Fell R D, Gladden L B, Steffen J M, Musacchia X J
J Appl Physiol (1985). 1985 Jan;58(1):65-9. doi: 10.1152/jappl.1985.58.1.65.
This investigation examined the effects of hypokinesia/hypodynamia (H/H) on fatigability and contractile properties of rat soleus (S) and gastrocnemius (G) muscles. Whole-body suspension for 1 wk was used to eliminate hindlimb load-bearing functions and simultaneously permit voluntary isotonic contractions. Train stimulations (45/min, 16 min) resulted in significantly (P less than 0.05) faster rates of fatigue to lower asymptotes in G from H/H rats. Fatigue in the S was minimal at this stimulation frequency and differences between H/H and control animals were not significant. Contractile properties (twitch and tetanic) were measured before and after train stimulations. H/H suspension resulted in an increased twitch tension in G. However, H/H did not change train or tetanic tensions per gram or other G contractile properties. Peak twitch, train, and tetanic tensions, time to peak tension, one-half relaxation time, and twitch and tetanic peak rates of tension development and decline were unchanged by H/H in S muscles. These results indicate that 1 wk of H/H-induced muscle atrophy significantly increases fatigability in G but does not effect contractile properties of fast-twitch (G) or slow-twitch (S) muscles.
本研究探讨了运动减退/动力减退(H/H)对大鼠比目鱼肌(S)和腓肠肌(G)疲劳性及收缩特性的影响。采用全身悬吊1周的方法,以消除后肢的承重功能,同时允许进行自主等张收缩。训练刺激(45次/分钟,16分钟)导致H/H大鼠的G肌疲劳速度显著加快(P<0.05),达到较低的疲劳下限。在此刺激频率下,S肌的疲劳程度最小,H/H组与对照组动物之间无显著差异。在训练刺激前后测量收缩特性(单收缩和强直收缩)。H/H悬吊导致G肌单收缩张力增加。然而,H/H并未改变每克肌肉的强直收缩张力或其他G肌收缩特性。S肌的单收缩峰值、强直收缩峰值、达到峰值张力的时间、半松弛时间以及单收缩和强直收缩的张力发展和下降峰值速率均未因H/H而改变。这些结果表明,1周的H/H诱导的肌肉萎缩显著增加了G肌的疲劳性,但不影响快肌(G)或慢肌(S)的收缩特性。