{"title":"大脑皮层中心脑相互作用的统一假说。","authors":"J Eccles","doi":"10.1098/rspb.1990.0047","DOIUrl":null,"url":null,"abstract":"<p><p>A brief introduction to the brain-mind problem leads on to a survey of the neuronal structure of the cerebral cortex. It is proposed that the basic receptive units are the bundles or clusters of apical dendrites of the pyramidal cells of laminae V and III-II as described by Fleischhauer and Peters and their associates. There are up to 100 apical dendrites in these receptive units, named dendrons. Each dendron would have an input of up to 100,000 spine synapses. There are about 40 million dendrons in the human cerebral cortex. A study of the influence of mental events on the brain leads to the hypothesis that all mental events, the whole of the World 2 of Popper, are composed of mental units, each carrying its own characteristic mental experience. It is further proposed that each mental unit, named psychon, is uniquely linked to a dendron. So the mind-brain problem reduces to the interaction between a dendron and its psychon for all the 40 million linked units. In my 1986 paper (Proc. R. Soc. Lond. B 227, 411-428) on the mind-brain problem, there was developed the concept that the operation of the synaptic microsites involved displacement of particles so small that they were within range of the uncertainty principle of Heisenberg. The psychon-dendron interaction provides a much improved basis for effective selection by a process analogous to a quantal probability field. In the fully developed hypothesis psychons act on dendrons in the whole world of conscious experiences and dendrons act on psychons in all perceptions and memories. It is shown how these interactions involve no violation of the conservation laws. There are great potentialities of these unitary concepts, for example as an explanation of the global nature of a visual experience from moment to moment. It would seem that there can be psychons not linked to dendrons, but only to other psychons, creating what we may call a psychon world.</p>","PeriodicalId":54561,"journal":{"name":"Proceedings of the Royal Society of London Series B-Containing Papers of Abiological Character","volume":"240 1299","pages":"433-51"},"PeriodicalIF":0.0000,"publicationDate":"1990-06-22","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://sci-hub-pdf.com/10.1098/rspb.1990.0047","citationCount":"141","resultStr":"{\"title\":\"A unitary hypothesis of mind-brain interaction in the cerebral cortex.\",\"authors\":\"J Eccles\",\"doi\":\"10.1098/rspb.1990.0047\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><p>A brief introduction to the brain-mind problem leads on to a survey of the neuronal structure of the cerebral cortex. It is proposed that the basic receptive units are the bundles or clusters of apical dendrites of the pyramidal cells of laminae V and III-II as described by Fleischhauer and Peters and their associates. There are up to 100 apical dendrites in these receptive units, named dendrons. Each dendron would have an input of up to 100,000 spine synapses. There are about 40 million dendrons in the human cerebral cortex. A study of the influence of mental events on the brain leads to the hypothesis that all mental events, the whole of the World 2 of Popper, are composed of mental units, each carrying its own characteristic mental experience. It is further proposed that each mental unit, named psychon, is uniquely linked to a dendron. So the mind-brain problem reduces to the interaction between a dendron and its psychon for all the 40 million linked units. In my 1986 paper (Proc. R. Soc. Lond. B 227, 411-428) on the mind-brain problem, there was developed the concept that the operation of the synaptic microsites involved displacement of particles so small that they were within range of the uncertainty principle of Heisenberg. The psychon-dendron interaction provides a much improved basis for effective selection by a process analogous to a quantal probability field. In the fully developed hypothesis psychons act on dendrons in the whole world of conscious experiences and dendrons act on psychons in all perceptions and memories. It is shown how these interactions involve no violation of the conservation laws. There are great potentialities of these unitary concepts, for example as an explanation of the global nature of a visual experience from moment to moment. 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引用次数: 141
摘要
对大脑-思维问题的简要介绍引出了对大脑皮层神经元结构的调查。Fleischhauer和Peters及其同事提出,基本的接受单位是V层和III-II层锥体细胞的顶树突束或簇。在这些接受单位中有多达100个顶端树突,称为树突。每个树突将有多达10万个脊椎突触的输入。人类大脑皮层中大约有4000万个树突。一项关于心理事件对大脑影响的研究得出了这样的假设:所有的心理事件,整个波普尔的世界2,都是由心理单元组成的,每个单元都有自己独特的心理体验。它进一步提出,每一个精神单位,称为心理,是唯一连接到一个树突。所以心智-大脑的问题简化为树突和它的心理之间的相互作用,涉及到所有4000万个相连的单位。在我1986年的论文(Proc. R. Soc。Lond。(B . 227, 411-428)在心脑问题上,发展了这样一个概念,即突触微位点的操作涉及到粒子的位移,这些粒子非常小,在海森堡测不准原理的范围内。心理-树突相互作用为通过类似于量子概率场的过程进行有效选择提供了一个改进的基础。在充分发展的假说中,在整个意识经验世界中,心理作用于树突,而树突作用于所有知觉和记忆中的心理。它显示了这些相互作用如何不涉及违反守恒定律。这些单一的概念具有巨大的潜力,例如,可以解释瞬间视觉体验的全局性。似乎有些心灵与树突没有联系,而只与其他心灵有联系,创造了我们所谓的心灵世界。
A unitary hypothesis of mind-brain interaction in the cerebral cortex.
A brief introduction to the brain-mind problem leads on to a survey of the neuronal structure of the cerebral cortex. It is proposed that the basic receptive units are the bundles or clusters of apical dendrites of the pyramidal cells of laminae V and III-II as described by Fleischhauer and Peters and their associates. There are up to 100 apical dendrites in these receptive units, named dendrons. Each dendron would have an input of up to 100,000 spine synapses. There are about 40 million dendrons in the human cerebral cortex. A study of the influence of mental events on the brain leads to the hypothesis that all mental events, the whole of the World 2 of Popper, are composed of mental units, each carrying its own characteristic mental experience. It is further proposed that each mental unit, named psychon, is uniquely linked to a dendron. So the mind-brain problem reduces to the interaction between a dendron and its psychon for all the 40 million linked units. In my 1986 paper (Proc. R. Soc. Lond. B 227, 411-428) on the mind-brain problem, there was developed the concept that the operation of the synaptic microsites involved displacement of particles so small that they were within range of the uncertainty principle of Heisenberg. The psychon-dendron interaction provides a much improved basis for effective selection by a process analogous to a quantal probability field. In the fully developed hypothesis psychons act on dendrons in the whole world of conscious experiences and dendrons act on psychons in all perceptions and memories. It is shown how these interactions involve no violation of the conservation laws. There are great potentialities of these unitary concepts, for example as an explanation of the global nature of a visual experience from moment to moment. It would seem that there can be psychons not linked to dendrons, but only to other psychons, creating what we may call a psychon world.