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青蛙肌肉纤维在负荷快速变化后的等张速度瞬变。

Isotonic velocity transients in frog muscle fibres following quick changes in load.

作者信息

Sugi H, Tsuchiya T

出版信息

J Physiol. 1981;319:219-38. doi: 10.1113/jphysiol.1981.sp013903.

Abstract
  1. The isotonic velocity transients following quick changes in load were studied on tetanized frog skeletal muscle fibres with special reference to those following quick increases in load. 2. When the load was increased quickly from the maximum isometric force P0 to 1.05-1.3 P0, the fibres exhibited markedly oscillatory length changes with distinct reversal in the direction of movement before starting to lengthen with a nearly constant velocity. 3. The period of the oscillatory length changes increased with increasing magnitude of the load step, and decreased with increasing temperature. The amplitude of oscillatory length changes never exceeded 0.5% of the slack length L0, i.e. about 50 A per half-sarcomere. 4. If the load was increased quickly from P0 to 1.3-1.6 P0, the fibres lengthened continuously with velocities decreasing with time. 5. The response of fibres, shortening isotonically under a large load (about 0.8 P0), to quick increases in load was qualitatively similar to that of isometrically contracting fibres. 6. When quick increases in load were applied during isotonic shortening under a moderate or small load (0.1-0.6 P0), the fibres showed initial transient lengthening before starting to shorten against a new load, indicating a decrease in the ability of the fibres to sustain a load after a period of isotonic shortening and its restoration during the transient lengthening. 7. The extent of decrease in load-sustaining ability as well as its subsequent restoration process was dependent on both the amount of load and the duration of preceding isotonic shortening. 8. The decrease in the load-sustaining ability during the course of isotonic shortening appeared to be complete within 30-50 msec after the beginning of shortening. 9. These results are discussed in relation to the kinetic properties of the crossbridges responsible for muscle contraction.
摘要
  1. 研究了强直刺激下青蛙骨骼肌纤维在负荷快速变化后的等张速度瞬变情况,特别关注负荷快速增加后的情况。2. 当负荷从最大等长力P0快速增加到1.05 - 1.3P0时,纤维表现出明显的振荡长度变化,在开始以近乎恒定的速度伸长之前,运动方向有明显的反转。3. 振荡长度变化的周期随负荷阶跃幅度的增加而增加,随温度的升高而减小。振荡长度变化的幅度从未超过松弛长度L0的0.5%,即每个半肌节约50埃。4. 如果负荷从P0快速增加到1.3 - 1.6P0,纤维会持续伸长,速度随时间降低。5. 在大负荷(约0.8P0)下等张收缩的纤维对负荷快速增加的反应,在质量上与等长收缩纤维相似。6. 当在中等或小负荷(0.1 - 0.6P0)下等张缩短过程中快速增加负荷时,纤维在开始对抗新负荷缩短之前会先出现初始的短暂伸长,这表明纤维在等张缩短一段时间后维持负荷的能力下降,并在短暂伸长过程中恢复。7. 负荷维持能力下降的程度及其随后的恢复过程既取决于负荷量,也取决于先前等张缩短的持续时间。8. 等张缩短过程中负荷维持能力的下降似乎在缩短开始后30 - 50毫秒内完成。9. 结合负责肌肉收缩的横桥的动力学特性对这些结果进行了讨论。

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