Proske U, Stuart G J
J Physiol. 1985 Nov;368:1-17. doi: 10.1113/jphysiol.1985.sp015843.
The responses of muscle spindles in the iliofibularis muscle of the cane toad Bufo marinus were examined during constant velocity stretch of the passive muscle. Spindles were found to show an 'initial burst' of high frequency impulses at the onset of stretch. Associated with the initial burst was a steep passive tension rise in the whole muscle, the short-range elastic component (Hill, 1968), called here the passive stiffness. The size of the initial burst was found to depend on muscle length in a similar way as whole-muscle tetanic tension. Repetitive stretch was found to reduce both the initial burst and passive stiffness. The time taken for both to return to their control values was 3 and 10 s respectively. If immediately following repetitive stretch the muscle, and hence the spindle, was held stretched for 3 s, the initial burst in response to a subsequent stretch from a shorter length remained reduced in size for 300 s. The depression could be reversed by a brief period of fusimotor stimulation. Hypertonic Ringer solutions were found to increase the initial burst and passive stiffness, while both were reduced in hypotonic solutions. Low concentrations of caffeine (1.5 mM) produced a similar decrease in both the initial burst and the passive stiffness. Calcium-free Ringer solution left the stiffness unchanged, and increased the whole dynamic response of the spindle. Metabolic exhaustion and poisoning of the muscle caused the initial burst to increase while decreasing the active tension. It is concluded that the initial burst is an intrafusal manifestation of the passive short-range stiffness of extrafusal muscle which is thought to be due to the formation of stable cross-bridges between the actin and myosin filaments of myofibrils.
在对海蟾蜍(Bufo marinus)的髂腓肌进行被动肌肉等速拉伸的过程中,研究了其肌梭的反应。结果发现,肌梭在拉伸开始时会出现高频冲动的“初始爆发”。与初始爆发相关的是整块肌肉被动张力的急剧上升,即短程弹性成分(希尔,1968),在此称为被动刚度。研究发现,初始爆发的大小与整块肌肉的强直张力一样,取决于肌肉长度。重复拉伸会使初始爆发和被动刚度都降低。两者恢复到对照值所需的时间分别为3秒和10秒。如果在重复拉伸后立即将肌肉(从而肌梭)保持拉伸3秒,那么在随后从较短长度开始拉伸时,初始爆发的大小在300秒内仍会减小。短暂的肌梭运动神经刺激可以逆转这种抑制。发现高渗林格液会增加初始爆发和被动刚度,而在低渗溶液中两者都会降低。低浓度咖啡因(1.5 mM)会使初始爆发和被动刚度出现类似的降低。无钙林格液使刚度保持不变,并增加了肌梭的整体动态反应。肌肉的代谢耗竭和中毒会导致初始爆发增加,同时降低主动张力。得出的结论是,初始爆发是梭外肌被动短程刚度的肌梭内表现,这种刚度被认为是由于肌原纤维的肌动蛋白和肌球蛋白丝之间形成了稳定的横桥。