首页> 美国卫生研究院文献>The Journal of Neuroscience >Effects of Electrical Stimulation in the Inferior Colliculus on Frequency Discrimination by Rhesus Monkeys and Implications for the Auditory Midbrain Implant
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Effects of Electrical Stimulation in the Inferior Colliculus on Frequency Discrimination by Rhesus Monkeys and Implications for the Auditory Midbrain Implant

机译:下腔囊电刺激对恒河猴频率分辨的影响及其对听觉中脑植入物的影响

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摘要

Understanding the relationship between the auditory selectivity of neurons and their contribution to perception is critical to the design of effective auditory brain prosthetics. These prosthetics seek to mimic natural activity patterns to achieve desired perceptual outcomes. We measured the contribution of inferior colliculus (IC) sites to perception using combined recording and electrical stimulation. Monkeys performed a frequency-based discrimination task, reporting whether a probe sound was higher or lower in frequency than a reference sound. Stimulation pulses were paired with the probe sound on 50% of trials (0.5–80 μA, 100–300 Hz, n = 172 IC locations in 3 rhesus monkeys). Electrical stimulation tended to bias the animals' judgments in a fashion that was coarsely but significantly correlated with the best frequency of the stimulation site compared with the reference frequency used in the task. Although there was considerable variability in the effects of stimulation (including impairments in performance and shifts in performance away from the direction predicted based on the site's response properties), the results indicate that stimulation of the IC can evoke percepts correlated with the frequency-tuning properties of the IC. Consistent with the implications of recent human studies, the main avenue for improvement for the auditory midbrain implant suggested by our findings is to increase the number and spatial extent of electrodes, to increase the size of the region that can be electrically activated, and to provide a greater range of evoked percepts.>SIGNIFICANCE STATEMENT Patients with hearing loss stemming from causes that interrupt the auditory pathway after the cochlea need a brain prosthetic to restore hearing. Recently, prosthetic stimulation in the human inferior colliculus (IC) was evaluated in a clinical trial. Thus far, speech understanding was limited for the subjects and this limitation is thought to be partly due to challenges in harnessing the sound frequency representation in the IC. Here, we tested the effects of IC stimulation in monkeys trained to report the sound frequencies they heard. Our results indicate that the IC can be used to introduce a range of frequency percepts and suggest that placement of a greater number of electrode contacts may improve the effectiveness of such implants.
机译:理解神经元的听觉选择性及其对感知的贡献之间的关系对于有效的听觉大脑假体的设计至关重要。这些假肢试图模仿自然活动模式以实现所需的知觉结果。我们结合记录和电刺激测量了下丘脑(IC)对感知的贡献。猴子执行了基于频率的区分任务,报告探测声音的频率是高于还是低于参考声音。在50%的试验中(在3只恒河猴中,0.5–80μA,100–300 Hz,n = 172个IC位置)将刺激脉冲与探头声音配对。电刺激倾向于以一种粗略的方式偏向动物的判断,但与任务中使用的参考频率相比,其与刺激部位的最佳频率显着相关。尽管刺激效果存在很大差异(包括性能下降和性能偏离基于站点响应特性预测的方向),但结果表明,IC的刺激可以唤起与频率调谐特性相关的感知IC的。与最近的人类研究的意义一致,我们的发现表明,改善听觉中脑植入物的主要途径是增加电极的数量和空间范围,增加可以电激活的区域的大小并提供>意义声明听力损失的患者源于在耳蜗后中断听觉通路的原因,需要使用大脑修复术来恢复听力。最近,在一项临床试验中评估了人类下丘(IC)的修复刺激。到目前为止,语音理解对于受试者是有限的,并且该限制被认为部分地是由于利用IC中的声频表示的挑战。在这里,我们测试了IC刺激对训练后报告其听到的声音频率的猴子的影响。我们的结果表明,该IC可用于引入一定范围的频率感知,并建议放置更多数量的电极触点可以提高此类植入物的有效性。

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