Jami L, Lan-Couton D, Malmgren K, Petit J
Brain Res. 1979 Mar 23;164:53-9. doi: 10.1016/0006-8993(79)90005-2.
In three instances, repetitive stimulation of a single fast skeleto-fusimotor axon supplying cat tenuissimus muscle was observed to activate a secondary ending belonging to a precisely located spindle. Prolonged repetitive stimulation of these beta-axons elicited glycogen depletion in the intrafusal muscle fibres of the located spindles and in extrafusal fibres. The intrafusal depletion affected the longest of the chain fibres in two instances, and the bag1 and bag2 fibres in the third instance. In one experiment, the discharge from the primary ending of the located spindle was also recorded. The fast beta-axon (it supplied the longest chain fibre in the spindle) had a static action on the primary ending. The extrafusal muscle fibres of the 3 fast beta-motor units belonged to the fast oxidative-glycolytic type.
在三个实例中,观察到对供应猫薄肌的单个快速骨骼肌梭内运动轴突进行重复刺激,可激活属于精确位置肌梭的次级末梢。对这些β轴突进行长时间重复刺激,可导致所定位肌梭的梭内肌纤维以及梭外肌纤维出现糖原耗竭。在两个实例中,梭内糖原耗竭影响了最长的链纤维,在第三个实例中影响了袋1和袋2纤维。在一项实验中,还记录了所定位肌梭初级末梢的放电情况。快速β轴突(它供应肌梭中最长的链纤维)对初级末梢有静态作用。3个快速β运动单位的梭外肌纤维属于快速氧化糖酵解型。