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Conjoining Three Auditory Features: An Event-Related Brain Potential Study

机译:结合三个听觉特征:事件相关的脑潜能研究

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摘要

The mechanisms of auditory feature processing and conjunction were examined with event-related brain potential (ERP) recording in a task in which participants responded to target tones defined by the combination of location, frequency, and duration features amid distractor tones varying randomly along all feature dimensions. Attention effects were isolated as negative difference (Nd) waves by subtracting ERPs to tones with no target features from ERPs to tones with one, two, or three target features. Nd waves were seen to all tones sharing a single feature with the target, including tones sharing only target duration. Nd waves associated with the analysis of frequency and location features began at latencies of 60 msec, whereas Nd-Duration waves began at 120 msec. Nd waves to tones with single target features continued until 400+ msec, suggesting that once begun, the analysis of tone features continued exhaustively to conclusion. Nd-Frequency and Nd-Location waves had distinct scalp distributions, consistent with generation in different auditory cortical areas. Three stages of feature processing were identified: (1) Parallel feature processing (60-140 msec): Nd waves combined linearly, such that Nd-wave amplitudes following tones with two or three target features were equal to the sum of the Nd waves elicited by tones with only one target feature. (2) Conjunction-specific (CS) processing (140-220 msec): Nd amplitudes were enhanced following tones with any pair of attended features. (3) Target-specific (TS) processing (220-300 msec): Nd amplitudes were specifically enhanced to target tones with all three features. These results are consistent with a facilitatory interactive feature analysis (FIFA) model in which feature conjunction is associated with the amplified processing of individual stimulus features. Activation of N-methyl-D-aspartate (NMDA) receptors is proposed to underlie the FIFA process.
机译:听觉特征处理和结合的机制已通过与事件相关的脑电势(ERP)记录的任务进行了检查,在该任务中,参与者对由位置,频率和持续时间特征的组合所定义的目标音调做出了响应,而干扰音在整个特征中随机变化尺寸。通过从ERPs减去具有一个,两个或三个目标特征的色调中减去没有目标特征的ERPs,将注意力效应隔离为负差(Nd)波。在与目标共享单个功能的所有音调中都可以看到Nd波,包括仅共享目标持续时间的音调。与频率和位置特征分析相关的Nd波始于60毫秒的等待时间,而Nd持续时间波始于120毫秒。具有单个目标特征的Nd音调持续进行到400毫秒以上,这表明,一旦开始,对音色特征的分析将继续详尽无遗地得出结论。 Nd频率和Nd位置波具有不同的头皮分布,与在不同的听觉皮层区域产生的频率一致。确定了特征处理的三个阶段:(1)并行特征处理(60-140毫秒):Nd波线性组合,使得具有两个或三个目标特征的音调之后的Nd波振幅等于所引起的Nd波之和音色只有一个目标功能。 (2)结合点专用(CS)处理(140-220毫秒):音调随任何一对参与特征而增强了Nd振幅。 (3)目标特定(TS)处理(220-300毫秒):Nd振幅被专门增强,以具有所有三个特征的目标音调。这些结果与促进性交互特征分析(FIFA)模型相一致,在该模型中,特征联合与单个刺激特征的放大处理相关。 N-甲基-D-天冬氨酸(NMDA)受体的激活被提议为FIFA过程的基础。

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  • 来源
    《Journal of Cognitive Neuroscience》 |2001年第4期|492-509|共18页
  • 作者

    Woods D; Alain C;

  • 作者单位

    1. University of California-Davis and Northern California System of Clinics;

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  • 正文语种 eng
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