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Issue title: 25th Anniversary Volume. Perspectives in Biorheology II. Festschrift for Syoten Oka
Guest editors: Eiichi Fukada and Takehiko Azuma
Article type: Research Article
Authors: Kamiya, Akiraa | Ando, Jojia | Shibata, Masahiroa | Masuda, Hirotakeb
Affiliations: [a] Research Institute of Applied Electricity, Hokkaido University, Sapporo, 060, Japan | [b] 2nd Department of Pathology, Akita University School of Medicine, Akita, 010, Japan
Abstract: The effects of fluid shear stress on the function and structure of the vascular system are outlined, based on the findings obtained in our laboratory or of our colleagues. First, it is pointed out that the adaptive response of the vascular wall to flow changes which we observed the internal diameter to keep the wall shear stress constant (1), can attain the optimum vascular branching structure as predicted in the minimum work model by Murray (2). Electron-microscopic studies of similarly shunted arteries revealing various morphological changes in the endothelial cells have suggested that the shear stress initially affects the endothelium (3,4,5). The in vitro experiments using cultured endothelial cells as well have exhibited that the mitotic activity of the cells significantly increases by applying fluid shear stress (6). From these findings, it is concluded that the adaptive response of the endothelium to the fluid shear stress is an inherent and key process locally regulating the vascular system to be in the most functional state.
Keywords: shear stress, endothelium, microfilament, cell culture, mitosis
DOI: 10.3233/BIR-1988-251-236
Journal: Biorheology, vol. 25, no. 1-2, pp. 271-278, 1988
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