首页> 外文期刊>Journal of Comparative Physiology, A. Sensory, Neural, and Behavioral Physiology >Fiber-type distribution in insect leg muscles parallels similarities and differences in the functional role of insect walking legs
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Fiber-type distribution in insect leg muscles parallels similarities and differences in the functional role of insect walking legs

机译:昆虫腿部肌肉的纤维型分布在昆虫行走腿的功能作用的相似之处和差异

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Previous studies have demonstrated that myofibrillar ATPase (mATPase) enzyme activity in muscle fibers determines their contraction properties. We analyzed mATPase activities in muscles of the front, middle and hind legs of the orthopteran stick insect (Carausius morosus) to test the hypothesis that differences in muscle fiber types and distributions reflected differences in their behavioral functions. Our data show that all muscles are composed of at least three fiber types, fast, intermediate and slow, and demonstrate that: (1) in the femoral muscles (extensor and flexor tibiae) of all legs, the number of fast fibers decreases from proximal to distal, with a concomitant increase in the number of slow fibers. (2) The swing phase muscles protractor coxae and levator trochanteris, have smaller percentages of slow fibers compared to the antagonist stance muscles retractor coxae and depressor trochanteris. (3) The percentage of slow fibers in the retractor coxae and depressor trochanteris increases significantly from front to hind legs. These results suggest that fiber-type distribution in leg muscles of insects is not identical across leg muscles but tuned towards the specific function of a given muscle in the locomotor system.
机译:以前的研究表明,肌纤维中的肌原纤维ATP酶(MATPase)酶活性决定了它们的收缩性质。我们分析了正交,中间和后腿的肌肉中的Matpase活性(Carausius Morosus),以测试肌纤维类型和分布差异的假设反映了其行为功能的差异。我们的数据表明,所有肌肉都是至少三种纤维类型,快速,中间和慢,并证明:(1)在所有腿的股骨肌肉(伸肌和纤维)中,快速纤维的数量从近端减少到远端,伴随着慢纤维的数量增加。 (2)摆动相位肌肉分度器Coxae和Levator Trochanteris,与拮抗剂肌肉卷曲器Coxae和Depressor Trochanteris相比,较小的慢纤维百分比。 (3)牵开器Coxae和Depressor Trochanteris中的慢纤维的百分比从前方到后腿显着增加。这些结果表明,昆虫腿部肌肉中的纤维型分布在腿部肌肉上并不相同,而是朝向运动系统中给定肌肉的特定功能。

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