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缺血和肌源性活动对大鼠脑动脉主动和被动力学特性的影响。

Effects of ischemia and myogenic activity on active and passive mechanical properties of rat cerebral arteries.

作者信息

Coulson Rebecca J, Chesler Naomi C, Vitullo Lisa, Cipolla Marilyn J

机构信息

Department of Mechanical Engineering and Department of Neurology, The University of Vermont, Burlington 05405, USA.

出版信息

Am J Physiol Heart Circ Physiol. 2002 Dec;283(6):H2268-75. doi: 10.1152/ajpheart.00542.2002. Epub 2002 Aug 29.

Abstract

Passive (papaverine induced) and active (spontaneous pressure induced) biomechanical properties of ischemic and nonischemic rat middle cerebral arteries (MCAs) were studied under pressurized conditions in vitro. Ischemic (1 h of occlusion), contralateral, and sham-operated control MCAs were isolated from male Wistar rats (n = 22) and pressurized using an arteriograph system that allowed control of transmural pressure (TMP) and measurement of lumen diameter and wall thickness. Three mechanical stiffness parameters were computed: overall passive stiffness (beta), pressure-dependent modulus changes (E(inc,p)), and smooth muscle cell (SMC) activity-dependent changes (E(inc,a)). The beta-value for ischemic vessels was increased compared with sham vessels (13.9 +/- 1.7 vs. 9.1 +/- 1.4, P < 0.05), indicating possible short-term remodeling due to ischemia. E(inc,p) increased with pressure in the passive vessels (P < 0.05) but remained relatively constant in the active vessels for all vessel types, indicating that pressure-induced SMC contractile activity (i.e., myogenic reactivity) in cerebral arteries leads to the maintenance of a constant elastic modulus within the autoregulatory pressure range. E(inc,a) increased with pressure for all conditions, signifying that changes in stiffness are influenced by SMC activity and vascular tone.

摘要

在体外加压条件下,研究了缺血和非缺血大鼠大脑中动脉(MCA)的被动(罂粟碱诱导)和主动(自发压力诱导)生物力学特性。从雄性Wistar大鼠(n = 22)中分离出缺血(闭塞1小时)、对侧和假手术对照的MCA,并使用动脉造影系统进行加压,该系统可控制跨壁压力(TMP)并测量管腔直径和壁厚。计算了三个机械刚度参数:总体被动刚度(β)、压力依赖性模量变化(E(inc,p))和平滑肌细胞(SMC)活性依赖性变化(E(inc,a))。与假手术血管相比,缺血血管的β值增加(13.9±1.7对9.1±1.4,P<0.05),表明缺血可能导致短期重塑。被动血管中E(inc,p)随压力增加(P<0.05),但在所有血管类型的主动血管中相对保持恒定,这表明大脑动脉中压力诱导的SMC收缩活性(即肌源性反应性)导致在自动调节压力范围内维持恒定的弹性模量。在所有条件下,E(inc,a)均随压力增加,这表明刚度变化受SMC活性和血管张力的影响。

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