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蟾鱼(Opsanus tau)前庭迷路的机械压痕及其与头部旋转的关系。

Mechanical indentation of the vestibular labyrinth and its relationship to head rotation in the toadfish, Opsanus tau.

作者信息

Rabbitt R D, Boyle R, Highstein S M

机构信息

Department of Bioengineering, University of Utah, Salt Lake City 84112, USA.

出版信息

J Neurophysiol. 1995 Jun;73(6):2237-60. doi: 10.1152/jn.1995.73.6.2237.

Abstract
  1. In the present study we examine the response of the semicircular canal of the toadfish (Opsanus tau) to head rotation and to mechanical indentation of the membranous labyrinth. The relationship between the two stimuli is described by a new elastohydrodynamic model that delineates the three-dimensional (3-D) spatiotemporal distribution of endolymph pressure and flow. In vivo electrophysiological recordings of primary afferents supplying the horizontal canal (HC) were employed to validate the model predictions. Data were collected from 213 afferents in 18 fish during independent head rotation. HC indentation, utricle (U) indentation, and paired stimuli. To quantify the afferent response and the relationship between the applied sinusoidal stimuli, the magnitude (gain) and temporal relationship (phase) of the first harmonic of modulation were calculated and compared with theoretical predictions. 2. A mathematical based extensively on the 3-D morphology of a toadfish labyrinth and the physical properties of endolymph is presented to describe the relationship between head rotation and mechanical indentation. All model parameters specifying labyrinthine morphology and physical properties of endolymph are known; the model contains no free parameters. New results are independent of the structural properties of the cupula. The analysis employs an asymptotic solution of the Navier-Stokes equations in the three toroidal ducts that includes the 3-D fluid-structure interaction taking place within the enlarged ampulla. The solution addresses the differential pressure (delta P) acting across the cupula and the dilatational pressure acting on both sides of the cupula. The analysis quantifies the hydrodynamics of the HC for mechanical indentations of the long and slender portion of the canal duct (HC indentation) and the U (U indentation). Results specifically relate the indentation stimuli to head rotation. Linear commutations of HC indentation, U indentation, and rotation stimuli are analyzed by matching delta P acting across the cupula for the three stimulus modalities. 3. HC afferents show a linear correspondence between HC indentation, U indentation, and rotation stimuli. Specific experimental results for sinusoidal stimuli at frequencies < 2 Hz show 1) +/- 1 micron-HC indentation commutates with +/- 4 degrees/s rotation, 2) + 1-micron HC indentation commutates with -/+ 15-microns U indentation, and 3) -/+ 15-microns U indentation commutates with +/- 4 degrees/s rotation. These results were obtained by adjusting the relative amplitude and phase of two stimuli presented simultaneously to achieve destructive interaction that minimizes the afferent modulation (balanced). Equivalent results were obtained using afferent responses to the stimuli applied independently.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 在本研究中,我们检测了蟾鱼(Opsanus tau)半规管对头部旋转以及膜迷路机械压痕的反应。一种新的弹性流体动力学模型描述了这两种刺激之间的关系,该模型描绘了内淋巴压力和流动的三维(3-D)时空分布。采用对供应水平半规管(HC)的初级传入神经进行的体内电生理记录来验证模型预测。在18条鱼独立进行头部旋转、HC压痕、椭圆囊(U)压痕及配对刺激期间,从213条传入神经收集了数据。为了量化传入反应以及所施加正弦刺激之间的关系,计算了调制的一次谐波的幅度(增益)和时间关系(相位),并与理论预测进行比较。2. 提出了一个基于蟾鱼迷路三维形态和内淋巴物理特性的数学模型,以描述头部旋转与机械压痕之间的关系。所有指定迷路形态和内淋巴物理特性的模型参数均已知;该模型不含自由参数。新结果与壶腹嵴的结构特性无关。该分析采用了三个环形管道中纳维 - 斯托克斯方程的渐近解,其中包括在扩大的壶腹内发生的三维流固相互作用。该解考虑了作用于壶腹嵴两侧的跨壶腹嵴压差(δP)和膨胀压力。该分析量化了在管道细长部分(HC压痕)和U(U压痕)进行机械压痕时HC的流体动力学。结果具体将压痕刺激与头部旋转联系起来。通过匹配三种刺激模式下作用于壶腹嵴的δP,分析了HC压痕、U压痕和旋转刺激的线性转换。3. HC传入神经在HC压痕、U压痕和旋转刺激之间呈现线性对应关系。频率<2 Hz的正弦刺激的具体实验结果表明:1)±1微米 - HC压痕与±4度/秒旋转等效,2) + 1微米HC压痕与±15微米U压痕等效,3)±15微米U压痕与±4度/秒旋转等效。这些结果是通过调整同时呈现的两种刺激的相对幅度和相位以实现相消干涉从而使传入调制最小化(平衡)而获得的。使用对独立施加刺激的传入反应也获得了等效结果。(摘要截于400字)

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