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下落高度对纵跳过程中比目鱼肌Hoffmann反射兴奋性的影响。

Influence of falling height on the excitability of the soleus H-reflex during drop-jumps.

作者信息

Leukel C, Taube W, Gruber M, Hodapp M, Gollhofer A

机构信息

Department of Sport Science, University of Freiburg, Freiburg, Germany.

出版信息

Acta Physiol (Oxf). 2008 Apr;192(4):569-76. doi: 10.1111/j.1748-1716.2007.01762.x. Epub 2007 Oct 25.

Abstract

AIM

The stretch-shortening cycle (SSC) is characterized by stretching of the target muscle (eccentric phase) prior to a subsequent shortening in the concentric phase. Stretch reflexes in the eccentric phase were argued to influence the performance of short lasting SSCs. In drop-jumps, the short latency component of the stretch reflex (SLR) was shown to increase with falling height. However, in jumps from excessive heights, the SLR was diminished. So far, it is unclear whether the modulation of the SLR relies on spinal mechanisms or on an altered fusimotor drive. The present study aimed to assess the spinal excitability of the soleus Ia afferent pathway at SLR during jumps from low height (LH - 31 cm) and excessive height (EH - 76 cm).

METHODS

In 20 healthy subjects (age 25 +/- 3 years), H-reflexes were timed to occur at the peak of the SLR during drop-jumps from LH and EH.

RESULTS

H-reflexes were significantly smaller at EH than at LH (P < 0.05). Neither soleus and tibialis anterior background EMG nor the size of the maximum M-wave changed with falling height.

CONCLUSION

Differences in the H-reflex between EH and LH indicate that spinal mechanisms are involved in the modulation of the SLR. A decreased excitability of the H-reflex pathway at EH compared with LH is argued to serve as a 'prevention strategy' to protect the tendomuscular system from potential injuries caused by the high load. It is argued that pre-synaptic inhibition of Ia afferents is most likely responsible for the change in H-reflex excitability between the two jump conditions.

摘要

目的

牵张-缩短周期(SSC)的特点是目标肌肉在随后的向心收缩阶段之前先进行拉伸(离心阶段)。有人认为离心阶段的牵张反射会影响短时间SSC的表现。在纵跳中,牵张反射的短潜伏期成分(SLR)会随着下落高度的增加而增强。然而,从过高的高度跳下时,SLR会减弱。到目前为止,尚不清楚SLR的调节是依赖于脊髓机制还是依赖于改变的肌梭运动驱动。本研究旨在评估在从低高度(LH - 31厘米)和过高高度(EH - 76厘米)跳下时,比目鱼肌Ia传入通路在SLR时的脊髓兴奋性。

方法

在20名健康受试者(年龄25±3岁)中,在从LH和EH进行纵跳时,使H反射在SLR的峰值时刻出现。

结果

EH时的H反射明显小于LH时(P < 0.05)。比目鱼肌和胫骨前肌的背景肌电图以及最大M波的大小均未随下落高度而改变。

结论

EH和LH时H反射的差异表明脊髓机制参与了SLR的调节。与LH相比,EH时H反射通路兴奋性降低被认为是一种“预防策略”,以保护肌腱肌肉系统免受高负荷可能造成的损伤。有人认为Ia传入纤维的突触前抑制最有可能是导致两种跳跃条件下H反射兴奋性变化的原因。

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