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A theoretical study of information transmission in the auditory system using signal detection theory: frequency discrimination by normal and impaired systems

机译:使用信号检测理论的听觉系统中信息传输的理论研究:正常系统和受损系统的频率区分

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We have investigated the differences between normal and impaired auditory processing for a frequency discrimination task by analyzing the responses of a computational auditory model using signal detection theory. Two detectors, one using all of the information in the signal, the other using only the number of neural responses, were implemented. An evaluation of the performance differences between the two theoretical detectors and experimental data may provide insight into quantifying the type of information present in the auditory system as well as whether the human auditory system uses this information efficiently. Results support previous hypotheses that, for lowand mid-range frequencies, the auditory system is able to use temporal information to perform frequency discrimination (see Moore, B.C.J., J. Acoust. Soc. Am., vol.54, p.610-19, 1973). The results also suggest that some temporal information is represented in the neural spike train, even at high frequencies However, the ability of the auditory system to use this information deteriorates at higher frequencies.
机译:通过使用信号检测理论分析计算听觉模型的响应,我们已经研究了频率歧视任务的正常听觉处理和受损听觉处理之间的差异。实现了两个检测器,一个使用信号中的所有信息,另一个使用仅神经反应的数量。对两个理论检测器和实验数据之间的性能差异的评估可以提供对量化听觉系统中存在的信息类型以及人类听觉系统是否有效使用此信息的洞察力。结果支持先前的假设,即对于中低频率,听觉系统能够使用时态信息执行频率歧视(请参阅Moore,BCJ,J.Acoust.Soc.Am。,第54卷,第610-19页) (1973年)。结果还表明,即使在高频下,神经尖峰序列中仍会显示一些时间信息。但是,听觉系统使用此信息的能力在高频下会变差。

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