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Vestibular implants: Hope for improving the quality of life of patients with bilateral vestibular loss

机译:前庭植入物:希望改善双侧前庭损失患者的生活质量

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The vestibular system plays an essential role in crucial tasks such as postural control, gaze stabilization, and spatial orientation. Currently, there is no effective treatment for a bilateral loss of the vestibular function (BVL). The quality of life of affected patients is significantly impaired. During the last decade, our group has explored the potential of using electrical stimulation to artificially restore the vestibular function. Our vestibular implant prototype consists of a custom modified cochlear implant featuring one to three vestibular electrodes implanted in the proximity of the ampullary branches of the vestibular nerve; in addition to the main cochlear array. Special surgical techniques for safe implantation of these devices have been developed. In addition, we have developed stimulation strategies to generate bidirectional eye movements as well as the necessary interfaces to capture the signal from a motion sensor (e.g., gyroscope) and use it to modulate the stimulation signals delivered to the vestibular nerves. To date, 24 vestibular electrodes have been implanted in 11 BVL patients. Using a virtual motion profile to modulate the “baseline” electrical stimulation, vestibular responses could be evoked with 21 electrodes. Eye movements with mean peak eye velocities of 32°/s and predominantly in the plane of the stimulated canal were successfully generated. These are within the range of normal compensatory eye movements during walking and were large enough to have a significant effect on the patients' visual acuity. These results indicate that electrical stimulation of the vestibular nerve has a significant functional impact; eye movements generated this way could be sufficient to restore gaze stabilization during essential everyday tasks such as walking. The innovative concept of the vestibular implant has the potential to restore the vestibular function and have a central role in improving the quality of life of BVL patients- in the near future.
机译:前庭系统在关键任务中起着重要作用,如姿势控制,凝视稳定和空间取向。目前,没有有效治疗前庭功能(BVL)的双侧丧失。受影响患者的生活质量显着受损。在过去十年中,我们的团队探讨了使用电气刺激的潜力,以人为地恢复前庭功能。我们的前庭植入物原型由定制修改的耳蜗植入物组成,具有一到三个前庭电极,植入前庭神经的蜂鸣脉分支的附近;除了主耳蜗阵列之外。已经开发出用于安全植入这些装置的特殊手术技术。此外,我们已经开发了刺激策略,以产生双向眼睛运动以及从运动传感器(例如,陀螺)捕获信号的必要界面,并使用它来调节递送到前庭神经的刺激信号。迄今为止,在11名BVL患者中植入了24个前庭电极。使用虚拟运动配置文件来调制“基线”电刺激,可以用21个电极唤起前庭响应。成功地产生了具有平均峰眼速度的眼睛运动,32°/ s,主要在受刺激的运河的平面中成功。这些是在步行期间正常补偿性眼球运动的范围内,足以对患者的视力产生显着影响。这些结果表明前庭神经的电刺激具有显着的功能影响;产生这种方式的眼睛运动可以足以在必不可少的日常任务期间恢复凝视稳定。前庭植入物的创新概念有可能恢复前庭功能,并在不久的将来提高BVL患者的生活质量方面具有核心作用。

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