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首页> 外文期刊>Journal of the Association for Research in Otolaryngology: JARO >Changes in auditory nerve responses across the duration of sinusoidally amplitude-modulated electric pulse-train stimuli.
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Changes in auditory nerve responses across the duration of sinusoidally amplitude-modulated electric pulse-train stimuli.

机译:在整个正弦振幅调制电脉冲训练刺激期间,听觉神经反应的变化。

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Response rates of auditory nerve fibers (ANFs) to electric pulse trains change over time, reflecting substantial spike-rate adaptation that depends on stimulus parameters. We hypothesize that adaptation affects the representation of amplitude-modulated pulse trains used by cochlear prostheses to transmit speech information to the auditory system. We recorded cat ANF responses to sinusoidally amplitude-modulated (SAM) trains with 5,000 pulse/s carriers. Stimuli delivered by a monopolar intracochlear electrode had fixed modulation frequency (100 Hz) and depth (10%). ANF responses were assessed by spike-rate measures, while representation of modulation was evaluated by vector strength (VS) and the fundamental component of the fast Fourier transform (F(0) amplitude). These measures were assessed across the 400 ms duration of pulse-train stimuli, a duration relevant to speech stimuli. Different stimulus levels were explored and responses were categorized into four spike-rate groups to assess level effects across ANFs. The temporal pattern of rate adaptation to modulated trains was similar to that of unmodulated trains, but with less rate adaptation. VS to the modulator increased over time and tended to saturate at lower spike rates, while F(0) amplitude typically decreased over time for low driven rates and increased for higher driven rates. VS at moderate and high spike rates and degree of F(0) amplitude temporal changes at low and moderate spike rates were positively correlated with the degree of rate adaptation. Thus, high-rate carriers will modify the ANF representation of the modulator over time. As the VS and F(0) measures were sensitive to adaptation-related changes over different spike-rate ranges, there is value in assessing both measures.
机译:听觉神经纤维(ANF)对电脉冲序列的响应率随时间变化,反映出取决于刺激参数的大量尖峰速率适应性。我们假设适应性会影响人工耳蜗用来将语音信息传输到听觉系统的调幅脉冲序列的表示。我们记录了猫ANF对具有5,000脉冲/秒载波的正弦幅度调制(SAM)列车的响应。单极耳蜗内电极传递的刺激具有固定的调制频率(100 Hz)和深度(10%)。 ANF响应通过尖峰速率测量进行评估,而调制的表示则通过矢量强度(VS)和快速傅立叶变换的基本分量(F(0)幅度)进行评估。这些措施是在脉搏刺激的400毫秒持续时间(与语音刺激有关的持续时间)内评估的。探讨了不同的刺激水平,并将反应分为四个峰值速率组,以评估整个ANF的水平影响。对已调制列车的速率适应的时间模式类似于未调制列车的速率模式,但速率适应性较低。调制器的VS随时间增加,并在较低的尖峰速率下趋于饱和,而F(0)幅度通常对于低驱动速率随时间降低而对于较高驱动速率则随时间增加。中高尖峰速率下的VS和低中尖峰速率下的F(0)幅度程度的时间变化与速率适应程度成正相关。因此,高速率载波将随时间修改调制器的ANF表示。由于VS和F(0)措施对不同尖峰率范围内与适应相关的变化敏感,因此评估这两种措施都很有价值。

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