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首页> 外文期刊>Ear and hearing. >Brain stem and cortical mechanisms underlying the binaural masking level difference in humans: an auditory steady-state response study.
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Brain stem and cortical mechanisms underlying the binaural masking level difference in humans: an auditory steady-state response study.

机译:人类双耳掩蔽水平差异背后的脑干和皮质机制:听觉稳态反应研究。

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SUMMARY: OBJECTIVE The behavioral binaural masking level difference (BMLD) is believed to reflect brain stem processing. However, this conflicts with transient auditory evoked potential research that indicates the auditory brain stem and middle latency responses do not demonstrate the BMLD. The objective of the present study is to investigate the brain stem and cortical mechanisms underlying the BMLD in humans using the brain stem and cortical auditory steady-state responses (ASSRs).DESIGN A 500-Hz pure tone, amplitude-modulated (AM) at 80 Hz and 7 (or 13) Hz, was used to elicit brain stem and cortical ASSRs, respectively. The masker was a 200-Hz-wide noise centered on 500 Hz. Eleven adult subjects with normal hearing were tested. Both ASSR (brain stem and cortical) and behavioral thresholds for diotic AM stimuli (when the signal and noise are in phase binaurally: SoNo) and dichotic AM stimuli (when either the signal or noise is 180 degrees out-of-phase between the two ears: SpiNo, SoNpi) were investigated. ASSR and behavioral BMLDs were obtained by subtracting the threshold for the dichotic stimuli from that for the diotic stimuli, respectively. Effects for modulation rate, signal versus noise phase changes, and behavioral versus ASSR measure on the BMLD were investigated.RESULTS Behavioral BMLDs (mean = 8.5 to 10.5 dB) obtained are consistent with results from past research. The ASSR results are similar to the pattern of results previously found for the transient auditory brain stem responses and the N1-P2 cortical auditory evoked potential, in that only the cortical ASSRs (7 or 13 Hz) demonstrate BMLDs (mean = 5.8 dB); the brain stem ASSRs (80 Hz) (mean = 1.5 dB) do not. The ASSR results differ from the previous transient N1-P2 studies, however, in that the cortical ASSRs show a BMLD only when there is a change in the signal interaural phase, but not for changes of noise interaural phase.CONCLUSIONS Results suggest that brain processes underlying the BMLD occur either in a different pathway or beyond the brain stem auditory processing underlying the 80-Hz ASSR. Results also suggest that the cortical ASSRs have somewhat different neural sources than the transient N1-P2 responses, and that they may reflect the output of neural populations that previous research has shown to be insensitive to binaural differences in noise.
机译:摘要:目的行为双耳掩蔽水平差异(BMLD)被认为可以反映脑干的加工过程。但是,这与短暂的听觉诱发电位研究相矛盾,后者表明听觉脑干和中潜伏期反应不能证明BMLD。本研究的目的是使用脑干和皮质听觉稳态响应(ASSR)研究人类BMLD的脑干和皮质机制。设计一个500 Hz的纯音,调幅(AM) 80 Hz和7(或13)Hz分别用于诱发脑干和皮质ASSR。掩蔽器是一个以500 Hz为中心的200 Hz宽的噪声。测试了11名听力正常的成人受试者。 ASSR(脑干和皮层)和双动性AM刺激的行为阈值(当信号和噪声双耳同相时:SoNo)和双色性AM刺激的阈值(当信号或噪声两者之间呈180度异相时)耳朵:SpiNo,SoNpi)进行了调查。 ASSR和行为BMLD分别通过从二叉神经刺激的阈值中减去二叉神经刺激的阈值来获得。研究了调制速率,信号与噪声相位变化以及行为与ASSR措施对BMLD的影响。结果获得的行为BMLD(平均值= 8.5至10.5 dB)与过去的研究结果一致。 ASSR结果类似于先前发现的短暂听觉脑干反应和N1-P2皮质听觉诱发电位的结果模式,因为只有皮质ASSR(7或13 Hz)表现出BMLD(平均值= 5.8 dB);脑干ASSR(80 Hz)(平均值= 1.5 dB)则没有。 ASSR结果与之前的瞬态N1-P2研究不同,因为皮质ASSR仅在信号耳间相位发生变化时才显示BMLD,而在噪声耳间相位没有变化时就显示BMLD。 BMLD的基础可能以不同的途径发生,也可能不在80 Hz ASSR的脑干听觉处理之外。结果还表明,皮质ASSR的神经源与瞬时N1-P2响应有所不同,并且它们可能反映了先前研究表明对双耳噪声差异不敏感的神经种群的输出。

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