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去大脑猫腓肠肌运动单位的放电模式。

Firing patterns of gastrocnemius motor units in the decerebrate cat.

作者信息

Burke R E

出版信息

J Physiol. 1968 Jun;196(3):631-54. doi: 10.1113/jphysiol.1968.sp008527.

Abstract
  1. The patterns of medial gastrocnemius (MG) motor unit firing in response to MG muscle stretch have been studied in decerebrate cats, using intracellular recording techniques. In most of the units, the motoneurone axonal conduction velocity and cell input resistance were measured, and the maximum amplitude and wave form of the group Ia composite EPSP evoked by MG nerve stimulation were determined. The mechanical properties of the muscle unit portion of each motor unit were also studied.2. Motor unit firing patterns were classified into two groups, ;tonic' and ;phasic'. With few exceptions, tonic motor units showed sustained firing throughout MG stretches of varying duration, while most phasic units did not fire at all to the same stimulus. Tetanization of the afferents did not convert any of the previously phasic units to tonic firing.3. MG motor units in this study were divided into three groups on the basis of the muscle unit twitch properties. Units with short twitch time to peak values (< 35 msec) were subdivided into two groups according to twitch tension output: (a) type F, with twitch tension > 1.5 g, and (b) type F(), with twitch tension < 1.5 g. Units with slow twitch time to peak (> 35 msec) were classified as type S.4. The presence or absence of tonic firing during sustained MG stretch was found to be significantly related to the following factors: (a) the motor unit twitch type, in that tonic firing was observed in 100% of type S, 70% of type F(), and only 10% of type F units; (b) the apparent motoneurone size, in that tonic units tended to have higher cell input resistance values and slower axonal conduction velocities than phasic units; and (c) the density and spatial organization of the group Ia synaptic input, in that the MG monosynaptic EPSPs found in tonic motor units tended to be both larger in amplitude and longer in duration than those found in phasic units.5. The intrinsic properties of MG motor units, the characteristics of the group Ia synaptic input to the motoneurones and the unit firing patterns elicited by MG muscle stretch appear to be mutually interrelated, forming a pattern of motor units within the MG pool which is analogous to the pattern thought to characterize the motor units belonging to ;slow' and ;fast' muscles. In most respects this pattern of MG motor units appears to be a continuum without clearly separable subgroups.
摘要
  1. 利用细胞内记录技术,在去大脑猫身上研究了腓肠肌内侧头(MG)运动单位对MG肌肉拉伸的放电模式。在大多数单位中,测量了运动神经元的轴突传导速度和细胞输入电阻,并确定了MG神经刺激诱发的Ia类复合兴奋性突触后电位(EPSP)的最大振幅和波形。还研究了每个运动单位的肌肉单位部分的力学特性。

  2. 运动单位放电模式分为两组:“紧张性”和“相位性”。除少数例外,紧张性运动单位在不同持续时间的MG拉伸过程中持续放电,而大多数相位性单位对相同刺激根本不放电。传入神经的强直刺激并没有将任何先前的相位性单位转变为紧张性放电。

  3. 本研究中的MG运动单位根据肌肉单位的抽搐特性分为三组。峰值抽搐时间短(<35毫秒)的单位根据抽搐张力输出细分为两组:(a)F型,抽搐张力>1.5克;(b)F(*)型,抽搐张力<1.5克。峰值抽搐时间慢(>35毫秒)的单位归类为S型。

  4. 发现在持续的MG拉伸过程中紧张性放电的有无与以下因素显著相关:(a)运动单位抽搐类型,即100%的S型、70%的F(*)型和仅10%的F型单位观察到紧张性放电;(b)明显的运动神经元大小,即紧张性单位往往比相位性单位具有更高的细胞输入电阻值和更慢的轴突传导速度;(c)Ia类突触输入的密度和空间组织,即紧张性运动单位中发现的MG单突触EPSP在振幅上往往更大,持续时间更长,比相位性单位中发现的EPSP。

  5. MG运动单位的内在特性、运动神经元的Ia类突触输入特征以及MG肌肉拉伸诱发的单位放电模式似乎相互关联,在MG池中形成了一种运动单位模式,类似于被认为是“慢”肌和“快”肌所属运动单位特征性的模式。在大多数方面,这种MG运动单位模式似乎是一个连续体,没有明显可分离的亚组。

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