Johnson J M, Park M K
J Appl Physiol Respir Environ Exerc Physiol. 1982 Sep;53(3):744-9. doi: 10.1152/jappl.1982.53.3.744.
To explore further the competition between vasoconstrictor and vasodilator reflexes in the regulation of skin blood flow, responses in forearm blood flow (FBF) to the initiation of supine leg exercise were measured by plethysmography against a background of rising internal temperature. In 17 studies involving six men, skin temperature (Tsk) was controlled with water-perfused suits first at normothermic levels, followed by a 40- to 50-min period during which Tsk was held at 38-38.5 degrees C. Supine leg exercise at a moderate intensity (100-150 W) was performed for 5-6 min of each 15 min throughout, yielding one period of exercise performed during normothermic conditions and three periods of exercise performed during the period of elevated Tsk. On the average, FBF fell significantly with the beginning of each period of exercise (P less than 0.05). Furthermore, the amount by which FBF fell tended to increase with increasing levels of preexercise FBF. Thus the average fall in FBF associated with the onset of the last period of exercise, 2.45 ml X 100 ml-1 X min-1, significantly exceeded the 1.12 ml X 100 ml-1 X min-1 fall in FBF seen with onset of work in normothermic conditions. These responses were not due to changes in internal temperature as reflected by esophageal temperatures. However, individual studies occasionally revealed a reduction or abolition of the vasoconstrictor response with the last period of exercise. These findings are in agreement with earlier studies showing a cutaneous participation in the vasoconstrictor responses to exercise but also indicate that sufficient hyperthermia can attenuate or even abolish this response.
为了进一步探究血管收缩反射与血管舒张反射在调节皮肤血流中的竞争关系,在体温上升的背景下,通过体积描记法测量了仰卧位腿部运动开始时前臂血流量(FBF)的变化。在涉及6名男性的17项研究中,首先用水灌注服将皮肤温度(Tsk)控制在正常体温水平,随后保持40至50分钟,在此期间Tsk维持在38 - 38.5摄氏度。在整个过程中,每15分钟进行5 - 6分钟的中等强度(100 - 150瓦)仰卧位腿部运动,从而在正常体温条件下进行一个运动周期,在Tsk升高期间进行三个运动周期。平均而言,每次运动开始时FBF均显著下降(P < 0.05)。此外,FBF下降的幅度倾向于随着运动前FBF水平的升高而增加。因此,与最后一个运动周期开始相关的FBF平均下降量为2.45 ml×100 ml⁻¹×min⁻¹,显著超过了在正常体温条件下运动开始时FBF下降的1.12 ml×100 ml⁻¹×min⁻¹。这些反应并非由食管温度所反映的体内温度变化引起。然而,个别研究偶尔显示在最后一个运动周期血管收缩反应会减弱或消失。这些发现与早期研究一致,表明皮肤参与了运动时的血管收缩反应,但也表明足够的体温过高可减弱甚至消除这种反应。