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将游泳鱼类中线的曲率作为肌肉应变指标表明,游泳肌肉产生净正功。

Curvature of Swimming Fish Midlines as an Index of Muscle Strain Suggests Swimming Muscle Produces Net Positive Work.

作者信息

Katz SL, Shadwick RE

机构信息

Centre for Marine Biotechnology and Biomedicine and Marine Biology Research Division, Scripps Institute of Oceanography, La Jolla, CA 92093-0204, U.S.A.

出版信息

J Theor Biol. 1998 Jul 21;193(2):243-256. doi: 10.1006/jtbi.1998.0696.

Abstract

The axial muscle used in steady swimming by fish is geometrically complex and this has required the study of in vivo muscle swimming mechanics to be done with largely inferential techniques. Currently there is some debate concerning the variation in muscle function in different regions of the body, and the importance of negative work production by muscles in posterior locations. We have used video taped kinematics of steady swimming in mackerel and then analysed the lateral flexion of the body that is thought to reflect the cycle of length change in the axial muscles. A comparison of several of the techniques used in the past to estimate muscle length changes are shown not to be equivalent. Specifically, we find that peak values of lateral deflection of the body are not correlated in time or axial position with peaks in curvature of the body midline. This is important because the timing of the muscle strain cycle is often inferred from such information. Having documented this observation in a swimming mackerel, we use analytical geometry to show that this result is a consequence of the curves that describe swimming fish midlines. Since this observation is shown to be the geometric consequence of an amplitude envelope that is not constant, it should therefore apply to other animals that propel themselves with axial undulations of increasing amplitude. Our minor result is that care must be taken when estimating the phase of swimming muscle strain from kinematics. Our major results is that appreciation of the geometric character of the kinematics these fish adopt may resolve much of the current debate concerning the mechanical performance of swimming muscle in fish. Specifically, using our estimate of the phase of muscle shortening and data on EMG timing in the mackerel we conclude that all axial muscles are activated before peak length and in a manner that should produce net positive work within each shortening cycle.Copyright 1998 Academic Press

摘要

鱼类在稳定游泳时所使用的轴肌在几何结构上很复杂,这使得对活体肌肉游泳力学的研究很大程度上需要借助推理技术来完成。目前,关于身体不同部位肌肉功能的变化以及后部肌肉产生负功的重要性存在一些争议。我们拍摄了鲭鱼稳定游泳的运动学视频,然后分析了身体的侧屈情况,认为这反映了轴肌长度变化的周期。结果表明,过去用于估计肌肉长度变化的几种技术并不等效。具体而言,我们发现身体侧偏的峰值在时间或轴向位置上与身体中线曲率的峰值并不相关。这一点很重要,因为肌肉应变周期的时间往往是根据此类信息推断出来的。在一条游泳的鲭鱼身上记录下这一观察结果后,我们用解析几何证明了这一结果是描述游泳鱼类中线的曲线所导致的。由于这一观察结果表明是振幅包络不恒定的几何结果,所以它应该适用于其他通过幅度不断增加的轴向波动来推进自身的动物。我们的次要结果是,从运动学角度估计游泳肌肉应变的相位时必须谨慎。我们的主要结果是,认识到这些鱼类所采用的运动学的几何特征,可能会解决目前关于鱼类游泳肌肉机械性能的许多争议。具体来说,利用我们对肌肉缩短相位的估计以及鲭鱼肌电图时间的数据,我们得出结论,所有轴肌在长度峰值之前被激活,且激活方式应在每个缩短周期内产生净正功。版权所有1998年学术出版社

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