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肌梭对单个运动单位收缩反应的相关性分析

Correlation analysis of muscle spindle responses to single motor unit contractions.

作者信息

Binder M D, Kroin J S, Moore G P, Stauffer E K, Stuart D G

出版信息

J Physiol. 1976 May;257(2):325-36. doi: 10.1113/jphysiol.1976.sp011371.

Abstract
  1. Cross-correlation techniques have been used to study the responses of muscle spindle afferents from the soleus muscle of the cat to twitch contractions of single motor units. 2. Cross-correlograms (post-stimulus time histograms) were used to give the frequency of occurrence of a receptor spike at various times following the initiation of a motor unit contraction together with a display of the average twitch tension wave form. 3. The cross-correlograms revealed that the contraction of a single motor unit can be an effective stimulus to a spindle receptor and may induce afferent firing pattern alterations similar to those observed with whole muscle contraction. 4. The cross-correlograms also revealed quantitative differences in the response of a receptor to contraction of different motor units and to contraction of the same motor unit at different lengths. These differences reflect subtle changes in receptor deformation developed by the twitch of a motor unit under different conditions and by the twitches of different motor units. The results are consistent with anatomical data on the number and distribution of motor units and receptor organs in cat soleus. 5. These findings emphasize that rather than simply acting as generalized force or length sensors for the muscle as a whole, each receptor's spike train carries information about the state of a particular set of motor units.
摘要
  1. 互相关技术已被用于研究猫比目鱼肌的肌梭传入纤维对单个运动单位抽搐收缩的反应。2. 互相关图(刺激后时间直方图)用于给出运动单位收缩开始后不同时间受体锋电位出现的频率,同时显示平均抽搐张力波形。3. 互相关图显示,单个运动单位的收缩可以是对梭形受体的有效刺激,并可能诱发与全肌收缩时观察到的类似的传入放电模式改变。4. 互相关图还揭示了受体对不同运动单位收缩以及同一运动单位在不同长度下收缩的反应存在定量差异。这些差异反映了在不同条件下运动单位抽搐以及不同运动单位抽搐所产生的受体变形的细微变化。结果与猫比目鱼肌中运动单位和受体器官的数量及分布的解剖学数据一致。5. 这些发现强调,每个受体的锋电位序列并非简单地作为整个肌肉的广义力或长度传感器,而是携带有关特定一组运动单位状态的信息。

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Nerve endings in mammalian muscle.哺乳动物肌肉中的神经末梢。
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J Physiol. 1951 Apr;113(2-3):298-315. doi: 10.1113/jphysiol.1951.sp004573.
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