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猫脊髓切断术后腓肠肌内侧运动单位的可塑性

Plasticity of medial gastrocnemius motor units following cordotomy in the cat.

作者信息

Munson J B, Foehring R C, Lofton S A, Zengel J E, Sypert G W

出版信息

J Neurophysiol. 1986 Apr;55(4):619-34. doi: 10.1152/jn.1986.55.4.619.

Abstract

Experiments were performed in adult cats to determine the effects of lumbar cordotomy on synaptic potentials, motoneuron membrane electrical properties, muscle-unit contractile properties, and whole-muscle histochemical properties of a heterogeneous skeletal muscle. Medial gastrocnemius (MG) motor units were examined 1 wk to 7 mo following complete transection of the lumbar spinal cord (cordotomy). Motor units were classified on the basis of their contractile properties as type FF, FI, FR, or S (8, 68). Muscle fibers were classified as type FG, FOG, or SO on the basis of histochemical staining (59). Motoneuron electrical properties (axonal conduction velocity, action-potential amplitude, rheobase, input resistance, afterhyperpolarization), group I EPSPs, and muscle-unit contractile properties (unpotentiated and potentiated twitch, unfused and fused tetanus, fatigability) were measured. Reduced numbers of type FR motor units and increased numbers of types FI + FF motor units were found in electrophysiological experiments 2 wk to 7 mo following cordotomy. Corroborative data were obtained from histochemical studies of the same MG muscles. Electrical properties of the motoneurons of each motor-unit type were normal following cordotomy. The close correspondence between motoneuron electrical properties and muscle-unit contractile properties found in normal MG muscle (68) was preserved following cordotomy. Contractile strength of muscle units of all types was severely reduced following cordotomy; partial recovery occurred 4-7 mo following cordotomy. Cross-sectional area of muscle fibers was reduced at all times investigated (2 wk to 7 mo). In three cats, homonymous group Ia single-fiber-motoneuron EPSPs were studied 1 or 2 mo following cordotomy at spinal level L4-5 or L5. EPSP amplitude and afferent-to-motoneuron projection frequency were normal. In 12 other cats, composite heteronymous group I EPSPs were studied 2 wk to 7 mo following cordotomy at various levels. Amplitude of these EPSPs was increased, dependent upon level of cordotomy and postoperative time. Hypotheses concerning the influence of motoneurons on muscle, and of muscle on motoneurons, are presented as possible mechanisms whereby the close relation between motoneuron electrical and muscle-unit contractile properties is preserved in the face of redistributed motor-unit populations.

摘要

在成年猫身上进行了实验,以确定腰髓切断术对异质骨骼肌的突触电位、运动神经元膜电特性、肌肉单位收缩特性和全肌肉组织化学特性的影响。在腰髓完全横断(脊髓切断术)后1周7个月,对内侧腓肠肌(MG)运动单位进行了检查。根据其收缩特性,运动单位被分为FF型、FI型、FR型或S型(8, 68)。根据组织化学染色,肌纤维被分为FG型、FOG型或SO型(59)。测量了运动神经元的电特性(轴突传导速度、动作电位幅度、基强度、输入电阻、后超极化)、I组兴奋性突触后电位(EPSP)以及肌肉单位的收缩特性(未增强和增强的单收缩、非融合和融合强直收缩、疲劳性)。在脊髓切断术后2周7个月的电生理实验中,发现FR型运动单位数量减少,FI + FF型运动单位数量增加。从对相同MG肌肉的组织化学研究中获得了确证数据。脊髓切断术后,每种运动单位类型的运动神经元电特性均正常。脊髓切断术后,正常MG肌肉中发现的运动神经元电特性与肌肉单位收缩特性之间的密切对应关系得以保留。脊髓切断术后,所有类型肌肉单位的收缩强度均严重降低;脊髓切断术后47个月出现部分恢复。在所有研究时间点(2周7个月),肌纤维横截面积均减小。在3只猫中,在脊髓L4-5或L5水平进行脊髓切断术后1或2个月,研究了同名Ia单纤维运动神经元EPSP。EPSP幅度和传入运动神经元投射频率均正常。在另外12只猫中,在不同水平进行脊髓切断术后2周~7个月,研究了复合异名I组EPSP。这些EPSP的幅度增加,取决于脊髓切断术的水平和术后时间。提出了关于运动神经元对肌肉的影响以及肌肉对运动神经元的影响的假说,作为在运动单位群体重新分布的情况下,运动神经元电特性与肌肉单位收缩特性之间密切关系得以保留的可能机制。

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