Spain. | Biomedical Research Networking Center in Bioengineering, Biomaterials, and Nanomedicine (CIBER-BBN), Monforte de Lemos, 3-5, 28029 Madrid, Spain. | Institute for Advanced Materials and Mathematics (INAMAT2), Public University of Navarre (UPNA), Edificio Jerónimo de Ayanz, Campus de Arrosadía s/n, 31006 Pamplona, Spain.
Sebastián-Marcos Patricia ORCID
Department of Small Animal Medicine and Surgery, Faculty of Veterinary Medicine and Experimental Sciences, Catholic University of Valencia San Vicente Mártir, Quevedo Street 2, 46001 Valencia, Spain. | Veterinary Referral Hospital UCV, Catholic University of Valencia San Vicente Mártir, Pérez Galdós Street 51, 46018 Valencia, Spain.
Fernández-Parra Rocío ORCID
Department of Small Animal Medicine and Surgery, Faculty of Veterinary Medicine and Experimental Sciences, Catholic University of Valencia San Vicente Mártir, Quevedo Street 2, 46001 Valencia, Spain. | Veterinary Referral Hospital UCV, Catholic University of Valencia San Vicente Mártir, Pérez Galdós Street 51, 46018 Valencia, Spain.
Article Info
Journal
Animals : an open access journal from MDPI
Abbr.
Animals (Basel)
ISSN
2076-2615
Published
2026-09-09
电子出版
2026-00-09
Language
English
Country/Region
Switzerland
NLM ID
101635614
基金资助
Ministerio de Ciencia, Innovación y Universidades · PID2021-125731OB-C31
Ministerio de Ciencia, Innovación y Universidades · PID2021-125731OB-C33
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