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Involvement of the TPJ Area in Processing of Novel Global Forms

机译:TPJ地区参与处理新型全球表格

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The neuropsychological syndrome “simultanagnosia” is characterized by the inability to integrate local elements into a global entity. This deficit in Gestalt perception is mainly apparent for novel global structures administered in clinical tests or unfamiliar visual scenes. Recognition of familiar complex objects or well-known visual scenes is often unaffected. Recent neuroimaging studies and reports from simultanagnosia patients suggest a crucial involvement of temporoparietal brain areas in processing of hierarchically organized visual material. In this study, we investigated the specific role of the TPJ in Gestalt perception. On the basis of perceptual characteristics known from simultanagnosia, we hypothesized that TPJ is dominantly involved in processing of novel object arrangements. To answer this question, we performed a learning study with hierarchical stimuli and tested behavioral and neuronal characteristics of Gestalt perception pre- and posttraining. The study included 16 psychophysical training sessions and two neuroimaging sessions. Participants improved their behavioral performance for trained global stimuli and showed limited transfer to untrained global material. We found significant training dependent neuronal signal modulations in anterior right hemispheric TPJ regions. These activation changes were specific to trained global stimuli, whereas no systematic neuronal response changes were observed for recognition of untrained global stimuli, local elements and regular objects that served as control stimuli. In line with perceptual characteristics in simultanagnosia, the results argue for an involvement of TPJ in processing of novel global structures. We discuss the signal modulations in the context of a more efficient or different neuronal strategy to process familiar global stimuli.
机译:神经心理学综合症“同时诊断”的特征是无法将局部元素整合到一个整体中。格式塔知觉的这种缺陷主要在临床测试或不熟悉的视觉场景中管理的新型整体结构中很明显。熟悉的复杂物体或众所周知的视觉场景的识别通常不受影响。最近的神经影像学研究和同时诊断患者的报告表明,颞顶大脑区域在处理层次化视觉材料中至关重要。在这项研究中,我们调查了TPJ在格式塔感知中的特定作用。基于同时诊断所知的知觉特征,我们假设TPJ主要参与了新对象排列的处理。为了回答这个问题,我们进行了带有分层刺激的学习研究,并测试了格式塔知觉训练前后的行为和神经元特征。该研究包括16次心理物理训练和两次神经影像训练。参与者改善了他们对受过训练的全球刺激行为的表现,并显示出有限地转移到未经训练的全球性物质。我们在右前半球TPJ区域发现了依赖训练的重要神经元信号调制。这些激活变化特定于受过训练的全局刺激,而未观察到系统性神经元反应变化,可识别未受训练的全局刺激,局部元素和用作控制刺激的常规物体。与同时诊断的知觉特征相一致,结果表明TPJ参与了新型整体结构的加工。我们将在更有效的或不同的神经元策略的背景下讨论信号调制,以处理熟悉的全局刺激。

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