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多神经支配:非洲爪蟾小足部肌肉中重叠运动单位的力学特性

Polyneural innervation: mechanical properties of overlapping motor units in a small foot muscle of Xenopus laevis.

作者信息

Ridge R M, Thomson A M

出版信息

J Physiol. 1980 Sep;306:29-39. doi: 10.1113/jphysiol.1980.sp013383.

Abstract
  1. Extensor digitorum longus IV of Xenopus laevis was isolated together with its nerve and the 8th and 9th spinal roots. Motor units were functionally isolated, by splitting and stimulating ventral root filaments. 2. Motor units were stimulated separately and in pairs. Between many pairs, overlap of motor innervation was found (evidence of polyneuronal innervation of muscle fibres). Evidence for overlap was a deficit in the tension developed when the two units were stimulated together compared with the sum of the tetanic tensions developed when the two units were stimulated separately. This provided a measure of the extent of overlap. 3. Polyneuronal innervation was confirmed by intracellular recording from muscle fibres during stimulation of each motor axon. 4. For each motor unit, isometric twitch and tetanic tensions, twitch contraction time and the motor axon conduction time and distance were measured and axon conduction velocity and twitch:tetanus ratio were calculated. 5. The properties of the pairs of motor units found to overlap are reported and marked disparities between the properties of some units in overlapping pairs demonstrated. 6. Frequency distributions for the properties of motor units shown to overlap with others were not significantly different from those for total unit samples., Therefore polyneuronal innervation of muscle fibres occurs throughout the motor unit population of this muscle. 7. In several motor units the isometric twitches of several individual muscle fibres were recorded, each fibre being stimulated by intracellular current injection. It was found that contraction times of single fibres differed by up to 36% between muscle fibres in the same unit and that twitch tension varied by up to 400%.
摘要
  1. 分离出非洲爪蟾的第四趾长伸肌及其神经以及第8和第9脊髓神经根。通过分离和刺激腹根细丝在功能上分离运动单位。2. 分别和成对刺激运动单位。在许多对运动单位之间,发现了运动神经支配的重叠(肌肉纤维多神经元支配的证据)。重叠的证据是,与分别刺激两个运动单位时产生的强直张力之和相比,同时刺激这两个运动单位时产生的张力有所不足。这提供了一种衡量重叠程度的方法。3. 通过在刺激每个运动轴突时对肌肉纤维进行细胞内记录,证实了多神经元支配。4. 对于每个运动单位,测量等长单收缩和强直张力、单收缩收缩时间以及运动轴突传导时间和距离,并计算轴突传导速度和单收缩:强直比。5. 报告了发现重叠的成对运动单位的特性,并展示了重叠对中一些单位特性之间的显著差异。6. 显示与其他单位重叠的运动单位特性的频率分布与总单位样本的频率分布没有显著差异。因此,该肌肉的整个运动单位群体中都存在肌肉纤维的多神经元支配。7. 在几个运动单位中,记录了几根单个肌肉纤维的等长单收缩,每根纤维通过细胞内电流注入进行刺激。发现在同一单位内,单根纤维的收缩时间相差高达36%,单收缩张力相差高达400%。

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