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Tactile shape discrimination recruits human lateral occipital complex during early perceptual processing

机译:触觉形状辨别在早期知觉加工过程中招募了人类的枕骨外侧复合体

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摘要

Neuroimaging studies investigating somatosensory‐based object recognition in humans have revealed activity in the lateral occipital complex, a cluster of regions primarily associated with visual object recognition. To date, determining whether this activity occurs during or subsequent to recognition per se, has been difficult to assess due to the low temporal resolution of the hemodynamic response. To more finely measure the timing of somatosensory object recognition processes we employed high density EEG using a modified version of a paradigm previously applied to neuroimaging experiments. Simple geometric shapes were presented to the right index finger of 10 participants while the ongoing EEG was measured time locked to the stimulus. In the condition of primary interest participants discriminated the shape of the stimulus. In the alternate condition they judged stimulus duration. Using traditional event‐related potential analysis techniques we found significantly greater amplitudes in the evoked potentials of the shape discrimination condition between 140 and 160 ms, a timeframe in which LOC mediated perceptual processes are believed to occur during visual object recognition. Scalp voltage topography and source analysis procedures indicated the lateral occipital complex as the likely source behind this effect. This finding supports a multisensory role for the lateral occipital complex during object recognition. Hum Brain Mapp, 2010. © 2010 Wiley‐Liss, Inc.
机译:神经影像学研究了人类基于体感的物体识别,发现了枕叶外侧复合体的活动,枕骨外侧复合体是一个主要与视觉物体识别相关的区域簇。迄今为止,由于血液动力学反应的低时间分辨率,很难评估确定该活性本身是在识别期间还是在识别之后。为了更精确地测量体感物体识别过程的时间,我们采用了高密度脑电图,该方法使用了以前应用于神经影像实验的范式的修改版本。将简单的几何形状呈现给10位参与者的右手食指,同时测量持续进行的EEG锁定刺激的时间。在主要兴趣的情况下,参与者区分了刺激的形状。在替代条件下,他们判断刺激持续时间。使用传统的事件相关电位分析技术,我们发现在140到160 ms之间,形状辨别条件的诱发电位具有明显更大的幅度,在该时间范围内,LOC介导的感知过程被认为在视觉对象识别期间发生。头皮电压地形图和源头分析程序表明,枕骨外侧复合体可能是造成这种影响的原因。这一发现支持了在对象识别过程中对枕外侧骨复合体的多感官作用。嗡嗡的脑图,2010年。©2010 Wiley-Liss,Inc.

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