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A Quantum Neurological Model of Perception-Cognition and Awareness in Ambiguous Figures and the Case of the Dalmatian Dog

机译:模棱两可的人物和达尔马提亚狗的知觉-认知和意识的量子神经模型

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The present paper has mainly the aim to formulate a quantum neurological model of brain dynamics during perception and cognition of ambiguous figures here including the case of the Dalmatian dog. First of all, we summarize our previous experimental and theoretical studies, evidencing as the basic conceptual foundations of quantum mechanics enter in a decisive manner in explaining the basic functions of brain dynamics at perceptive and cognitive level and at the level of our consciousness. This is done in detail in Sections 2 and 3 where we discuss also the role of the so called quantum interference effect and we include here the results of an our recent experiment confirming the role of quantum theory and of its quantum interference effect also at perceptive-cognitive and awareness levels. In Section 4, following our previous study, we consider the so called Mach-Zehnder interferometer. It is a physical device that is employed in quantum mechanical experiments in order to analyze such quantum interference effect. Soon after the discussion of this device, we proceed with the elaboration of a detailed quantum neurological model in the sense that we consider the brain regions identified in V1; V2/V3/V4 and A20 and we obtain that they may behave just as the beam splitters involved in the Mach-Zehnder quantum mechanical interferometer. In this manner, we formulate a model of V1; V2/V3/V4, A20 brain dynamics as a Mach-Zehnder interferometer and such model delineates a proposed neurological mechanism explaining perception-cognition and awareness in humans under the input of ambiguous figures and in the particular case of the Dalmatian dog.
机译:本文的主要目的是在这里对模糊人物(包括达尔马提亚狗的情况)的感知和认知过程中,建立大脑动力学的量子神经模型。首先,我们总结了以前的实验和理论研究,证明了量子力学的基本概念基础以决定性的方式进入了解释在知觉和认知水平以及我们的意识水平上脑动力学的基本功能。在第2节和第3节中详细介绍了这一点,我们在这里还讨论了所谓的量子干涉效应的作用,并且在这里包括了我们最近的实验结果,该实验证实了量子理论的作用及其在感知性上的量子干涉效应。认知和意识水平。在前面的研究之后的第4节中,我们考虑了所谓的Mach-Zehnder干涉仪。它是一种物理设备,用于量子力学实验,以分析这种量子干涉效应。在讨论了该装置后不久,就我们考虑到在V1中识别出的大脑区域的意义而言,我们将着手详细的量子神经学模型的建立。 V2 / V3 / V4和A20,我们得到它们的行为就像Mach-Zehnder量子机械干涉仪中涉及的分束器一样。通过这种方式,我们建立了一个V1模型。作为Mach-Zehnder干涉仪的V2 / V3 / V4,A20脑动力学,这种模型描绘了一种拟议的神经机制,解释了在模棱两可的数字输入下(在达尔马提亚狗的特定情况下)人类对感知-认知和意识的理解。

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