Bell Martin P D, White Michael J
School of Sport and Exercise Science, University of Birmingham, Edgbaston, Birmingham B15 2TT, UK.
Exp Physiol. 2005 May;90(3):383-91. doi: 10.1113/expphysiol.2004.029140. Epub 2005 Feb 11.
This study investigated the cardiovascular response to a standard external muscle compression during concomitant muscle metaboreflex stimulation of varying intensity in human calf muscle. Eleven healthy male subjects (mean (s.d.) age, 26 (5.6) years; height, 177 (5) cm; weight, 74.3 (6.8) kg) were seated in an isometric dynamometer with the angle of the knee at 90 deg, and the angle of the ankle at 85 deg. After a 150-s rest period, subjects were asked to either perform isometric plantar flexion at 20, 30, 40, 50, 60, 70 or 80% of previously determined maximum isometric contractile force (MVC) for 90 s, or to sit at rest for this period. A thigh cuff maintained circulatory occlusion throughout the exercise period and for 180 s post exercise. After 60 s of post-exercise circulatory occlusion (PECO), a calf cuff was inflated to 300 mmHg for 60 s followed by a further 60 s of PECO alone after which the thigh cuff was deflated. During PECO the mean arterial pressure (MAP) increase from rest was dependent upon the preceding exercise intensity (P < 0.001). Compression elicited a further significant change in MAP, and the magnitude of this change from the PECO baseline was also dependent upon the preceding exercise intensity (P < 0.01). These results are compatible with activation of a metabolically sensitised population of mechanoreceptive afferents in human muscle during external compression.
本研究调查了在对人小腿肌肉进行不同强度的伴随肌肉代谢反射刺激期间,标准外部肌肉压缩对心血管系统的反应。11名健康男性受试者(平均(标准差)年龄26(5.6)岁;身高177(5)厘米;体重74.3(6.8)千克)坐在等长测力计中,膝关节角度为90度,踝关节角度为85度。在150秒的休息期后,受试者被要求以先前确定的最大等长收缩力(MVC)的20%、30%、40%、50%、60%、70%或80%进行90秒的等长跖屈,或在此期间静息坐着。在整个运动期间及运动后180秒,大腿袖带维持循环阻塞。在运动后循环阻塞(PECO)60秒后,小腿袖带充气至300 mmHg持续60秒,随后单独进行60秒的PECO,之后大腿袖带放气。在PECO期间,平均动脉压(MAP)相对于静息时的升高取决于先前的运动强度(P<0.001)。压缩引起MAP的进一步显著变化,且该变化相对于PECO基线的幅度也取决于先前的运动强度(P<0.01)。这些结果与外部压缩期间人体肌肉中代谢敏感的机械感受性传入神经群体的激活相一致。