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教授   博士生导师   硕士生导师

主要任职: 医学部党委书记兼常务副部长

性别: 男

毕业院校: 复旦大学

学位: 博士

所在单位: 生物医学工程学院

学科: 生物医学工程

电子邮箱: krqin@dlut.edu.cn

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运动对动脉内皮功能的调控及血流剪切力的介导作用

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发表时间: 2022-10-09

发表刊物: 北京生物医学工程

卷号: 36

期号: 6

页面范围: 639-647

ISSN号: 1002-3208

摘要: Endothelium with normal function plays a vital role in regulating vascular permeability, maintaining coagulation function,as well as immunological and inflammatory reaction,yet impaired endothelial function may lead to the formation and development of atherosclerosis. Moderate?intensity exercise training can improve arterial endothelial function and then prevent the occurrence of atherosclerosis mainly due to the production of nitric oxide ( NO ) and prostacyclin ( PGI2 ) , while high?intensity exercise training is reported to augment cardiovascular risk associated with the occurrence of oxidative stress and the decrease of NO bioavailability. A number of investigations have demonstrated that the variations in the amplitude and pattern of wall shear stress induced by exercise training mediate the above?mentioned biological responses. In this article, we summarize the regulation of exercise training on artery endothelial function and the role of wall shear stress induced by exercises,as well as the associated molecular biological mechanism, which may provide references to further studying the underlying hemodynamic mechanisms in modulation of endothelial function by exercises,especially the exercise?induced wall shear stress in this modulation,and offer scientific evidences to monitor wall shear stress and other hemodynamic parameters to fit the optimal exercise modality.

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