首页> 外文期刊>The Journal of Experimental Biology >FUNCTIONS OF FISH SKIN - FLEXURAL STIFFNESS AND STEADY SWIMMING OF LONGNOSE GAR LEPISOSTEUS OSSEUS
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FUNCTIONS OF FISH SKIN - FLEXURAL STIFFNESS AND STEADY SWIMMING OF LONGNOSE GAR LEPISOSTEUS OSSEUS

机译:鱼皮的功能-弯曲刚度和菱角LE鱼的稳态游动。

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摘要

The functions of fish skin during swimming remain enigmatic, Does skin stiffen the body and alter the propagation of the axial undulatory wave? To address this question, we measured the skin's in situ flexural stiffness and in vivo mechanical role in the longnose gar Lepisosteus osseus, To measure flexural stiffness, dead gar were gripped and bent in a device that measured applied bending moment (N m) and the resulting midline curvature (m(-1)), From these values, the flexural stiffness of the body (EI in Nm(2)) was calculated before and after sequential alterations of skin structure, Cutting of the dermis between two caudal scale rows significantly reduced the flexural stiffness of the body and increased the neutral zone of curvature, a region of bending without detectable stiffness, Neither bending property was significantly altered by the removal of a caudal scale row, These alterations in skin structure were also made in live gar and the kinematics of steady swimming was measured before and after each treatment, Cutting of the dermis between two caudal scale rows, performed under anesthesia, changed the swimming kinematics of the fish: tailbeat frequency (Hz) and propulsive wave speed (body lengths per second, L s(-1)) decreased, while the depth (in L) of the trailing edge of the tail increased. The decreases in tailbeat frequency and wave speed are consistent with predictions of the theory of forced, harmonic vibrations; wave speed, if equated with resonance frequency, is proportional to the square root of a structure's stiffness, While it did not significantly reduce the body's flexural stiffness, surgical removal of a caudal scale row resulted in increased tailbeat amplitude and the relative total hydrodynamic power, In an attempt to understand the specific function of the scale row, we propose a model in which a scale row resists medio-lateral force applied by a single myomere, thus functioning to enhance mechanical advantage for bending, Finally, surgical removal of a precaudal scale row did not significantly alter any of the kinematic variables, This lack of effect is associated with a lower midline curvature of the precaudal region during swimming compared with that of the caudal region, Overall, these results demonstrate a causal relationship between skin, the passive flexural stiffness it imparts to the body and the influence of body stiffness on the undulatory wave speed and cycle frequency at which gar choose to swim. [References: 46]
机译:鱼皮在游泳过程中的功能仍然难以捉摸,皮肤是否会使身体变硬并改变轴向波动波的传播?为了解决这个问题,我们测量了长鼻鱼Lepisosteus osseus中皮肤的原位挠曲刚度和体内机械作用。为测量挠曲刚度,将死dead抓紧并弯曲在一个装置中,该装置测量施加的弯矩(N m)和由此产生的中线曲率(m(-1)),根据这些值,在依次改变皮肤结构之前和之后计算出身体的弯曲刚度(EI在Nm(2)中),显着地切割了两个尾鳞行之间的真皮降低了身体的弯曲刚度并增加了中性曲率区,弯曲区域没有可检测到的刚度,移除了尾鳞行都没有显着改变弯曲特性。在每次治疗之前和之后测量稳定游泳的运动学,在麻醉下进行的两个尾鳞行之间的真皮切割,改变了游泳运动学鱼的尾巴频率(Hz)和推进波速度(每秒的体长,L s(-1))减小,而尾巴后缘的深度(L)增加。尾音频率和波速的降低与强制谐波振动理论的预测是一致的。如果将波速与共振频率等价,则它与结构刚度的平方根成比例。虽然它并没有显着降低人体的挠曲刚度,但通过外科手术切除尾标尺行会导致尾音幅度增加和相对总流体动力,为了理解刻度尺的具体功能,我们提出了一种模型,其中刻度尺抵抗单个单体的中外侧力,从而起到增强弯曲机械性能的作用。行没有明显改变任何运动学变量,这种影响的缺乏与游泳时尾前区的中线曲率相比尾区低有关。总的来说,这些结果表明皮肤,被动弯曲之间存在因果关系它赋予身体的刚度以及身体刚度对波状波速度和周期频率的影响哪只雀gar选择游泳。 [参考:46]

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