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A Multi-channel Semicircular Canal Neural Prosthesis Using Electrical Stimulation to Restore 3D Vestibular Sensation

机译:使用电刺激恢复3D前庭感觉的多通道半圆管神经假体

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摘要

Bilateral loss of vestibular sensation can be disabling. Those afflicted suffer illusory visual field movement during head movements, chronic disequilibrium and postural instability due to failure of vestibulo-ocular and vestibulo-spinal reflexes. A neural prosthesis that emulates the normal transduction of head rotation by semicircular canals could significantly improve quality of life for these patients. Like the 3 semicircular canals in a normal ear, such a device should at least transduce 3 orthogonal (or linearly separable) components of head rotation into activity on corresponding ampullary branches of the vestibular nerve. We describe the design, circuit performance and in vivo application of a head-mounted, semi-implantable multi-channel vestibular prosthesis that encodes head movement in 3 dimensions as pulse-frequency-modulated electrical stimulation of 3 or more ampullary nerves. In chinchillas treated with intratympanic gentamicin to ablate vestibular sensation bilaterally, prosthetic stimuli elicited a partly compensatory angular vestibulo-ocular reflex in multiple planes. Minimizing misalignment between the axis of eye and head rotation, apparently caused by current spread beyond each electrode’s targeted nerve branch, emerged as a key challenge. Increasing stimulation selectivity via improvements in electrode design, surgical technique and stimulus protocol will likely be required to restore AVOR function over the full range of normal behavior.
机译:双侧前庭感觉丧失可能是致残的。由于前庭眼和前庭-脊髓反射的失败,那些患病的人在头部运动期间遭受虚幻的视野运动,慢性失衡和姿势不稳。模拟半圆管正常旋转头部旋转的神经假体可以显着改善这些患者的生活质量。像正常耳朵中的3条半圆形管一样,这种设备至少应将3个正交的(或线性可分离的)头部旋转分量转换为相应的前庭神经壶腹分支的活动。我们描述了一种头戴式,半植入式多通道前庭假体的设计,电路性能和体内应用,该假体将头部运动编码为3个维度或3个或更多壶腹神经的脉冲频率调制电刺激。在用鼓膜内庆大霉素治疗双侧前庭感觉的龙猫中,假体刺激在多个平面上引起部分补偿性角膜前庭-眼反射。将眼轴与头部旋转之间的不对准最小化(这显然是由于电流散布在每个电极的目标神经分支之外)引起的,这已成为一个关键挑战。可能需要通过改进电极设计,手术技术和刺激方案来增加刺激选择性,以在整个正常行为范围内恢复AVOR功能。

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