申请认证 退出

您的申请提交成功

确定 取消

Nature—人工耳蜗研究重磅突破:刺激蓝斑核可增强人工耳蜗对听力的恢复效果

2023-01-18 11:05

刺激蓝斑核可增强人工耳蜗对听力的恢复效果

英文摘要

Cochlear implants (CIs) are neuroprosthetic devices that can provide hearing to deaf people1. Despite the benefits offered by CIs, the time taken for hearing to be restored and perceptual accuracy after long-term CI use remain highly variable2,3. CI use is believed to require neuroplasticity in the central auditory system, and differential engagement of neuroplastic mechanisms might contribute to the variability in outcomes4-7. Despite extensive studies on how CIs activate the auditory system4,8-12, the understanding of CI-related neuroplasticity remains limited. One potent factor enabling plasticity is the neuromodulator noradrenaline from the brainstem locus coeruleus (LC). Here we examine behavioural responses and neural activity in LC and auditory cortex of deafened rats fitted with multi-channel CIs. The rats were trained on a reward-based auditory task, and showed considerable individual differences of learning rates and maximum performance. LC photometry predicted when CI subjects began responding to sounds and longer-term perceptual accuracy. Optogenetic LC stimulation produced faster learning and higher long-term accuracy. Auditory cortical responses to CI stimulation reflected behavioural performance, with enhanced responses to rewarded stimuli and decreased distinction between unrewarded stimuli. Adequate engagement of central neuromodulatory systems is thus a potential clinically relevant target for optimizing neuroprosthetic device use.

微信视频预览查看


不感兴趣

看过了

取消

人工耳蜗,蓝斑,听力,增强,突破,刺激,恢复,研究

不感兴趣

看过了

取消

相关阅读

赞+1

您的申请提交成功

您的申请提交成功

确定 取消
海报

已收到您的咨询诉求 我们会尽快联系您

添加微信客服 快速领取解决方案 您还可以去留言您想解决的问题
去留言
立即提交