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慢性不活动猫胫前肌运动单位的力学和形态学特性

Mechanical and morphological properties of chronically inactive cat tibialis anterior motor units.

作者信息

Pierotti D J, Roy R R, Bodine-Fowler S C, Hodgson J A, Edgerton V R

机构信息

Department of Kinesiology, University of California, Los Angeles 90024.

出版信息

J Physiol. 1991 Dec;444:175-92. doi: 10.1113/jphysiol.1991.sp018872.

Abstract
  1. The lumbar spinal cord was functionally isolated in ten cats by cord transection at the junctions of segments T12-T13 and L7-S1 and cutting bilaterally all dorsal roots between the two transections. Two 24 h EMG recording sessions were used to verify that muscles in the lower limb were virtually electrically silent. The cats were maintained in excellent health for 6 months. 2. Six months after spinal cord isolation, an acute experiment was performed to isolate a single motor unit from the tibialis anterior of each hindlimb using ventral root splitting techniques. Each motor unit was characterized physiologically as either fast fatigable (FF, n = 11), fast fatigue resistant (FR, n = 4), fast intermediate (FI, n = 2), or slow (S, n = 1), and repetitively stimulated to deplete the motor unit of its glycogen. 3. Maximum tensions of the fast motor units were lower than mean maximum tensions of control, whereas the S motor unit remained within the range observed in controls. In general, the isometric contractile properties, as well as fatigability, were within the ranges for each of the motor unit types in control cats. The mean fibre cross-sectional areas of the fibres within the FR and FF motor units were approximately 40 and 50% smaller than control, while the mean fibre size of the fibers within the S motor unit was similar to control. 4. Innervation ratios and specific tensions for all experimental motor units were within the ranges of those reported for tibialis anterior motor units in control cats. Thus, it appears that the decrease in maximum tension of the fast motor units was primarily related to a reduction in fibre size. 5. The spatial distribution of the fibres within fast motor units of a spinally isolated cat, as measured by interfibre distances of the motor unit fibres, was similar to that reported for control tibialis anterior motor units. 6. These data suggest that factors independent of activity play a prominent, if not dominant, role in maintaining the complement of motor unit types typical of adult cat muscles. In addition, normal innervation patterns appear to be maintained in the absence of activity.
摘要
  1. 通过在T12 - T13和L7 - S1节段交界处进行脊髓横断,并双侧切断两个横断之间的所有背根,在10只猫身上实现了腰段脊髓的功能隔离。进行了两次24小时的肌电图记录,以验证下肢肌肉实际上处于电静息状态。这些猫保持良好健康状态6个月。2. 脊髓隔离6个月后,进行急性实验,使用腹根劈开技术从每个后肢的胫前肌中分离出单个运动单位。每个运动单位在生理上被表征为快速易疲劳型(FF,n = 11)、快速抗疲劳型(FR,n = 4)、快速中间型(FI,n = 2)或慢型(S,n = 1),并进行重复刺激以耗尽运动单位的糖原。3. 快速运动单位的最大张力低于对照组的平均最大张力,而慢运动单位仍在对照组观察到的范围内。一般来说,等长收缩特性以及疲劳性在对照猫的每种运动单位类型范围内。FR和FF运动单位内纤维的平均横截面积比对照组小约40%和50%,而S运动单位内纤维的平均大小与对照组相似。4. 所有实验运动单位的神经支配率和比张力在对照猫胫前肌运动单位报告的范围内。因此,快速运动单位最大张力的降低似乎主要与纤维大小的减小有关。5. 通过运动单位纤维的纤维间距离测量,脊髓隔离猫的快速运动单位内纤维的空间分布与对照胫前肌运动单位报告的相似。6. 这些数据表明,与活动无关的因素在维持成年猫肌肉典型的运动单位类型补充方面起着突出作用,即使不是主导作用。此外,在缺乏活动的情况下,正常的神经支配模式似乎得以维持。

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