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听觉皮层对调幅声音多种节律的反应模式。

Auditory cortical response patterns to multiple rhythms of AM sound.

作者信息

Draganova Rossitza, Ross Bernhard, Borgmann Christian, Pantev Christo

机构信息

Institute of Experimental Audiology, Münster University Hospital, Münster, Germany.

出版信息

Ear Hear. 2002 Jun;23(3):254-65. doi: 10.1097/00003446-200206000-00009.

Abstract

OBJECTIVE

Multiple amplitude modulation (AM) of a tone results in a time series with a complex structure of envelope fluctuations. In this study the cortical responses elicited by such an auditory stimulus were investigated. It was hypothesized that the auditory cortex responds simultaneously with different patterns of activity corresponding to the different rhythm of periodical stimulus fluctuations. The relations of these response patterns to either steady-state responses (SSR) in the 40 Hz range or the transient slow auditory evoked responses were investigated.

DESIGN

Auditory evoked magnetic fields were recorded from the left temporal cortex of nine healthy humans in response to 250 Hz tones that were amplitude modulated with the sum of two sinusoids of 38 and 40 Hz. The stimulus was presented continuously to the subject's right ear at the intensity of 70 dB sensation level. In addition, the responses to 250 Hz tone-burst stimuli with duration of 20, 50, 100, and 200 msec, respectively, were recorded. The tone-bursts were presented at an inter-stimulus interval (ISI) of 0.5 sec, which was equivalent to the slowest rhythm of the multiple-AM stimulus. Magnetic source analysis was applied to all elicited waveforms.

RESULTS

From all subjects SSR at 38 and 40 Hz were clearly recognizable and were superimposed by a periodical response pattern corresponding to 2 Hz stimulus envelope fluctuations. A positive peak with latency of 70 msec was the mostly pronounced response to tone-burst stimulation at the ISI of 0.5 sec and resembles the low-frequency response pattern to the AM stimulus. The N1-P2 complex showed an almost complete suppression at 0.5 sec ISI. In contrast, it was the most prominent evoked response activity when using a longer ISI of 3 sec. Source locations in overlapping areas were estimated for the SSR in the 40 Hz range, the prominent peak of low-frequency response to the AM stimulus, and the P1 peak at tone-burst stimulation, respectively. These were separated from the N1 source location by about 0.5 cm in anterior and 0.5 cm in medial direction.

CONCLUSION

As a result of multiple AM the stimulus signal envelope fluctuates with frequencies of 2 Hz and around 40 Hz. The auditory cortex responds to this stimulus with different response patterns. Both modulation signals at 38 and 40 Hz were almost linearly represented as steady-state responses. The evoked response patterns to stimulus fluctuations at low-frequency rhythm resemble the slow cortical auditory evoked responses. The 2 Hz stimulus rhythm is perceived as loudness fluctuation, and 40 Hz modulation is perceived as a rough sound. It is assumed that the different cortical representations correspond to both types of perception of the complex AM sound.

摘要

目的

对一个纯音进行多重调幅(AM)会产生一个具有复杂包络波动结构的时间序列。在本研究中,对这种听觉刺激所引发的皮层反应进行了调查。研究假设是,听觉皮层会以与周期性刺激波动的不同节奏相对应的不同活动模式同时做出反应。研究了这些反应模式与40Hz范围内的稳态反应(SSR)或瞬态慢听觉诱发电反应之间的关系。

设计

记录了9名健康人类左颞叶皮层对250Hz纯音的听觉诱发磁场,该纯音由38Hz和40Hz的两个正弦波之和进行调幅。以70dB感觉级强度持续向受试者右耳呈现刺激。此外,还记录了分别对持续时间为20、50、100和200毫秒的250Hz短纯音刺激的反应。短纯音以0.5秒的刺激间隔(ISI)呈现,这相当于多重调幅刺激的最慢节奏。对所有诱发波形应用了磁源分析。

结果

在所有受试者中,38Hz和40Hz的SSR清晰可辨,并叠加有对应于2Hz刺激包络波动的周期性反应模式。潜伏期为70毫秒的一个正峰是在0.5秒ISI时对短纯音刺激最明显的反应,并且类似于对调幅刺激的低频反应模式。N1 - P2复合波在0.5秒ISI时几乎完全被抑制。相反,当使用3秒的较长ISI时,它是最突出的诱发反应活动。分别对40Hz范围内的SSR、对调幅刺激的低频反应的突出峰值以及短纯音刺激时的P1峰值,估计了重叠区域中的源位置。这些源位置在N1源位置的前方约0.5厘米和内侧约0.5厘米处与之分开。

结论

由于多重调幅,刺激信号包络以2Hz和40Hz左右的频率波动。听觉皮层对这种刺激以不同的反应模式做出反应。38Hz和40Hz的两种调制信号几乎都以稳态反应的形式线性呈现。对低频节奏的刺激波动的诱发反应模式类似于慢皮层听觉诱发电反应。2Hz的刺激节奏被感知为响度波动,40Hz的调制被感知为粗糙的声音。据推测,不同的皮层表征对应于对复杂调幅声音的两种感知类型。

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