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在姿势和运动活动期间,去大脑猫和脊髓猫的小腿三头肌牵张反射增强。

Gain of the triceps surae stretch reflex in decerebrate and spinal cats during postural and locomotor activities.

作者信息

Bennett D J, De Serres S J, Stein R B

机构信息

Department of Physiology, University of Alberta, Edmonton, Canada.

出版信息

J Physiol. 1996 Nov 1;496 ( Pt 3)(Pt 3):837-50. doi: 10.1113/jphysiol.1996.sp021731.

Abstract
  1. The triceps surae (TS) stretch reflex was measured in decerebrate cats during crossed extensor stimulation and after spinalization during rhythmic locomotor activity induced by clonidine and manual perineal stimulation. The TS force in response to sinusoidal stretch was measured at a given contraction level before and after deafferentation, and the 'reflex force' was computed by subtracting these two responses. Reflex 'gain' was computed as the ratio of the reflex and deafferented force responses (a unitless estimate of the open loop feedback gain). 2. Prior to locomotion the spontaneous muscle activity was low (less than 15% of maximum), but the reflex gain was relatively high (close to 1.0 with a 5 Hz stretch). When locomotion commenced the reflex gain was markedly lowered when measured at the same contraction level as before locomotion (25% of the gain prior to locomotion). At higher contraction levels the reflex gain was not significantly increased. The reflex force and EMG responses to stretch increased with the contraction level, but their effect on the total reflex gain was cancelled by an associated increase in the intrinsic muscle stiffness. 3. In the decerebrate cat, during weak tonic contractions (spontaneous), the reflex gain was high and comparable with the gain in the resting spinal cat. However, with increased tonic contractions produced by crossed extensor stimulation the reflex gain dropped. At higher contraction levels the gain was not significantly different from the gain during spinal locomotion. 4. When the frequency of stretch was increased from 3 to 20 Hz, EMG responses to stretch increased, but the reflex force decreased, since a more fused contraction developed with the more frequent reflex activations. Overall, the reflex gain decreased with frequency in both spinal and decerebrate cats. The phase lag of the reflex force, relative to the intrinsic muscle force, increased with increasing frequency, due to reflex delays, with a 180 deg lag occurring between 12 and 18 Hz (tremor frequencies). The mean gain was significantly lower and the phase lag was significantly greater during locomotion than during tonic crossed extensor contractions, suggesting different reflex mechanisms. 5. In conclusion, during locomotion in spinal cats afferent feedback from low frequency ankle movements, similar to those occurring during the normal step cycle, reflexly produces a small but significant fraction of the extensor force (about a quarter of the stretch-related force modulation). This fraction is remarkably constant at the different contraction levels of the step cycle. Afferent feedback during higher frequency movement is less effective, minimizing the chance of instability and tremor. In contrast during tonic contractions afferent feedback produces half of the total muscle force during perturbations, clearly contributing to the maintenance of posture.
摘要
  1. 在去大脑猫身上,于交叉伸肌刺激期间以及脊髓横断后,在可乐定和手动会阴刺激诱导的节律性运动活动过程中,测量了小腿三头肌(TS)的牵张反射。在去传入神经前后,于给定收缩水平测量了对正弦牵张的TS力,并通过减去这两个反应来计算“反射力”。反射“增益”计算为反射力与去传入神经后力反应的比值(开环反馈增益的无量纲估计值)。2. 在运动开始前,自发肌肉活动较低(低于最大值的15%),但反射增益相对较高(在5Hz牵张时接近1.0)。当运动开始时,在与运动前相同的收缩水平下测量,反射增益显著降低(为运动前增益的25%)。在较高收缩水平下,反射增益没有显著增加。对牵张的反射力和肌电图反应随收缩水平增加,但它们对总反射增益的影响被内在肌肉刚度的相关增加所抵消。3. 在去大脑猫中,在弱强直收缩(自发)期间,反射增益较高,与静息脊髓猫中的增益相当。然而,随着交叉伸肌刺激产生的强直收缩增加,反射增益下降。在较高收缩水平下,增益与脊髓运动期间的增益没有显著差异。4. 当牵张频率从3Hz增加到20Hz时,对牵张的肌电图反应增加,但反射力下降,因为随着更频繁的反射激活形成了更融合的收缩。总体而言,在脊髓猫和去大脑猫中,反射增益均随频率降低。由于反射延迟,反射力相对于内在肌肉力的相位滞后随频率增加,在12至18Hz(震颤频率)之间出现180度滞后。运动期间的平均增益显著低于强直交叉伸肌收缩期间,且相位滞后显著更大,表明反射机制不同。5. 总之,在脊髓猫的运动过程中,来自低频踝关节运动的传入反馈,类似于正常步周期中发生的情况,反射性地产生一小部分但显著的伸肌力量(约为与牵张相关的力量调制的四分之一)。这一部分在步周期的不同收缩水平下非常恒定。高频运动期间的传入反馈效果较差,将不稳定和震颤的可能性降至最低。相比之下,在强直收缩期间,传入反馈在扰动期间产生总肌肉力量的一半,显然有助于维持姿势。

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