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首页> 外文期刊>Academic Journal of Xi'an Jiaotong University >THE MORPHOLOGICAL CHANGES IN MUSCLE SPINDLES AND ALTERATIONS IN CELL ACTIVITY OF THE RATS' RED NUCLEUS AFTER 2 WEEKS' SIMULATED WEIGHTLESSNESS
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THE MORPHOLOGICAL CHANGES IN MUSCLE SPINDLES AND ALTERATIONS IN CELL ACTIVITY OF THE RATS' RED NUCLEUS AFTER 2 WEEKS' SIMULATED WEIGHTLESSNESS

机译:模拟2周失重后大鼠红核的肌肉形态变化和细胞活力的改变

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摘要

Objective To study the morphological changes of soleus muscle spindle and electrical activity of neurons in Red Nucleus(RN) of the rat after 2 weeks' simulated weightlessness, and to reveal the interaction between proprioceptive inputs of muscle spindles and reciprocal alterations in RN under simulated weightlessness. Methods Twenty female rats were exposed to weightlessness simulated by tail-suspension for 14 days (SW-14d). Body weight(200-220 g) matched female rats were control group(Con). The morphological changes in isolated muscle spindle of soleus muscle, the discharges of red nucleus neurons were observed after 14d tail-suspensions by silver staining and extracellular recording respectively. Results Compared with control group , the nerve ending of muscle spindle in SW-14d was distorted, degenerated and dissolved; the diameters of intrafusal fibers and capsule in equatorial region of soleus muscle spindles were diminished(P < 0.05). The spontaneous cell activity and discharge of RN neurons (spikes/s) induced by afferent firing from muscle spindles after injection of succinylcholine were reduced after 2 weeks' simulated weightlessness respectively (18.44 ± 5.96 νs. 10.19 ± 6.88, 32.50 ± 8.08 νs. 16.86 ± 5.97, P < 0.01). Conclusion The degeneration of muscle spindle induced by simulated weightlessness may be one of the causes that led to alterations in discharges of RN.
机译:目的研究模拟失重2周后大鼠比目鱼肌梭的形态变化和红色核(RN)神经元的电活动,并揭示模拟失重条件下肌肉纺锤体的本体感受输入与RN相互反应的相互作用。 。方法20只雌性大鼠通过尾部悬吊模拟失重14天(SW-14d)。体重(200-220 g)的雌性大鼠为对照组(Con)。通过银染和细胞外记录分别观察了比目鱼肌离体的肌肉纺锤体的形态学变化,尾部悬吊14d后的红核神经元放电。结果与对照组相比,SW-14d的肌梭神经末梢畸变,退化,溶解。比目鱼肌梭赤道区的融合肌纤维和囊直径减小(P <0.05)。注射琥珀酰胆碱后从肌肉纺锤传入传入神经引起的自发细胞活性和RN神经元放电(峰值/秒)在模拟失重2周后分别降低(18.44±5.96νs。10.19±6.88,32.50±8.08νs。16.86 ±5.97,P <0.01)。结论模拟失重引起的肌梭变性可能是导致RN放电改变的原因之一。

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