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家鸭肌肉传入神经的反应特性

Response characteristics of muscle afferents in the domestic duck.

作者信息

Dorward P K

出版信息

J Physiol. 1970 Nov;211(1):1-17. doi: 10.1113/jphysiol.1970.sp009262.

Abstract
  1. Response patterns of 116 muscle stretch receptor units isolated from the sciatic nerve of the duck have been studied, and the units classified as muscle spindles and tendon organs.2. Units classified as spindles had low threshold tensions for maintained discharge. From conduction-velocity measurements, the calculated fibrediameter spectrum appears to be unimodal, ranging from 5 to 11-12 mum.3. Spindle units showed essentially ;in parallel' behaviour, though increase in initial tension often led to the appearance of ;in series' responses. Although apparent ;alpha-excitation' during maximal tetanic contractions was a common occurrence, no direct evidence of alpha-innervation of spindles was obtained.4. Evidence has been obtained for motor innervation of spindles by fibres distinct from those constituting the alpha supply to extrafusal muscle fibres. Afferent response attributable to this fusimotor innervation is influenced by initial tension and stimulus-frequency. Electrical thresholds for fusimotor responses ranged from 1.1 to 4.03 times alpha maximum.5. Tendon organ units consistently showed ;in series' response patterns during muscle contractions. They were not influenced by stimulation of the high-threshold efferent nerve supply to the muscles.6. Threshold tensions required for maintained discharge in tendon organ units from m. gastrocnemius pars lateralis were characteristically high; however, many units from m. flexor perforans et perforatus d. 3 had unexpectedly low mechanical thresholds. The calculated fibre-diameter spectrum for tendon organ units is unimodal, ranging from 4-7 to 10-11 mum. As in mammals, they contribute to the coarse-fibre component in the muscle nerve and include the fastest fibres present.
摘要
  1. 对从鸭坐骨神经分离出的116个肌肉牵张感受器单元的反应模式进行了研究,并将这些单元分为肌梭和腱器官。

  2. 分类为肌梭的单元维持放电的阈值张力较低。根据传导速度测量,计算出的纤维直径谱似乎是单峰的,范围从5到11 - 12微米。

  3. 肌梭单元基本上表现出“并联”行为,尽管初始张力的增加常常导致“串联”反应的出现。虽然在最大强直收缩期间明显的“α兴奋”很常见,但未获得肌梭α神经支配的直接证据。

  4. 已经获得证据表明,肌梭由不同于构成梭外肌纤维α神经供应的纤维进行运动神经支配。这种肌运动神经支配引起的传入反应受初始张力和刺激频率的影响。肌运动反应的电阈值范围为α最大值的1.1至4.03倍。

  5. 腱器官单元在肌肉收缩期间始终表现出“串联”反应模式。它们不受对肌肉高阈值传出神经供应的刺激影响。

  6. 来自腓肠肌外侧部的腱器官单元维持放电所需的阈值张力通常较高;然而,来自第三趾屈肌的许多单元的机械阈值意外地低。腱器官单元的计算纤维直径谱是单峰的,范围从4 - 7到10 - 11微米。与哺乳动物一样,它们构成肌肉神经中的粗纤维成分,并且包括存在的最快纤维。

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本文引用的文献

1
Nerve endings in mammalian muscle.哺乳动物肌肉中的神经末梢。
J Physiol. 1933 Apr 13;78(1):1-53. doi: 10.1113/jphysiol.1933.sp002984.
2
Stretch receptor discharges during muscle contraction.肌肉收缩期间牵张感受器的放电。
J Physiol. 1951 Apr;113(2-3):298-315. doi: 10.1113/jphysiol.1951.sp004573.

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