Davis M J
Department of Medical Physiology, Texas A&M University, College Station 77843.
Am J Physiol. 1988 Apr;254(4 Pt 2):H772-84. doi: 10.1152/ajpheart.1988.254.4.H772.
The extent to which capillary hydrostatic pressure might be protected from increases in local arterial and venous pressure was examined in the wing microcirculation of unanesthetized pallid bats (Antrozous pallidus). Arterial inflow and venous outflow pressures to the wing were elevated using a box technique to increase pressure around the body of the animal in steps of 12 mmHg between 0 and +60 mmHg for 3-min periods. During this time, hydrostatic pressure, diameter, and red cell velocity in single microvessels were continuously recorded. All branching orders of arterioles constricted significantly during increases in box pressure (Pb), while capillaries and venules dilated. First-order arteriole and venule pressures increased 1:1 with Pb. Capillary pressures increased by only a fraction of Pb up to +36 mmHg, but at higher Pb, the change in capillary pressure was equivalent to the change in Pb. Calculations of vascular resistance indicate that changes in both pre- and postcapillary resistance in this tissue act to prevent increases in capillary pressure during moderate, but not during large, increases in arterial and venous pressure.
在未麻醉的苍白蝙蝠(苍白洞蝠)翼部微循环中,研究了毛细血管静水压在多大程度上能免受局部动脉压和静脉压升高的影响。采用箱式技术逐步升高动物身体周围的压力,每次升高12 mmHg,在0至 +60 mmHg之间,持续3分钟,以升高翼部的动脉流入压和静脉流出压。在此期间,连续记录单个微血管中的静水压、管径和红细胞速度。在箱压(Pb)升高期间,各级分支的小动脉均显著收缩,而毛细血管和小静脉则扩张。一级小动脉和小静脉压力随Pb呈1:1升高。毛细血管压力在Pb升高至 +36 mmHg之前仅升高Pb的一小部分,但在更高的Pb时,毛细血管压力的变化与Pb的变化相当。血管阻力计算表明,该组织中毛细血管前和毛细血管后阻力的变化在动脉压和静脉压适度升高时可防止毛细血管压力升高,但在大幅升高时则不能。