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横纹肌中的肌节长度控制

Sarcomere length control in striated muscle.

作者信息

van Heuningen R, Rijnsburger W H, ter Keurs H E

出版信息

Am J Physiol. 1982 Mar;242(3):H411-20. doi: 10.1152/ajpheart.1982.242.3.H411.

Abstract

A system that makes control of muscle length (ML), sarcomere length (SL), and force (F) possible in striated muscle preparations is described. SL was measured by light diffraction techniques and two diffractometers. Control was performed by influencing ML with a penmotor system with a frequency response of 190 Hz. SL or F could be controlled by interrupting the internal position (i.e., ML) feedback of the motor and by closing the respective loop. Velocity feedback of the motor through an internal velocity coil was maintained in all cases for optimal damping. Steady-state error of the system was minimized by an integrating loop filter. The feedback path was selected by means of potentiometers or analog switches. Electronic stops in the circuit protected the muscle against excessive stretch and load. A microprocessor-based average-response computer could be used for feedforward control to eliminate noise or to analyze longitudinal uniformity of the muscle. Responses of rat cardiac trabeculae during SL and F control are shown. Transient behavior of SL and F during control and measures to eliminate the transients are discussed.

摘要

本文描述了一种能够控制横纹肌标本中肌肉长度(ML)、肌节长度(SL)和力(F)的系统。SL通过光衍射技术和两台衍射仪进行测量。通过一个频率响应为190Hz的笔式电机系统影响ML来实现控制。通过中断电机的内部位置(即ML)反馈并闭合相应回路,可以控制SL或F。在所有情况下,均通过内部速度线圈保持电机的速度反馈,以实现最佳阻尼。通过积分环路滤波器将系统的稳态误差降至最低。反馈路径通过电位器或模拟开关进行选择。电路中的电子限位器可保护肌肉免受过度拉伸和负荷。基于微处理器的平均响应计算机可用于前馈控制,以消除噪声或分析肌肉的纵向均匀性。文中展示了大鼠心脏小梁在SL和F控制期间的反应。讨论了控制过程中SL和F的瞬态行为以及消除瞬态的措施。

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