自然的大脑和积极的,情绪化的头脑

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引用次数: 0

摘要

我们知道大脑是思想的所在地。构建意识思维的还原模型需要指出思维从自然大脑中发生的生物物理过程中产生的规律。因为在第一部分中,作者提出了参考想象的神经网络的理想结构的理论模型,我们现在有了更容易的任务,因为我们需要在生物的大脑中指出那些在功能上符合我们假设的过程。这种适宜性并不能由大脑特定部位发生的已知过程来保证。初级感觉区的作用是对具有特定形态的感觉刺激的详细分析。它们的结果是对所有有用刺激的意义进行分析,并在大脑皮层的各个部分对其进行解释。个体皮质区域的高度专门化是惊人的,这是大脑进化发展的结果。新的大脑结构,如新的大脑皮层,被添加到现有结构的外围,提高了它们在更苛刻的环境中的表现,而其他智能生物则在那里狼吞虎咽。但即使我们知道大脑的组织,我们也很难理解它是如何工作的。大脑中的神经元是如何协同工作来创造意识的。为了发现大脑中有效的功能过程,人们需要了解星形细胞神经网络的生物物理特性。在本章中,作者提出一些神经电动力学的概念、神经和突触发生的现象以及突触耦合可以解释分类、概括和联想的过程,这些过程导致了广泛的、半分层的大脑结构的形成,这些结构构成了感知、物体和现象的神经表征。自然大脑满足具体化条件。它们是进化的产物,所以它们有意向性,有自己的目标和需求。所以他们可以自然地表现出情感、动力和本能,激励他们采取行动。这决定了构建心理表征的本质。它们是心理学研究的主题,它显示了智力活动领域的痛苦和快乐的动机,以及命题和现象意识领域的好奇心和理解需求的动机。他们把有机体感受疼痛的方式描述为基本平等。解释了其他感质对“感觉如何”的作用及其主观特征,并表征了它们的种间特异性。在本章中,作者提出了一种基本的生物物理现象,即意识的闪现。这种现象是在学习过程中形成的突触耦合。他们认为这种现象的流是意识的基础。他们还指出,星形细胞神经网络满足产生意识感觉所需的所有条件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Natural Brains and Motivated, Emotional Mind
We know that the brain is the seat of the mind. Constructing the reductive model of the conscious mind requires an indication of the laws according to which the mind emerges from biophysical processes occurring in natural brains. Because in Part I, the authors presented the theoretical model referring to the ideal structures of the imagined neural network, we now have easier task, because we need to indicate in the brains of the living beings those processes that functionally correspond to our postulates. Such suitability is not guaranteed by known processes occurring in specialized parts of the brain. The role of the primary sensory areas is a detailed analysis of sensory stimuli with specific modality. They result in analysis of the meaning of all useful stimuli and their interpretation used in various parts of the cortex. The high specialization of individual cortex areas is striking and are the result of evolutionary development of the brain. New brain structures, such as the new cortex, were added on the outskirts of existing structures, improving their performance in the ever more demanding environments, where other intelligent beings ravened. But even as we know the brain organization, we struggle to understand how it works. How neurons that make the brain work together to create the conscious mind. To discover functionally effective processes in the brain, one need to reach for the biophysical properties of the astrocyt-neural network. In this chapter, the authors suggest that some concepts of neuro-electro-dynamics and the phenomena of neuro- and synapto-genesis as well as synaptic couplings may explain the processes of categorization, generalization and association leading to the formation of extensive, semihierarchical brain structures constituting neural representations of perceptions, objects and phenomena. Natural brains meet the embodiment condition. They are products of evolution, so they have intentionality, their own goals and needs. So they can naturally show emotions, drives and instincts that motivate to act. This determines the nature of constructed mental representations. They are the subject of psychological research, which shows the motivation of pain and pleasure in the field of intelligent activities, as well as the motivation of curiosity and the need for understanding in the domain of propositional and phenomenal consciousness. They describe the way pain is felt in organisms as basic quale. The role of other qualia for “how-it-is-like to feel something” and their subjective character was explained, as well as their interspecies specificity was characterized. In this chapter, the authors present an elementary biophysical phenomenon, that is a flash of consciousness. This phenomenon is synaptic coupling formed in the course of learning. They justify that the stream of such phenomena is the foundation of consciousness. They also point out that the astrocytic-neural network meets all the conditions required to generate conscious sensations.
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