Anzil A P, Sancesario G, Massa R, Bernardi G
Department of Pathology, SUNY-HSCB, Brooklyn, New York.
Muscle Nerve. 1991 Apr;14(4):358-69. doi: 10.1002/mus.880140411.
Relevant muscle- and species-specific differences may be found in the reaction of muscles to hindlimb suspension. This problem has been studied in 5 rabbits following a one-week hindlimb suspension, and in 5 ground-based controls. The soleus and the tibialis were prepared for light and transmission electron microscopy. In suspension the animals occasionally extended and flexed the hindlimbs, but, when standing still, their hindfeet were plantar-flexed to an angle of 180 degrees. In this position the length of the soleus was determined to be 35% less than in controls, whereas that of the tibialis was 30% more. Histologically, the tibialis fibers usually exhibited a preserved sarcomeric pattern, whereas soleus fibers displayed a regular sequence of areas of shortened sarcomeres, alternating with areas of myofibrillar disruption. These findings demonstrated that hindlimb suspension induces a focal breakdown of the soleus myofibrils, probably dependent on the reduced longitudinal tension of the suspended soleus and its phasic contractions against no load. It is conceivable that similar factors could also be responsible for soleus muscle atrophy induced by hypogravity as well as by other clinical conditions during which a stressful plantar flexion of the feet occurs against no load.
肌肉对后肢悬吊的反应可能存在相关的肌肉特异性和物种特异性差异。该问题已在5只经历一周后肢悬吊的兔子以及5只地面对照组兔子中进行了研究。对比目鱼肌和胫骨肌进行了光镜和透射电镜观察。在悬吊过程中,动物偶尔会伸展和弯曲后肢,但静止站立时,它们的后足呈跖屈180度。在此位置,比目鱼肌的长度比对照组短35%,而胫骨肌的长度比对照组长30%。组织学上,胫骨肌纤维通常呈现保留的肌节模式,而比目鱼肌纤维则显示出肌节缩短区域的规则序列,与肌原纤维破坏区域交替出现。这些发现表明,后肢悬吊会导致比目鱼肌肌原纤维的局灶性破坏,这可能取决于悬吊比目鱼肌的纵向张力降低及其在无负荷情况下的相位收缩。可以想象,类似的因素也可能导致低重力以及其他临床情况下出现的比目鱼肌萎缩,即在无负荷情况下发生应激性跖屈时。