Grottel K, Celichowski J, Kowalski K
Acta Physiol Pol. 1986 Jul-Aug;37(4-5):219-27.
The spatial analysis of the potentials of single motor units of the rat medial gastrocnemius muscle evoked by stimulation of the fibres of split ventral roots was carried out with a bipolar electrode moving in the direction perpendicular to the longitudinal axis of the muscle fibres. During this movement of the electrode a variability was observed in the time of the biphasic potential from its maximum to minimum, and in the peak-to-peak amplitude of these potentials. The potentials recorded outside the territory of the motor unit had a lower amplitude in relation to the potentials from the territory of the unit. This made localization of the motor unit on the cross-section of the muscle possible. Differences in the duration of the potential from maximal to minimal amplitude (maximum-minimum amplitude time--M-MAT) of each investigated motor unit from successive recording sites reflected the number of fibres contributing to the action potential and the distance of the recording surface of the electrode from the zone of the motor end-plates of this motor unit. The greatest diameter of the territory of the observed motor units reached 2.5 mm.
用一个双极电极沿垂直于肌纤维纵轴的方向移动,对刺激大鼠腓肠肌内侧单运动单位的电位进行空间分析。在电极的这种移动过程中,观察到双相电位从最大值到最小值的时间以及这些电位的峰峰值幅度存在变化。在运动单位区域之外记录到的电位相对于该单位区域内的电位幅度较低。这使得在肌肉横截面上定位运动单位成为可能。每个被研究运动单位从连续记录部位的电位从最大幅度到最小幅度的持续时间差异(最大 - 最小幅度时间 - M - MAT)反映了对动作电位有贡献的纤维数量以及电极记录表面与该运动单位运动终板区域的距离。观察到的运动单位区域的最大直径达到2.5毫米。