首页> 美国卫生研究院文献>JARO: Journal of the Association for Research in Otolaryngology >Vestibulo-Ocular Reflex Responses to a Multichannel Vestibular Prosthesis Incorporating a 3D Coordinate Transformation for Correction of Misalignment
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Vestibulo-Ocular Reflex Responses to a Multichannel Vestibular Prosthesis Incorporating a 3D Coordinate Transformation for Correction of Misalignment

机译:对多通道前庭假体合并3D坐标转换以纠正错位的前庭眼反射反应。

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摘要

There is no effective treatment available for individuals unable to compensate for bilateral profound loss of vestibular sensation, which causes chronic disequilibrium and blurs vision by disrupting vestibulo-ocular reflexes that normally stabilize the eyes during head movement. Previous work suggests that a multichannel vestibular prosthesis can emulate normal semicircular canals by electrically stimulating vestibular nerve branches to encode head movements detected by mutually orthogonal gyroscopes affixed to the skull. Until now, that approach has been limited by current spread resulting in distortion of the vestibular nerve activation pattern and consequent inability to accurately encode head movements throughout the full 3-dimensional (3D) range normally transduced by the labyrinths. We report that the electrically evoked 3D angular vestibulo-ocular reflex exhibits vector superposition and linearity to a sufficient degree that a multichannel vestibular prosthesis incorporating a precompensatory 3D coordinate transformation to correct misalignment can accurately emulate semicircular canals for head rotations throughout the range of 3D axes normally transduced by a healthy labyrinth.
机译:对于无法补偿双侧前庭感觉双侧严重丧失的患者,没有有效的治疗方法,这会导致慢性不平衡,并通过破坏通常在头部运动过程中稳定眼睛的前庭眼反射而导致视力模糊。先前的工作表明,多通道前庭假体可以通过电刺激前庭神经分支来模拟正常的半规管,以编码由固定在头骨上的相互正交的陀螺仪检测到的头部运动。直到现在,这种方法还受到电流扩散的限制,电流扩散导致前庭神经激活模式失真,因此无法准确编码迷宫通常在整个3维(3D)范围内的头部运动。我们报告说,电诱发的3D角前庭眼反射表现出足够的矢量叠加和线性,以致多通道前庭假体结合预补偿3D坐标转换以校正未对准可正常模拟半圆管,以正常地在整个3D轴范围内旋转头部由健康的迷宫转导。

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