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Effects of slow muscle stretch on the responses of primary and secondary endings to small amplitude periodic stretches in de-efferented soleus muscle spindles.慢肌拉伸对去传入比目鱼肌梭中初级和次级终末对小幅度周期性拉伸反应的影响。
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Changes in excitability of tendon tap and Hoffmann reflexes following voluntary contractions.自主收缩后腱反射和霍夫曼反射兴奋性的变化。
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肌肉拉伸可减少人体力量产生中的收缩后误差。

Post-contraction errors in human force production are reduced by muscle stretch.

作者信息

Hutton R S, Kaiya K, Suzuki S, Watanabe S

机构信息

Department of Psychology, University of Washington, Seattle 98195.

出版信息

J Physiol. 1987 Dec;393:247-59. doi: 10.1113/jphysiol.1987.sp016822.

DOI:10.1113/jphysiol.1987.sp016822
PMID:3446798
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1192392/
Abstract
  1. Based on findings from a previous study of plantar-flexor muscles, the effect of a conditioning 25, 50 or 100% maximum voluntary contraction (m.v.c.) of elbow flexor muscles on the accuracy of reproducing a learned criterion muscle force (2% m.v.c.) was investigated. 2. Each conditioning contraction induced a significant error in reproducing the criterion muscle force under conditions of no visual feed-back of force. As with plantar-flexor muscles, the error was consistently in the direction of a positive bias. The magnitude of the error co-varied with the magnitude of the previous contraction and, in all cases, decayed toward criterion force values over a 35 s period. 3. A brief muscle stretch, induced before subjects attempted the criterion force, reduced the size of the error but did not completely eliminate the bias. 4. The findings provide indirect evidence of post-contraction potentiation of stretch reflex pathways. Residual post-contraction errors in force production after muscle stretch may be attributed to other central or peripheral neural factors such as, for example, potentiating effects of prior activation on submaximal tension production in skeletal muscle.
摘要
  1. 基于先前对跖屈肌的研究结果,本研究调查了肘关节屈肌进行25%、50%或100%最大自主收缩(m.v.c.)的条件训练对再现习得的标准肌肉力量(2% m.v.c.)准确性的影响。2. 在没有力的视觉反馈的情况下,每次条件收缩在再现标准肌肉力量时都会引起显著误差。与跖屈肌一样,误差始终呈正偏差方向。误差的大小与先前收缩的大小共同变化,并且在所有情况下,在35秒的时间段内朝着标准力值衰减。3. 在受试者尝试标准力之前进行的短暂肌肉拉伸减小了误差的大小,但并未完全消除偏差。4. 这些发现为收缩后牵张反射通路的增强提供了间接证据。肌肉拉伸后力量产生中残留的收缩后误差可能归因于其他中枢或外周神经因素,例如先前激活对骨骼肌次最大张力产生的增强作用。