Literature DB >> 25048524

Computation of hemodynamics in tortuous left coronary artery: a morphological parametric study.

Xinzhou Xie, Yuanyuan Wang, Hongmin Zhu, Jingmin Zhou.   

Abstract

Coronary tortuosity (CT) would alter the local wall shear stress (WSS) and may become a risk factor for atherosclerosis. Here we performed a systematic computational study to relate CT morphological parameters to abnormal WSS, which is a predisposing factor to the formation of atherosclerotic lesions. Several idealized left coronary artery (LCA) models were created to conduct a series of morphological parametric studies, in which we concentrate on three specific morphological parameters, the center line radius (CLR), the bend angle (BA), and the length between two adjust bends (LBB). The time averaged WSS (TAWSS), the oscillatory shear index (OSI), and the time averaged WSS gradient (WSSGnd) were explored by using the computational fluid dynamics (CFD) method, in order to determine susceptible sites for the onset of early atherosclerosis. In addition, two realistic LCA models were reconstructed to further validate the finding's credibility. The CLR and LBB had great impact on the distributions of WSS-derived parameters, while the BA had minor impact on the hemodynamic of the tortuous arteries. Abnormal regions with low TAWSS (TAWSS < 0.5 Pa), high OSI (OSI > 0.1) and high WSSGnd (WSSGnd > 8) were observed at the inner wall of bend sections in the models with small CLR or small LBB. These findings were also confirmed in the realistic models. Severe CT with small CLR or LBB would lead to the formation of abnormal WSS regions at the bend sections and providing these regions with favorable conditions for the onset and/or progression of atherosclerosis.

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Year:  2014        PMID: 25048524     DOI: 10.1115/1.4028052

Source DB:  PubMed          Journal:  J Biomech Eng        ISSN: 0148-0731            Impact factor:   2.097


  7 in total

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Authors:  Mahsa Dabagh; Paritosh Vasava; Payman Jalali
Journal:  Med Biol Eng Comput       Date:  2015-03-01       Impact factor: 2.602

2.  Numerical analysis of the effect of turbulence transition on the hemodynamic parameters in human coronary arteries.

Authors:  Arun Mahalingam; Udhav Ulhas Gawandalkar; Girish Kini; Abdulrajak Buradi; Tadashi Araki; Nobutaka Ikeda; Andrew Nicolaides; John R Laird; Luca Saba; Jasjit S Suri
Journal:  Cardiovasc Diagn Ther       Date:  2016-06

3.  Increased tortuosity of ACA might be associated with increased risk of ACoA aneurysm development and less aneurysm dome size: a computer-aided analysis.

Authors:  Roger M Krzyżewski; Kornelia M Kliś; Borys M Kwinta; Małgorzata Gackowska; Jerzy Gąsowski
Journal:  Eur Radiol       Date:  2019-04-11       Impact factor: 5.315

4.  Effects of Sucroferric Oxyhydroxide Compared to Lanthanum Carbonate and Sevelamer Carbonate on Phosphate Homeostasis and Vascular Calcifications in a Rat Model of Chronic Kidney Failure.

Authors:  Olivier Phan; Marc Maillard; Hartmut H Malluche; Jean-Christophe Stehle; Felix Funk; Michel Burnier
Journal:  Biomed Res Int       Date:  2015-06-29       Impact factor: 3.411

5.  Vascular Remodelling Relates to an Elevated Oscillatory Shear Index and Relative Residence Time in Spontaneously Hypertensive Rats.

Authors:  Zhiyan Chen; Haiyi Yu; Yue Shi; Minjia Zhu; Yueshen Wang; Xi Hu; Youyi Zhang; Yu Chang; Ming Xu; Wei Gao
Journal:  Sci Rep       Date:  2017-05-17       Impact factor: 4.379

6.  Coronary tortuosity is negatively correlated with coronary atherosclerosis.

Authors:  Yang Li; Yi Feng; Genshan Ma; Chengxing Shen; Naifeng Liu
Journal:  J Int Med Res       Date:  2018-10-10       Impact factor: 1.671

7.  Coronary flow reserve and microcirculatory resistance in patients with coronary tortuosity and without atherosclerosis.

Authors:  Yang Li; Xiaoguo Zhang; Qiming Dai; Genshan Ma
Journal:  J Int Med Res       Date:  2020-09       Impact factor: 1.671

  7 in total

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