Laberge David, Kasevich Ray
Bard College at Simon's Rock and Stanley Laboratory of Electrical Physics, Great Barrington, MA, 01230, USA.
Neural Netw. 2007 Nov;20(9):1004-20. doi: 10.1016/j.neunet.2007.09.006. Epub 2007 Sep 11.
The neural basis of consciousness is theorized here to be the elevated activity of the apical dendrite within a thalamocortical circuit. Both the anatomical and functional properties of these two brain structures are examined within the general context of the cortical minicolumn, which is regarded as the functional unit of the cerebral cortex. Two main circuits of the minicolumn are described: the axis circuit, which sustains activity for extended durations and produces our sensory impressions, and the shell circuit, which performs input-output processing and produces identifications, categorizations, and ideas. The apical dendrite operates within the axis circuit to stabilize neural activity, which enables conscious impressions to be steady and to be sustained over long periods of time. In an attempt to understand how the conscious aspect of subjective impressions may be related to apical dendrite activity, we examine the characteristics of the electric and magnetic fields during the movement of charges along the apical dendrite. The physical correlate of consciousness is regarded here as the relatively intense electromagnetic field that is located along the inside and the outside close to the surface of the active apical dendrite.
本文提出意识的神经基础是丘脑皮质回路中顶树突的活动增强。在被视为大脑皮质功能单元的皮质微柱的总体背景下,研究了这两种脑结构的解剖学和功能特性。描述了微柱的两个主要回路:轴回路,它维持长时间的活动并产生我们的感官印象;壳回路,它执行输入输出处理并产生识别、分类和想法。顶树突在轴回路中发挥作用以稳定神经活动,从而使意识印象能够稳定并长时间持续。为了理解主观印象的意识方面可能如何与顶树突活动相关,我们研究了电荷沿顶树突移动时电场和磁场的特性。这里将意识的物理相关物视为沿着活跃顶树突表面内外相对强烈的电磁场。