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The central control of the dynamic response of muscle spindle receptors.肌梭感受器动态反应的中枢控制。
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THE RESPONSE OF DE-EFFERENTED MUSCLE SPINDLE RECEPTORS TO STRETCHING AT DIFFERENT VELOCITIES.去传入神经的肌梭感受器对不同速度牵张的反应
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The responses of the primary and secondary endings of muscle spindles with intact motor innervation during applied stretch.在施加牵张时,具有完整运动神经支配的肌梭初级和次级末梢的反应。
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The response of de-efferented muscle spindle endings in the cat's soleus to slow extension of the muscle.猫比目鱼肌去传入神经的肌梭末梢对肌肉缓慢伸展的反应。
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分离的哺乳动物肌梭初级和次级末梢的冲动活动及感受器电位

Impulse activity and receptor potential of primary and secondary endings of isolated mammalian muscle spindles.

作者信息

Hunt C C, Ottoson D

出版信息

J Physiol. 1975 Oct;252(1):259-81. doi: 10.1113/jphysiol.1975.sp011143.

DOI:10.1113/jphysiol.1975.sp011143
PMID:127835
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1348477/
Abstract
  1. An isolated muscle spindle preparation from a tail muscle of cat is described. The afferent response to a ramp-and-hold stretch was recorded in individual axons from identified primary and secondary endings. 2. Primary endings exhibit a prominent dynamic response, including an initial burst. They also show a well-maintained static discharge. Secondary endings also show a well-sustained static discharge but generally have a much lower dynamic sensitivity. The response of primary and secondary endings of the isolated spindle are similar to the typical responses seen in vivo in groups Ia or group II afferent fibres respectively. 3. Following impulse blockade by tetrodotoxin, the receptor potential was recorded from primary and from secondary endings in response to ramp-and-hold stretch. 4. During the dynamic phase the receptor potential of primary endings consists of a depolarization which has two components. (a) An initial component occurs early during ramp stretch, depends in rate of rise and amplitude on velocity of stretch and is reduced on repetitive stretch; it appears to be responsible for the initial burst. (b) A late dynamic component, which follows, is also dependent on stretch velocity and produces the late dynamic discharge. At the end of ramp stretch the receptor potential falls, and may undershoot, the static level. There is a subsequent adaptive fall during hold stretch, then a maintained static level of receptor potential. On release from stretch the membrane is hyperpolarized. 5. Secondary endings usually show a smaller dynamic response, lacking the initial component seen in primary endings. They also generally lack an undershoot following the ramp and have less of a post-release hyperpolarization. 6. Static levels of receptor potential in both primary and secondary endings are related to amplitude of stretch. 7. The receptor potentials of primary and secondary endings account for the major features of the impulse responses of these endings to ramp-and-hold stretch. In primary endings the dynamic frequencies may also depend upon a sensitivity of the impulse initiating site to rate of change of receptor current.
摘要
  1. 本文描述了一种从猫尾部肌肉分离出的肌梭标本。在已识别的初级和次级终末的单个轴突中记录了对斜坡-保持拉伸的传入反应。2. 初级终末表现出显著的动态反应,包括一个初始爆发。它们还显示出维持良好的静态放电。次级终末也显示出维持良好的静态放电,但通常动态敏感性要低得多。分离出的肌梭的初级和次级终末的反应分别类似于在体内Ia类或II类传入纤维中观察到的典型反应。3. 在河豚毒素阻断冲动后,记录了初级和次级终末对斜坡-保持拉伸的感受器电位。4. 在动态阶段,初级终末的感受器电位由一个去极化组成,该去极化有两个成分。(a) 一个初始成分在斜坡拉伸早期出现,其上升速率和幅度取决于拉伸速度,在重复拉伸时会降低;它似乎是初始爆发的原因。(b) 随后的一个晚期动态成分也取决于拉伸速度,并产生晚期动态放电。在斜坡拉伸结束时,感受器电位下降,并且可能低于静态水平。在保持拉伸期间随后会有适应性下降,然后是感受器电位的维持静态水平。从拉伸中释放时,膜会发生超极化。5. 次级终末通常显示出较小的动态反应,缺乏在初级终末中看到的初始成分。它们通常在斜坡后也缺乏低于静态水平的情况,并且释放后超极化程度较小。6. 初级和次级终末的感受器电位静态水平与拉伸幅度有关。7. 初级和次级终末的感受器电位解释了这些终末对斜坡-保持拉伸的冲动反应的主要特征。在初级终末中,动态频率也可能取决于冲动起始部位对感受器电流变化率的敏感性。