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等张收缩过程中贻贝平滑肌负载承受能力和串联弹性的变化。

The change in the load-sustaining ability and in the series elasticity in Mytilus smooth muscle during isotonic shortening.

作者信息

Sugi H, Tsuchiya T

出版信息

J Physiol. 1979 Mar;288:635-48.

PMID:469733
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1281448/
Abstract
  1. The change in the ability to sustain a load and the change in the series elasticity in the anterior byssal retractor muscle (a.b.r.m.) of Mytilus edulis during isotonic shortening was studied by recording the length changes following step changes in load. 2. When a load of 0.7--0.9 P0 WAs applied after a period of isotonic shortening under a small load (0.05--0.1 P0), the muscle fibres showed continuous isotonic lengthening, indicating a reduction in the ability to sustain a load during isotonic shortening. 3. Following the application of a load of 0.3--0.6 P0 during isotonic shortening under a small load, the fibres exhibited a transient isotonic lengthening before starting to shorten isotonically, indicating some degree of restoration in the load-sustaining ability after the step increase in load. 4. No appreciable reduction in the load-sustaining ability was observed during isotonic shortening under a large load (more than 0.7 P0). 5. The load--extension curves of the series elasticity determined during isotonic shortening were found to be scaled down roughly in proportion to the isotonic load. 6. The stiffness of the muscle fibres during the isotonic shortening approached a certain finite value, when the isotonic load tended to zero. If the stiffness was measured during the development of isometric tension, the stiffness--isometric tension curve extrapolated towards the origin. 7. High-speed cinematography during the step change in load indicated a fairly uniform distribution of the series elasticity along the length of the preparation. 8. These results are discussed in relation to the sliding filament model of muscle contraction.
摘要
  1. 通过记录负荷阶跃变化后的长度变化,研究了紫贻贝前足丝牵缩肌(a.b.r.m.)在等张收缩过程中维持负荷能力的变化以及串联弹性的变化。2. 在小负荷(0.05 - 0.1P0)下等张收缩一段时间后施加0.7 - 0.9P0的负荷时,肌纤维呈现持续的等张伸长,表明在等张收缩过程中维持负荷的能力下降。3. 在小负荷下等张收缩过程中施加0.3 - 0.6P0的负荷后,纤维在开始等张收缩前出现短暂的等张伸长,表明负荷阶跃增加后维持负荷的能力有一定程度的恢复。4. 在大负荷(超过0.7P0)下等张收缩过程中,未观察到维持负荷能力有明显下降。5. 发现在等张收缩过程中测定的串联弹性的负荷 - 伸长曲线大致按等张负荷的比例缩小。6. 当等张负荷趋于零时,等张收缩过程中肌纤维的刚度接近某个有限值。如果在等长张力发展过程中测量刚度,刚度 - 等长张力曲线向原点外推。7. 负荷阶跃变化期间的高速摄影表明串联弹性沿标本长度分布相当均匀。8. 结合肌肉收缩的滑行细丝模型对这些结果进行了讨论。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/30ed/1281448/808c0b956c1d/jphysiol00752-0650-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/30ed/1281448/808c0b956c1d/jphysiol00752-0650-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/30ed/1281448/808c0b956c1d/jphysiol00752-0650-a.jpg

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