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The muscle spindles in slow and twitch skeletal muscle of the lizard

机译:蜥蜴的缓慢和抽搐骨骼肌中的肌肉纺锤体

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摘要

1. Responses from stretch receptors, identified as muscle spindles, were recorded in filaments of the nerve supplying a twitch muscle, semimembranosus, and a slow muscle, semitendinosus in the lizard Tiliqua.2. While recording afferent discharges in one filament of the motor nerve, several adjacent filaments were each in turn stimulated repetitively until one was encountered which on stimulation produced a powerful increase in spindle firing. Such an effect of the motor stimulus was interpreted as resulting from intrafusal contraction. Any interference with spindle firing patterns from extrafusal contraction produced by the motor stimulation was removed by differentially blocking the contraction with the drug curare.3. Discharge patterns of spindles in response to a slow stretch of the muscle were compared with the response to the same stretch, but during repetitive stimulation of the motor nerve filament which produced an intrafusal contraction.4. At the initial length, the firing rate of spindles in the twitch muscle was greatly increased by the motor tetanus. There was little further increase in the response during and following stretch of the muscle.5. While the spindles in the slow muscle were only moderately excited by the motor tetanus at the initial length of the muscle, a large increase was recorded during the dynamic component of the stretch. At the new length, the steady-state firing continued at a rate well above that for the initial length.6. The effect of the motor tetanus on the response to stretch of muscle spindles in the slow muscle could be mimicked by adding succinyl choline (5 μg/ml.) to the perfusion solution. Spindles in the twitch muscle did not show a sustained sensitivity to the drug.7. It is suggested that while the different effects of motor stimulation on the responses to stretch of spindles in slow and twitch muscle can be explained by propositions based on the sliding filament theory of contraction, the sustained elevation, at the new length, of firing frequencies of spindles in slow muscle might require an additional explanation.
机译:1.在蜥蜴Tiliqua的神经细丝中记录了来自拉伸感受器的响应,该感受器被识别为肌肉纺锤体。神经的细丝供给了抽动肌肉半膜肌和慢肌半腱肌。在记录运动神经的一根细丝中的传​​入放电时,依次依次重复刺激几根相邻的细丝,直到遇到一根,然后在刺激时产生强烈的纺锤体放电。运动刺激的这种作用被解释为由融合内收缩引起。通过用药物咖喱不同程度地阻断收缩,消除了运动刺激所引起的对椎弓根射击方式的干扰,消除了运动刺激。3。比较了在缓慢拉伸肌肉时纺锤体的放电模式与在相同拉伸中的纺锤体放电模式,但是在重复刺激运动神经丝期间产生了融合内收缩。4。在初始长度时,抽动性破伤风极大地提高了抽搐肌肉中纺锤体的击发率。在肌肉拉伸期间和之后,反应几乎没有进一步的增加。5。虽然慢速肌肉中的纺锤仅在肌肉的初始长度被运动性破伤风适度地激发,但是在拉伸的动态过程中记录到了很大的增加。在新的长度下,稳态发射的速率远高于初始长度6。通过向灌注溶液中添加琥珀酰胆碱(5μg/ mL),可以模拟运动性破伤风对慢肌中肌肉纺锤体伸展反应的影响。抽搐肌中的纺锤体对药物没有持续的敏感性。7。建议通过基于滑丝收缩理论的命题可以解释运动刺激对慢速和抽搐肌肉对纺锤体拉伸响应的不同影响,但在新的长度下,持续的抬高击发频率是可能的。慢肌纺锤可能需要其他解释。

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