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器官性脑模型的功能意义。

Functional Implications of the Prosomeric Brain Model.

机构信息

Department Human Anatomy and Psychobiology and IMIB-Arrixaca (Murcia Institute for Biomedical Research), University of Murcia, LAIB Building, Avenida Buenavista s/n, El Palmar, 30120 Murcia, Spain.

出版信息

Biomolecules. 2024 Mar 11;14(3):331. doi: 10.3390/biom14030331.

Abstract

Brain models present a viewpoint on the fundamental structural components of the brain and their mutual organization, generally relative to a particular concept of the brain axis. A model may be based on adult brain structure or on developmental morphogenetic aspects. Brain models usually have functional implications, depending on which functional properties derive from the postulated organization. This essay examines the present scenario about brain models, emphasizing the contrast between columnar or other longitudinal models and transverse subdivisional neuromeric models. In each case, the main functional implications and apparent problems are explored and commented. Particular attention is given to the modern molecularly based 'prosomeric model', which postulates a set of 20 transverse prosomeres as the developmental units that serve to construct all the cerebral parts and the particular typology of many different neuronal populations within the forebrain and the hindbrain, plus a number of additional spinal cord units. These metameric developmental units (serially repeated, but with unique molecular profiles) confer to this model remarkable functional properties based mainly on its multiplicity and modularity. Many important brain functions can be decomposed into subfunctions attended to by combined sets of neuronal elements derived from different neuromeres. Each neuromere may participate in multiple functions. Most aspects related to creation of precise order in neural connections (axonal navigation and synaptogenesis) and function is due to the influence of neuromeric anteroposterior and dorsoventral positional information. Research on neuromeric functionality aspects is increasing significantly in recent times.

摘要

脑模型提供了一种观点,即大脑的基本结构成分及其相互组织,通常与特定的大脑轴概念有关。模型可以基于成人大脑结构,也可以基于发育形态发生方面。脑模型通常具有功能意义,这取决于假定的组织来自哪些功能特性。本文考察了当前的脑模型情况,强调了柱状或其他纵向模型与横向神经节模型之间的对比。在每种情况下,都探讨和评论了主要的功能意义和明显的问题。特别关注现代基于分子的“节段模型”,该模型假设了一组 20 个横向节段作为发育单位,用于构建大脑所有部分以及前脑和后脑内许多不同神经元群体的特定类型,外加一些额外的脊髓单位。这些分节发育单位(连续重复,但具有独特的分子特征)赋予该模型基于其多样性和模块化的显著功能特性。许多重要的大脑功能可以分解为来自不同神经节的神经元元素组合所关注的子功能。每个神经节都可能参与多种功能。与神经连接的精确顺序的创建相关的大多数方面(轴突导航和突触发生)和功能归因于神经节前后和背腹位置信息的影响。最近,关于神经节功能方面的研究显著增加。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/afd4/10968462/cf028fe80bec/biomolecules-14-00331-g002.jpg

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