Henriksen O
Acta Physiol Scand. 1976 Aug;97(4):447-56. doi: 10.1111/j.1748-1716.1976.tb10284.x.
The effect of changes in transmural pressure in the vessles of the extremities on blood flow in subcutaneous adipose tissue were investigated in three healthy subjects. Changes in transmural pressure were obtained either by postural changes of a limb, by locally induced subatmospheric pressure, or be venous stasis. Blood flow in subcutaneous tissue was measured 10 cm distal to the fibular head and at the lateral malleolus in the leg, or in the distal part of the forearm by the local 133Xenon washout technique. When transmural pressure increased 25 mmHg or more, blood flow decreased about 50 per cent due to an increase in vascular resconstrictor response to increase in transmural pressure could be blocked by infiltrating the area under study with phentolamine or lidocaine or by induced counterpressure. In these cases blood flow remained constant. The findings indicate that the vasoconstrictor response to increase in transmural pressure of 25 mmHg or more is due to a local nervous mechanism involving adrenergic nerves. The receptors are presumably stretch receptors placed in the small veins. The effector site is probably the arterioles. When the vasoconstrictor response is blocked, autoregulation of blood flow in subcutaneous tissue, i.e. maintenance of constant blood flow during changes in perfusion pressure head or during changes in transmural pressure, is revealed. The vasoconstrictor response to increase in transmural pressure will counteract an increase in transmural pressure in the exchange vessles and thereby act as an edema protecting factor.
在三名健康受试者中研究了四肢血管跨壁压力变化对皮下脂肪组织血流的影响。跨壁压力变化可通过肢体姿势改变、局部诱导负压或静脉淤滞来实现。采用局部133氙洗脱技术,在小腿腓骨头远端10厘米处、外踝处或前臂远端测量皮下组织的血流。当跨壁压力升高25 mmHg或更多时,由于血管对跨壁压力升高的收缩反应增强,血流减少约50%。用酚妥拉明或利多卡因浸润研究区域或施加诱导反压可阻断这种对跨壁压力升高的收缩反应。在这些情况下,血流保持恒定。研究结果表明,对25 mmHg或更高跨壁压力升高的血管收缩反应是由涉及肾上腺素能神经的局部神经机制引起的。受体可能是位于小静脉中的牵张受体。效应部位可能是小动脉。当血管收缩反应被阻断时,皮下组织血流的自动调节,即在灌注压头变化或跨壁压力变化期间维持恒定血流,就会显现出来。对跨壁压力升高的血管收缩反应将抵消交换血管中跨壁压力的升高,从而起到水肿保护因子的作用。