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Cybex等速测力法中扭矩“过冲”的本质。

The nature of torque "overshoot" in Cybex isokinetic dynamometry.

作者信息

Sapega A A, Nicholas J A, Sokolow D, Saraniti A

出版信息

Med Sci Sports Exerc. 1982;14(5):368-75.

PMID:7154892
Abstract

Transient peaks or "spikes" frequently appear in the initial segments of torque curves recorded with the Cybex isokinetic dynamometer. The purpose of this investigation was to determine whether these spikes represent artifact or transient initial surges of true muscular force output. Cinematographic analysis using both inert weights and a human subject as the source of torque input to the Cybex revealed that the dynamometer's input lever initially exceeded the pre-set angular velocity by an amount ranging from 11% (inert weight; pre-set Cybex velocity = 180 degrees/s) to 200% (human hip abduction; pre-set velocity = 30 degrees/s). The majority of this "overspeeding" occurred in the latter part of the free acceleration period, prior to the engagement of the dynamometer's resistance mechanism. The remainder occurred in the initial part of the elastic loading phase, just after resistance had engaged. A sharp deceleration of the overspeeding lever and the affixed weight or limb then followed in response to the dynamometer's continuing build-up of resistance. Simultaneous with this deceleration, a prominent torque spike was recorded that superseded the correct (mechanical equilibrium) torque value. Within our error of measurement, the deceleration observed in the film quantitatively accounted for all of the "overshoot" torque, i.e., that amount of the spike that exceeded the correct value. It was concluded that such prominent, initial torque spikes represent inertial forces and should not be confused with true muscular tension development.

摘要

使用Cybex等速测力计记录的扭矩曲线初始段经常会出现短暂峰值或“尖峰”。本研究的目的是确定这些尖峰是代表伪迹还是真正肌肉力量输出的短暂初始激增。使用惰性重物和人体受试者作为Cybex扭矩输入源的电影分析表明,测力计的输入杠杆最初超过预设角速度的幅度在11%(惰性重物;预设Cybex速度 = 180度/秒)至200%(人体髋关节外展;预设速度 = 30度/秒)之间。这种“超速”的大部分发生在自由加速期的后期,在测力计的阻力机制启动之前。其余部分发生在弹性加载阶段的初始部分,就在阻力启动之后。随后,随着测力计阻力的持续增加,超速杠杆以及固定的重物或肢体急剧减速。与这种减速同时,记录到一个突出的扭矩尖峰,它超过了正确的(机械平衡)扭矩值。在我们的测量误差范围内,在影片中观察到的减速在数量上解释了所有的“过冲”扭矩,即尖峰超过正确值的部分。得出的结论是,这种突出的初始扭矩尖峰代表惯性力,不应与真正的肌肉张力发展相混淆。

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