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在不同呈现速率下,对噪声中的短间隙的听觉脑干、中潜伏期和晚潜伏期反应。

Auditory brainstem, middle and late latency responses to short gaps in noise at different presentation rates.

作者信息

Alhussaini Khalid, Bohorquez Jorge, Delgado Rafael E, Ozdamar Ozcan

机构信息

a Department of Biomedical Engineering , University of Miami , Coral Gables , FL , USA.

b Biomedical Technology Department , King Saud University , Riyadh , Saudi Arabia.

出版信息

Int J Audiol. 2018 Jun;57(6):399-406. doi: 10.1080/14992027.2018.1428373. Epub 2018 Jan 29.

Abstract

OBJECTIVE

The effects of rate on auditory-evoked potentials (AEP) to short noise gaps (12 ms) recorded at high sampling rates using wide-band filters were investigated.

DESIGN

Auditory brainstem (ABR), middle latency (MLR), late latency (LLR) and steady-state (ASSR) responses were simultaneously recorded in adult subjects at four gap rates (0.5, 1, 5 and 40 Hz). Major components (V, Na, Pa, Nb, Pb, N1 and P2) were identified at each rate and analysed for latency/amplitude characteristics. Gap responses at 40 Hz were recovered from Quasi-ASSRs (QASSR) using the CLAD deconvolution method.

STUDY SAMPLE

Fourteen right ears of young normal hearing subjects were tested.

RESULTS

All major components were present in all subjects at 1 Hz. P1 (P50) appeared as a low-pass filtered component of Pa and Pb waves. At higher rates, N1 and P2 disappeared completely while major ABR-MLR components were identified. Peak latencies were mostly determined by noise onsets slightly delayed by offset responses.

CONCLUSIONS

Major AEP components can be recorded to short gaps at 1 Hz using high sampling rates and wide-band filters. At higher rates, only ABR and MLRs can be recorded. Such simultaneous recordings may provide a complete assessment of temporal resolution and processing at different levels of auditory pathways.

摘要

目的

研究速率对使用宽带滤波器在高采样率下记录的短噪声间隙(12毫秒)诱发的听觉诱发电位(AEP)的影响。

设计

在成年受试者中同时记录四个间隙速率(0.5、1、5和40赫兹)下的听觉脑干反应(ABR)、中潜伏期反应(MLR)、晚潜伏期反应(LLR)和稳态反应(ASSR)。在每个速率下识别主要成分(V、Na、Pa、Nb、Pb、N1和P2),并分析其潜伏期/振幅特征。使用CLAD反卷积方法从准稳态反应(QASSR)中恢复40赫兹的间隙反应。

研究样本

对14名听力正常的年轻受试者的右耳进行测试。

结果

所有受试者在1赫兹时均出现所有主要成分。P1(P50)表现为Pa波和Pb波的低通滤波成分。在更高的速率下,N1和P2完全消失,同时识别出主要的ABR-MLR成分。峰值潜伏期大多由被起始反应轻微延迟的噪声起始点决定。

结论

使用高采样率和宽带滤波器,可以在1赫兹的短间隙下记录主要的AEP成分。在更高的速率下,只能记录ABR和MLR。这种同步记录可以对听觉通路不同水平的时间分辨率和处理过程进行全面评估。

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