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首页> 外文期刊>The Journal of the Acoustical Society of America >Optimal electrode selection for multi-channel electroencephalogram based detection of auditory steady-state responses
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Optimal electrode selection for multi-channel electroencephalogram based detection of auditory steady-state responses

机译:基于多通道脑电图的听觉稳态反应检测的最佳电极选择

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摘要

Auditory steady-state responses (ASSRs) are used for hearing threshold estimation at audiometric frequencies. Hearing impaired newborns, in particular, benefit from this technique as it allows for a more precise diagnosis than traditional techniques, and a hearing aid can be better fitted at an early age. However, measurement duration of current single-channel techniques is still too long for clinical widespread use. This paper evaluates the practical performance of a multi-channel electroencephalogram (EEG) processing strategy based on a detection theory approach. A minimum electrode set is determined for ASSRs with frequencies between 80 and 110 Hz using eight-channel EEG measurements of ten normal-hearing adults. This set provides a near-optimal hearing threshold estimate for all subjects and improves response detection significantly for EEG data with numerous artifacts. Multi-channel processing does not significantly improve response detection for EEG data with few artifacts. In this case, best response detection is obtained when noise-weighted averaging is applied on single-channel data. The same test setup (eight channels, ten normal-hearing subjects) is also used to determine a minimum electrode setup for 10-Hz ASSRs. This configuration allows to record near-optimal signal-to-noise ratios for 80% of subjects.
机译:听觉稳态响应(ASSR)用于听觉频率的听力阈值估计。听力受损的新生儿尤其受益于此技术,因为它可以比传统技术提供更精确的诊断,并且助听器可以在早期就更好地安装。但是,当前的单通道技术的测量持续时间对于临床广泛使用而言仍然太长。本文基于检测理论方法评估了多通道脑电图(EEG)处理策略的实际性能。通过对十名正常听力成年人的八通道脑电图测量,确定了频率在80到110 Hz之间的ASSR的最小电极组。该集合为所有受试者提供了接​​近最佳的听力阈值估计,并显着改善了针对具有大量伪影的EEG数据的响应检测。多通道处理不会显着改善对带有少量伪影的EEG数据的响应检测。在这种情况下,将噪声加权平均应用于单通道数据时,可获得最佳响应检测。相同的测试设置(八个通道,十个听力正常的受试者)也用于确定10 Hz ASSR的最小电极设置。这种配置可以记录80%的受试者接近最佳的信噪比。

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