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When Neuroscience a??Touchesa?? Architecture: From Hapticity to a Supramodal Functioning of the Human Brain

机译:神经科学什么时候?体系结构:从触觉到人脑的超模态功能

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In the last decades, the rapid growth of functional brain imaging methodologies allowed cognitive neuroscience to address open questions in philosophy and social sciences. At the same time, novel insights from cognitive neuroscience research have begun to influence various disciplines, leading to a turn to cognition and emotion in the fields of planning and architectural design. Since 2003, the Academy of Neuroscience for Architecture has been supporting ‘neuro-architecture’ as a way to connect neuroscience and the study of behavioral responses to the built environment. Among the many topics related to multisensory perceptual integration and embodiment, the concept of hapticity was recently introduced, suggesting a pivotal role of tactile perception and haptic imagery in architectural appraisal. Arguments have thus risen in favor of the existence of shared cognitive foundations between hapticity and the supramodal functional architecture of the human brain. Precisely, supramodality refers to the functional feature of defined brain regions to process and represent specific information content in a more abstract way, independently of the sensory modality conveying such information to the brain. Here, we highlight some commonalities and differences between the concepts of hapticity and supramodality according to the distinctive perspectives of architecture and cognitive neuroscience. This comparison and connection between these two different approaches may lead to novel observations in regard to people–environment relationships, and even provide empirical foundations for a renewed evidence-based design theory.
机译:在过去的几十年中,功能性大脑成像方法的迅速发展使认知神经科学能够解决哲学和社会科学领域的开放性问题。同时,来自认知神经科学研究的新颖见解已开始影响各个学科,从而导致在规划和建筑设计领域转向认知和情感。自2003年以来,建筑神经科学学院一直支持“神经体系结构”,以将神经科学和对建筑环境的行为响应的研究联系起来。在与多感官感知整合和体现相关的众多主题中,最近引入了触觉概念,这暗示了触觉感知和触觉图像在建筑评估中的关键作用。因此,人们越来越多地赞成在触觉和人脑的超模态功能结构之间存在共享的认知基础。准确地说,超模态是指定义的大脑区域以更抽象的方式处理和表示特定信息内容的功能特征,而与将这种信息传递到大脑的感觉方式无关。在这里,我们根据建筑学和认知神经科学的独特观点,突出了触觉和超模态概念之间的一些共性和差异。这两种不同方法之间的比较和联系可能导致人们与环境之间关系的新颖观察,甚至为更新的基于证据的设计理论提供经验基础。

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