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全身血压对大鼠骨骼肌微血管系统的渗透作用。

Penetration of the systemic blood pressure into the microvasculature of rat skeletal muscle.

作者信息

DeLano F A, Schmid-Schönbein G W, Skalak T C, Zweifach B W

机构信息

Department of AMES-Bioengineering, University of California, San Diego, La Jolla 92093.

出版信息

Microvasc Res. 1991 Jan;41(1):92-110. doi: 10.1016/0026-2862(91)90011-y.

Abstract

A series of arterial micropressure measurements in different skeletal muscles of the Wistar-Kyoto and spontaneously hypertensive rat is presented. The micropunctures were carried out with minimal surgical intervention through small skin incisions and the micropressures were recorded simultaneously with femoral artery pressures. The measurement sites were located at the entry points into the muscles for the proximal and distal supply arteries and at the midpoint of the arteriolar arcade bridge which directly connects these two supply arteries in the center of the muscle parenchyma. In contrast to feed artery pressure values from exteriorized muscles, which in the past have been reported to be as low as 40 mm Hg, the current mean pressure values are substantially higher and in the range between 70 and 100 mm Hg, equivalent to 70 to 90% of the mean systemic pressure. Systolic and diastolic values exhibit comparable trends to the mean pressures and they are similar in muscles at different locations in the body. Although in spontaneously hypertensive rats the absolute pressures were significantly higher compared with their controls, the normalized pressures were virtually identical at the locations used in this study. These data indicate that the absolute pressure in the central arteries of spontaneously hypertensive animals is reduced to a greater degree than in Wistar-Kyoto rats, while in both strains the major pressure reduction in skeletal muscle still occurs in the microcirculation.

摘要

本文展示了对Wistar-Kyoto大鼠和自发性高血压大鼠不同骨骼肌的一系列动脉微压测量结果。微穿刺通过小切口进行,手术干预极小,微压与股动脉压力同时记录。测量部位位于近端和远端供应动脉进入肌肉的入口点,以及直接连接肌肉实质中心这两条供应动脉的小动脉弓桥的中点。与过去报道的外露肌肉的供血动脉压力值低至40 mmHg相比,目前的平均压力值显著更高,在70至100 mmHg之间,相当于平均体循环压力的70%至90%。收缩压和舒张压值与平均压力呈现相似趋势,且在身体不同部位的肌肉中相似。虽然在自发性高血压大鼠中,绝对压力比其对照组显著更高,但在本研究使用的部位,归一化压力实际上是相同的。这些数据表明,自发性高血压动物中央动脉的绝对压力比Wistar-Kyoto大鼠降低得更多,而在这两种品系中,骨骼肌的主要压力降低仍发生在微循环中。

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