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Transmission of Temporal Information Through the Auditory Pathway Measured with Cochlear-Implant Stimulation.

机译:通过耳蜗植入刺激测量的听觉途径传输时间信息。

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摘要

Cochlear implants provide the sensation of hearing to deaf individuals through electric stimulation of the auditory nerve. Environmental sounds are band-pass filtered, and the envelope of each frequency band is used to modulate electric pulse trains that are presented through electrodes along the cochlea. Selection of cochlear-implant processing-strategy parameters influences how temporal information is transmitted to the listener. Increasing the rate of the pulsatile carrier has been hypothesized to improve temporal acuity, which is important for speech recognition. We used cochlear-implant stimulation to measure cortical coding of temporal features of the stimulus envelope. We tested the effect of pulse rates from 254-4069 pps on three measures of temporal acuity: gap detection, forward masking, and amplitude-modulation detection.;We observed that gap-detection thresholds decreased with increasing pulse rate in awake and anesthetized animals. We measured forward masking, the suppression of a probe sound by a preceding masker, and observed two exponential components of recovery from forward masking. Based on their time constants, we attributed the rapid component to the auditory nerve and the longer component, which was stronger at lower pulse rates, to a central auditory center. We concluded that shorter gap-detection thresholds at higher pulse rates resulted from reduced forward masking. In awake animals, we observed responses to a variety of gap features. OFF-responses to the pre-gap marker contributed to gap-detection thresholds at the lowest pulse rate, in conditions for which the ON-response to the post-gap marker was suppressed.;We measured the synchrony of cortical responses to 10.6- and 21.2-Hz sinusoidal amplitude modulation on one cochlear-implant electrode in the presence of a simultaneous, interleaved stimulus on another electrode. We hypothesized that higher pulse rates and shorter inter-pulse-train delays would maximize interference between the two stimuli. There was little effect of either parameter, however, for an unmodulated pulse-train masker. When the stimuli were modulated at different frequencies, we observed cortical representations that were dominated by the sum of the stimuli. Longer interleaving delays resulted in slightly more stimulus-selective responses.;These results reveal principles of temporal processing in the auditory pathway, and may guide development and selection of future cochlear-implant processing strategies.
机译:耳蜗植入物通过听觉神经的电刺激为聋人提供听觉。环境声音经过带通滤波,每个频带的包络用于调制通过耳蜗电极通过电极呈现的电脉冲序列。人工耳蜗处理策略参数的选择会影响如何将时间信息传输到听众。已经假设增加脉动载波的速率以改善时间敏锐度,这对于语音识别很重要。我们使用耳蜗植入物刺激来测量皮质刺激时空特征的皮质编码。我们测试了254-4069 pps的脉冲速率对三种时间敏锐度的影响:间隙检测,前向掩蔽和幅度调制检测。我们观察到清醒和麻醉动物中间隙检测阈值随脉冲率的增加而降低。我们测量了前向掩蔽,即通过前一个掩蔽器对探测声音的抑制,并观察了从前向掩蔽恢复的两个指数成分。根据他们的时间常数,我们将快速分量归因于听觉神经,将较长的分量归因于中央听觉中心,较长的分量在较低的脉搏频率下更强。我们得出的结论是,较高的脉冲速率下较短的间隙检测阈值是由减少的前向掩蔽导致的。在清醒的动物中,我们观察到了对多种间隙特征的反应。在抑制了对后间隙标记的ON响应的条件下,对前间隙标记的OFF响应以最低的脉冲速率贡献了间隙检测阈值。在另一个电极上同时存在交错刺激的情况下,一个耳蜗植入电极上的21.2 Hz正弦振幅调制。我们假设较高的脉冲频率和较短的脉冲间火车延迟将使两个刺激之间的干扰最大化。但是,对于未调制的脉冲序列掩蔽器,这两个参数的影响都很小。当以不同频率调制刺激时,我们观察到皮质表示受刺激总和支配。更长的交织延迟会导致更多的刺激选择性反应。这些结果揭示了听觉途径中的时间加工原理,并可能指导未来耳蜗植入物加工策略的发展和选择。

著录项

  • 作者

    Kirby, Alana E.;

  • 作者单位

    University of Michigan.;

  • 授予单位 University of Michigan.;
  • 学科 Health Sciences Audiology.;Biology Neuroscience.;Biology Neurobiology.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 140 p.
  • 总页数 140
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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