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主音调相位变化方法的推广:分离频率跟随响应成分的一种独特方式。

Generalization of the primary tone phase variation method: An exclusive way of isolating the frequency-following response components.

作者信息

Lucchetti Federico, Deltenre Paul, Avan Paul, Giraudet Fabrice, Fan Xiaoya, Nonclercq Antoine

机构信息

Laboratoire de Neurophysiologie Sensorielle et Cognitive CP403/22, Brugmann Hospital, Place Van Gehuchten 4, Brussels, B1060, Belgium.

Laboratory of Neurosensory Biophysics Unité mixte de recherche, Institut national de la santé et de la recherche médicale 1107, University Clermont Auvergne, 28 Place Henri Dunant, BP38 Clermont-Ferrand, Cedex 1, F63001, France.

出版信息

J Acoust Soc Am. 2018 Oct;144(4):2400. doi: 10.1121/1.5063821.

Abstract

The primary tone phase variation (PTPV) technique combines selective sub-averaging with systematic variation of the phases of multitone stimuli. Each response component having a known phase relationship with the stimulus components phases can be isolated in the time domain. The method was generalized to the frequency-following response (FFR) evoked by a two-tone ( and ) stimulus comprising both linear and non-linear, as well as transient components. The generalized PTPV technique isolated each spectral component present in the FFR, including those sharing the same frequency, allowing comparison of their latencies. After isolation of the envelope component - from its harmonic distortion 2 - 2 and from the transient auditory brainstem response, a computerized analysis of instantaneous amplitudes and phases was applied in order to objectively determine the onset and offset latencies of the response components. The successive activation of two generators separated by 3.7 ms could be detected in all ( = 12) awake adult normal subjects, but in none ( = 10) of the sleeping/sedated children with normal hearing thresholds. The method offers an unprecedented way of disentangling the various FFR subcomponents. These results open the way for renewed investigations of the FFR components in both human and animal research as well as for clinical applications.

摘要

主音调相位变化(PTPV)技术将选择性子平均与多音调刺激相位的系统变化相结合。每个与刺激成分相位具有已知相位关系的响应成分都可以在时域中分离出来。该方法被推广到由包含线性和非线性以及瞬态成分的双音(和)刺激诱发的频率跟随反应(FFR)。广义PTPV技术分离出FFR中存在的每个频谱成分,包括那些具有相同频率的成分,从而可以比较它们的潜伏期。从其谐波失真2 - 2以及瞬态听觉脑干反应中分离出包络成分 - 后,应用了对瞬时幅度和相位的计算机化分析,以便客观地确定反应成分的起始和偏移潜伏期。在所有( = 12)清醒的成年正常受试者中都能检测到相隔3.7毫秒的两个发生器的连续激活,但在所有听力阈值正常的睡眠/镇静儿童( = 10)中均未检测到。该方法提供了一种前所未有的方式来解开各种FFR子成分。这些结果为在人类和动物研究中重新研究FFR成分以及临床应用开辟了道路。

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