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视皮层在延迟和痕迹厌恶条件作用过程中的变化:稳态视觉诱发电位的证据。

Visuocortical changes during delay and trace aversive conditioning: evidence from steady-state visual evoked potentials.

机构信息

Center for the Study of Emotion & Attention, University of Florida, Gainesville, FL 32611, USA.

出版信息

Emotion. 2013 Jun;13(3):554-61. doi: 10.1037/a0031323. Epub 2013 Feb 11.

Abstract

The visual system is biased toward sensory cues that have been associated with danger or harm through temporal co-occurrence. An outstanding question about conditioning-induced changes in visuocortical processing is the extent to which they are driven primarily by top-down factors such as expectancy or by low-level factors such as the temporal proximity between conditioned stimuli and aversive outcomes. Here, the authors examined this question using 2 different differential aversive conditioning experiments: participants learned to associate a particular grating stimulus with an aversive noise that was presented either in close temporal proximity (delay conditioning experiment) or after a prolonged stimulus-free interval (trace conditioning experiment). In both experiments, the authors probed cue-related cortical responses by recording steady-state visual evoked potentials. Although behavioral ratings indicated that all participants successfully learned to discriminate between the grating patterns that predicted the presence versus absence of the aversive noise, selective amplification of population-level responses in visual cortex for the conditioned danger signal was observed only when the grating and the noise were temporally contiguous. Our findings are in line with notions purporting that changes in the electrocortical response of visual neurons induced by aversive conditioning are a product of Hebbian associations among sensory cell assemblies rather than being driven entirely by expectancy-based, declarative processes.

摘要

视觉系统偏向于那些通过时间共同出现与危险或伤害相关的感觉提示。关于条件作用引起的视皮层处理变化的一个突出问题是,它们主要是由自上而下的因素(如期望)驱动的,还是由低级别的因素(如条件刺激与厌恶结果之间的时间接近程度)驱动的。在这里,作者使用了两种不同的差异厌恶条件实验来研究这个问题:参与者学习将特定的光栅刺激与一个厌恶的噪声联系起来,这个噪声要么在时间上接近(延迟条件实验),要么在长时间的刺激间隔后出现(痕迹条件实验)。在这两个实验中,作者通过记录稳态视觉诱发电位来探测与线索相关的皮质反应。尽管行为评分表明,所有参与者都成功地学会了区分那些预测厌恶噪声存在与否的光栅模式,但只有当光栅和噪声在时间上连续时,才观察到视觉皮层中群体水平反应的选择性放大,用于有条件的危险信号。我们的发现与以下观点一致,即厌恶条件作用引起的视觉神经元电反应的变化是感觉细胞集合之间的赫布关联的产物,而不是完全由基于期望的陈述性过程驱动的。

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