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正常血压和高血压大鼠颈动脉的双轴力学特性。

Biaxial mechanical properties of carotid arteries from normotensive and hypertensive rats.

作者信息

Lichtenstein O, Safar M E, Poitevin P, Levy B I

机构信息

INSERM Unit 141, Paris, France.

出版信息

Hypertension. 1995 Jul;26(1):15-9. doi: 10.1161/01.hyp.26.1.15.

DOI:10.1161/01.hyp.26.1.15
PMID:7607718
Abstract

Hypertension is known to decrease arterial distensibility and volumetric compliance, as reported from pressure-volume experiments and ring and strip studies of human and animal large arteries. However, recent data using noninvasive in vivo recording of vessel diameter suggest that the cross-sectional compliance of large arteries can be unchanged or even increased in hypertensive subjects. The present study was performed to test the hypothesis that differences between volumetric and cross-sectional compliance could be related to differences in biaxial mechanical properties in normotensive and hypertensive rats. In normotensive (Wistar-Kyoto [WKY]) rats and spontaneously hypertensive rats (SHR) we measured the simultaneous changes in length and diameter of in situ isolated carotid arteries submitted to static pressures (50 to 200 mm Hg by steps of 25 mm Hg each). Carotid artery diameters and lengths were determined by video microscopy and computer-assisted image analysis. At low transmural pressure (50 mm Hg), carotid artery diameter was 710 +/- 41 microns in WKY rats and 980 +/- 31 microns in SHR (P < .01). In response to pressure increases, the carotid diameter increased by 91 +/- 6% in WKY rats and by 41 +/- 4% in SHR (P < .01). In parallel, the percent increase in carotid length was much larger in WKY rats than in SHR (31 +/- 2% versus 7 +/- 1%, respectively; P < .01). In WKY rats, longitudinal distensibility causes significantly larger volumetric values than cross-sectional compliance values; in contrast, because of the very small longitudinal distensibility, volumetric and cross-sectional compliances are almost identical in SHR.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

从人体和动物大动脉的压力-容积实验以及环和条带研究报告可知,高血压会降低动脉扩张性和容积顺应性。然而,最近使用无创体内记录血管直径的数据表明,高血压患者的大动脉横断面顺应性可能保持不变甚至增加。本研究旨在检验以下假设:容积顺应性和横断面顺应性之间的差异可能与正常血压和高血压大鼠双轴力学特性的差异有关。在正常血压(Wistar-Kyoto [WKY])大鼠和自发性高血压大鼠(SHR)中,我们测量了原位分离的颈动脉在静态压力(每次以25 mmHg的步长从50至200 mmHg)下长度和直径的同步变化。通过视频显微镜和计算机辅助图像分析确定颈动脉直径和长度。在低跨壁压力(50 mmHg)时,WKY大鼠的颈动脉直径为710±41微米,SHR为980±31微米(P<.01)。随着压力升高,WKY大鼠的颈动脉直径增加了91±6%,SHR增加了41±4%(P<.01)。同时,WKY大鼠颈动脉长度的增加百分比远大于SHR(分别为31±2%和7±1%;P<.01)。在WKY大鼠中,纵向扩张性导致的容积值显著大于横断面顺应性值;相反,由于纵向扩张性非常小,SHR中的容积顺应性和横断面顺应性几乎相同。(摘要截断于250字)

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