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首页> 外文期刊>Journal of Neurophysiology >Fast-to-slow conversion following chronic low-frequency activation of medial gastrocnemius muscle in cats. I. Muscle and motor unit properties.
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Fast-to-slow conversion following chronic low-frequency activation of medial gastrocnemius muscle in cats. I. Muscle and motor unit properties.

机译:在猫中腓肠肌的慢性低频激活后,快速到缓慢的转换。 I.肌肉和运动单位的属性。

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摘要

This study of cat medial gastrocnemius (MG) muscle and motor unit (MU) properties tests the hypothesis that the normal ranges of MU contractile force, endurance, and speed are directly associated with the amount of neuromuscular activity normally experienced by each MU. We synchronously activated all MUs in the MG muscle with the same activity (20 Hz in a 50% duty cycle) and asked whether conversion of whole muscle contractile properties is associated with loss of the normal heterogeneity in MU properties. Chronically implanted cuff electrodes on the nerve to MG muscle were used for 24-h/day stimulation and for monitoring progressive changes in contractile force, endurance, and speed by periodic recording of maximal isometric twitch and tetanic contractions under halothane anesthesia. Chronic low-frequency stimulation slowed muscle contractions and made them weaker, and increased muscle endurance. The most rapid and least variable response to stimulation was a decline in force output of the muscle and constituent MUs. Fatigue resistance increased more slowly, whereas the increase in time to peak force varied most widely between animals and occurred with a longer time course than either force or endurance. Changes in contractile force, endurance, and speed of the whole MG muscle accurately reflected changes in the properties of the constituent MUs both in extent and time course. Normally there is a 100-fold range in tetanic force and a 10-fold range in fatigue indexes and twitch time to peak force. After chronic stimulation, the range in these properties was significantly reduced and, even in MU samples from single animals, the range was shown to correspond with the slow (type S) MUs of the normal MG. In no case was the range reduced to less than the type S range. The same results were obtained when the same chronic stimulation pattern of 20 Hz/50% duty cycle was imposed on paralyzed muscles after hemisection and unilateral deafferentation. The findings that the properties of MUs still varied within the normal range of type S MUs and were still heterogeneous despite a decline in the variance in any one property indicate that the neuromuscular activity can account only in part for the wide range of muscle properties. It is concluded that the normal range of properties within MU types reflects an intrinsic regulation of properties in the multinucleated muscle fibers.
机译:这项对猫内侧腓肠肌(MG)肌肉和运动单位(MU)特性的研究检验了以下假设:MU的正常收缩力,耐力和速度的正常范围与每个MU正常经历的神经肌肉活动量直接相关。我们以相同的活动(20 Hz,50%的占空比)同步激活了MG肌肉中的所有MU,并询问整个肌肉收缩特性的转换是否与MU特性正常异质性的丧失相关。在MG肌肉的神经上慢性植入袖带电极用于每天24小时刺激,并通过周期性记录氟烷麻醉下的最大等距抽搐和破伤风收缩来监测收缩力,耐力和速度的进行性变化。慢性低频刺激减缓了肌肉收缩,使它们变弱,并增加了肌肉耐力。对刺激的最快,最无变化的响应是肌肉和组成MU的力输出下降。疲劳抵抗力的增加较慢,而达到峰值力量的时间增加在动物之间变化最大,并且发生时间长于力量或耐力。整个MG肌肉的收缩力,耐力和速度的变化准确地反映了组成MU的特性在时间和范围上的变化。通常,强直作用力的范围是100倍,疲劳指数和达到峰值力的抽动时间是10倍。慢性刺激后,这些特性的范围显着减小,即使在单只动物的MU样品中,该范围也显示出与正常MG的慢速(S型)MU相对应。决不能将范围减小到小于S型范围。半截肢和单侧脱除咖啡因后,对瘫痪的肌肉施加相同的20 Hz / 50%占空比的慢性刺激模式,可获得相同的结果。 MUs的特性仍在S型MUs的正常范围内变化,并且尽管任何一种特性的变化都减小,但仍然是异质性的发现表明,神经肌肉活动只能部分解释广泛的肌肉特性。结论是,MU类型内的正常特性范围反映了多核肌纤维特性的内在调节。

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