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Optimization of the Mechanical Performance of a Two-duct Semicircular Duct System-Part 1: Dynamics and Duct Dimensions.

机译:两管半圆风管系统机械性能的优化-第1部分:动力学和风管尺寸。

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摘要

The classical representation of the semicircular duct system consists of three separate duct circuits. The ducts are, however, in reality, hydrodynamically interconnected. Muller & Verhagen (1988a,b) derived equations for the mechanical behaviour of an interconnected system with three ducts (anterior, posterior and horizontal). An analytical solution of these equations would, however, be too complex to provide surveyable formulae. A system of two interconnected ducts avoids this complexity whilst keeping the essentials of the coupling of ducts intact. The solution of the equation of motion leads to expressions for time constants and maximal endolymph excursions which are functions of morphological parameters, viz. the ratios of radii (gamma) and lengths (lambda) of the common vestibular part (crus commune or utriculus) and the ducts. The system possesses two short time constants which are shown to have similar values. The maximum endolymph displacements in the two ducts after a steplike stimulus are the products of the respective initial velocities and combinations of time constants. The initial velocities depend strongly on the position of the labyrinth with respect to the excitating rotation vector. Measured data of gamma and lambda are compared with the theoretical results. For gamma, excellent agreement was found. lambda is treated elsewhere.
机译:半圆形管道系统的经典表示由三个独立的管道回路组成。但是,实际上这些管道是流体动力互连的。 Muller&Verhagen(1988a,b)推导了具有三个管道(前,后和水平)的互连系统的力学行为方程。但是,这些方程的解析解太复杂而无法提供可测量的公式。两个相互连接的管道系统避免了这种复杂性,同时保持了管道连接的本质。运动方程的解导致了时间常数和最大内淋巴偏移的表达式,它们是形态参数的函数,即。共同前庭部分(十字形公社或肱骨)和导管的半径(γ)与长度(λ)之比。该系统具有两个短时间常数,显示为相似的值。阶梯状刺激后,两个导管中最大的内淋巴位移是各自初始速度和时间常数组合的乘积。初始速度在很大程度上取决于迷宫相对于激励旋转矢量的位置。将γ和λ的测量数据与理论结果进行比较。对于伽玛,发现极好的一致性。 lambda在其他地方已得到处理。

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