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耳石 - 加速度计和地震仪;在前庭诱发肌源性电位(VEMP)中的意义。

Otoliths - Accelerometer and seismometer; Implications in Vestibular Evoked Myogenic Potential (VEMP).

作者信息

Grant Wally, Curthoys Ian

机构信息

Department of Biomedical Engineering and Mechanics, VA Tech, Blacksburg, VA 24061, USA.

School of Psychology, University of Sydney, Sydney, NSW 2006, Australia.

出版信息

Hear Res. 2017 Sep;353:26-35. doi: 10.1016/j.heares.2017.07.012. Epub 2017 Jul 27.

Abstract

Vestibular otolithic organs are recognized as transducers of head acceleration and they function as such up to their corner frequency or undamped natural frequency. It is well recognized that these organs respond to frequencies above their corner frequency up to the 2-3 kHz range (Curthoys et al., 2016). A mechanics model for the transduction of these organs is developed that predicts the response below the undamped natural frequency as an accelerometer and above that frequency as a seismometer. The model is converted to a transfer function using hair cell bundle deflection. Measured threshold acceleration stimuli are used along with threshold deflections for threshold transfer function values. These are compared to model predicted values, both below and above their undamped natural frequency. Threshold deflection values are adjusted to match the model transfer function. The resulting threshold deflection values were well within in measure threshold bundle deflection ranges. Vestibular Evoked Myogenic Potentials (VEMPs) today routinely uses stimulus frequencies of 500 and 1000 Hz, and otoliths have been established incontrovertibly by clinical and neural evidence as the stimulus source. The mechanism for stimulus at these frequencies above the undamped natural frequency of otoliths is presented where otoliths are utilizing a seismometer mode of response for VEMP transduction.

摘要

前庭耳石器官被认为是头部加速度的传感器,它们在其转角频率或无阻尼固有频率以下发挥这样的功能。人们已经充分认识到,这些器官对高于其转角频率直至2 - 3千赫兹范围的频率有反应(柯索伊斯等人,2016年)。开发了一种用于这些器官转导的力学模型,该模型预测在无阻尼固有频率以下的响应为加速度计,在该频率以上的响应为地震仪。该模型使用毛细胞束偏转转换为传递函数。测量的阈值加速度刺激与阈值传递函数值的阈值偏转一起使用。将这些值与模型预测值在其无阻尼固有频率以下和以上进行比较。调整阈值偏转值以匹配模型传递函数。得到的阈值偏转值完全在测量的阈值束偏转范围内。如今,前庭诱发肌源性电位(VEMPs)通常使用500和1000赫兹的刺激频率,并且耳石已通过临床和神经学证据无可争议地被确定为刺激源。本文介绍了在高于耳石无阻尼固有频率的这些频率下的刺激机制,即耳石在VEMP转导中利用地震仪响应模式。

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