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一组声音,两张音调定位图:用调幅音探索听觉皮层。

One set of sounds, two tonotopic maps: exploring auditory cortex with amplitude-modulated tones.

作者信息

Weisz N, Keil A, Wienbruch C, Hoffmeister S, Elbert T

机构信息

Department of Psychology, University of Konstanz, Box D25, D-78457 Konstanz, Germany.

出版信息

Clin Neurophysiol. 2004 Jun;115(6):1249-58. doi: 10.1016/j.clinph.2003.12.034.

Abstract

OBJECTIVE

The possibility of simultaneously observing activation of primary and secondary auditory cortices has been demonstrated by Engelien et al. [Hear Res 2000;148:153-60].

METHODS

Such a dual monitoring by means of neuromagnetic recordings can be achieved when a subject is stimulated by brief pulses of 40Hz-modulated tones. Depending on the frequency filter applied, either the steady-state field (SSF) or the N1m can be extracted from the evoked magnetic field complex.

RESULTS

Using this "combined" (two-maps) paradigm with 4 carrier frequencies, we show that it is possible to synchronously screen two tonotopic maps--one map each reflected either by the SSF or the N1m. Indicators are the systematic variation in the location (higher frequencies are more posterior) and orientation (higher frequencies oriented differently in the sagittal plane) of the equivalent current dipole (ECD). These parameters were compared with those obtained from "classic" (one map) paradigms in which either a pure tone elicits an N1m or a 40 Hz continuous (3 s) stimulation produces an SSF. Overall the results were similar, however, systematic differences between the paradigms were found for ECD localization, dipole strength, amplitude, and phase.

CONCLUSIONS AND SIGNIFICANCE

One possible interpretation of these results is that different tonotopically arranged cortical fields were involved in the generation of the components.

摘要

目的

恩格利恩等人[《听觉研究》2000年;148:153 - 60]已证明同时观察初级和次级听觉皮层激活的可能性。

方法

当用40Hz调制音调的短脉冲刺激受试者时,可通过神经磁记录实现这种双重监测。根据所应用的频率滤波器,可从诱发磁场复合体中提取稳态场(SSF)或N1m。

结果

使用这种具有4个载波频率的“组合”(双图谱)范式,我们表明可以同步筛选两个音调定位图谱——每个图谱分别由SSF或N1m反映。指标是等效电流偶极子(ECD)的位置(较高频率更靠后)和方向(较高频率在矢状面中的方向不同)的系统变化。将这些参数与从“经典”(单图谱)范式获得的参数进行比较,在“经典”范式中,纯音诱发N1m或40Hz连续(3秒)刺激产生SSF。总体而言,结果相似,然而,在ECD定位、偶极强度、幅度和相位方面发现了范式之间的系统差异。

结论及意义

这些结果的一种可能解释是,不同的音调定位排列的皮层区域参与了这些成分的产生。

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