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首页> 外文期刊>Hearing Research: An International Journal >Magnitude and phase of three-dimensional (3D) velocity vector: Application to measurement of cochlear promontory motion during bone conduction sound transmission
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Magnitude and phase of three-dimensional (3D) velocity vector: Application to measurement of cochlear promontory motion during bone conduction sound transmission

机译:三维(3D)速度向量的幅度和相位:在骨传导中测量耳蜗海岬运动的应用

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摘要

Recent measurements of vibrational motion to assess sound transmission through ear structures and skull contents have included three-dimensional (3D) behavior. The 3D motion of a point has been described with the three orthogonal components in the 3D space. In this article, a method to represent the 3D velocity with the magnitude and phase of the resultant velocity is introduced. This method was applied to the measurement of cochlear promontory motion as an indication of bone conduction (BC) sound transmission. The promontory motions were measured on the ipsilateral and contralateral sides, and the transcranial attenuation and phase delay of the contralateral side relative to the ipsilateral side were calculated. The transcranial attenuation and phase delay calculated with the maximum magnitudes and corresponding phases of the resultant were a better fit to the interaural threshold difference and transcranial time interval between the ipsilateral and contralateral sides as reported in the literature, than the attenuation and phase delay calculated with any individual Cartesian motion component. (C) 2018 Elsevier B.V. All rights reserved.
机译:最近通过耳机和颅骨内容评估声音传输的振动运动的测量已经包括三维(3D)行为。已经用3D空间中的三个正交组件描述了点的3D运动。在本文中,引入了表示具有所得速度的幅度和相位的3D速度的方法。将该方法应用于耳蜗海岬型运动的测量,作为骨传导(BC)声音传输的指示。计算普通动作在同侧和对侧侧测量,并且计算了对侧相对于同侧侧的颅骨衰减和相延迟。用最大幅度和所得相应的相应阶段计算的经颅衰减和相位延迟是在文献中报道的同侧和对侧侧之间的腔室阈值差和经颅间隔的较好,而不是用的衰减和相位延迟任何单独的笛卡尔运动组件。 (c)2018 Elsevier B.v.保留所有权利。

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