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Quantum Processes and Functional Geometry:New Perspectives in Brain Dynamics

机译:量子过程和功能几何:脑动力学的新观点

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The recent controversy of applicability of quantum formalism to brain dynamics has been critically analyzed.PELLIONISZ and LLINAS (1982) proposed a functional geometry to understand the internal representation of the events associated to the space-timing of moving objects in the external world.The joint representation of space and time associated to an event as understood by the brain is shown to be different from that understood in modern physics.This indicates that the four-dimensional geometry i.e.Minkowski geometry is not an appropriate description for the internal world.If it is to be the case,the applicability of any kind of quantum field theory in modeling brain function has to be analyzed with great care.Here,the issue of applicability of quantum mechanics to brain function has been discussed in general,from an anatomical perspective and then particular emphasis has been given to the applicability of quantum field theory.
机译:最近对有关量子形式论在脑动力学中的适用性的争议进行了批判性分析.PELLIONISZ和LLINAS(1982)提出了一种函数几何学,以理解与外部世界中移动物体的空间定时相关的事件的内部表示形式。大脑所理解的与事件相关的空间和时间的表示形式与现代物理学中所理解的有所不同,这表明四维几何体即Minkowski几何体不是内部世界的合适描述。因此,必须认真分析任何种类的量子场论在脑功能建模中的适用性。在此,从解剖学的角度对量子力学对脑功能的适用性问题进行了一般性的讨论,然后特别强调了量子场论的适用性。

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