Leukel Christian, Lundbye-Jensen Jesper, Gruber Markus, Zuur Abraham T, Gollhofer Albert, Taube Wolfgang
Department of Sport Science, Univ. of Freiburg, Schwarzwaldstr. 175, 79117 Freiburg, Germany.
J Appl Physiol (1985). 2009 Oct;107(4):1051-8. doi: 10.1152/japplphysiol.00301.2009. Epub 2009 Aug 20.
During experiments involving ischemic nerve block, we noticed that the short-latency response (SLR) of evoked stretches in m. soleus decreased immediately following inflation of a pneumatic cuff surrounding the lower leg. The present study aimed to investigate this short-term effect of pressure application in more detail. Fifty-eight healthy subjects were divided into seven protocols. Unilateral stretches were applied to the calf muscles to elicit a SLR, and bilateral stretches to evoke a subsequent medium-latency response (MLR). Furthermore, H-reflexes and sensory nerve action potentials (SNAPs) were recorded. Additionally, stretches were applied with different velocities and amplitudes. Finally, the SLR was investigated during hopping and in two protocols that modified the ability of the muscle-tendon complex distal to the cuff to stretch. All measurements were performed with deflated and inflated cuff. Results of the protocols were as follows: 1) inflation of the cuff reduced the SLR but not the MLR; 2) the H-reflex, the M-wave, and, 3) SNAPs of n. tibialis remained unchanged with deflated and inflated cuff; 4) the SLR was dependent on the stretch velocity with deflated and also inflated cuff; 5 and 6) the reduction of the SLR by the cuff was dependent on the elastic properties of the muscle-tendon complex distal to the cuff; and 7) the cuff reduced the SLR during hopping. The present results suggest that the cuff did not affect the reflex arc per se. It is proposed that inflation restricted stretch of the muscles underlying the cuff so that most of the length change occurred in the muscle-tendon complex distal to the cuff. As a consequence, the muscle spindles lying within the muscle may be less excited, resulting in a reduced SLR. Due to its applicability in functional tasks, the introduced method can be a useful tool to study afferent feedback in motor control.
在涉及缺血性神经阻滞的实验过程中,我们注意到,在围绕小腿的气动袖带充气后,比目鱼肌诱发牵张的短潜伏期反应(SLR)立即降低。本研究旨在更详细地探究施加压力的这种短期效应。58名健康受试者被分为7个方案组。对小腿肌肉进行单侧牵张以诱发SLR,双侧牵张以诱发随后的中潜伏期反应(MLR)。此外,记录H反射和感觉神经动作电位(SNAPs)。另外,以不同的速度和幅度进行牵张。最后,在单脚跳过程中以及在两个改变袖带远端肌腱复合体伸展能力的方案中研究SLR。所有测量均在袖带放气和充气状态下进行。各方案的结果如下:1)袖带充气会降低SLR,但不会降低MLR;2)H反射、M波,以及3)胫神经的SNAPs在袖带放气和充气时均保持不变;4)无论袖带放气还是充气,SLR均取决于牵张速度;5和6)袖带对SLR的降低取决于袖带远端肌腱复合体的弹性特性;7)袖带在单脚跳过程中会降低SLR。目前的结果表明,袖带本身并不影响反射弧。有人提出,充气限制了袖带下方肌肉的伸展,从而使大部分长度变化发生在袖带远端的肌腱复合体中。因此,位于肌肉内的肌梭可能受到的刺激较少,导致SLR降低。由于其在功能任务中的适用性,所介绍的方法可能是研究运动控制中传入反馈的有用工具。