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首页> 外文期刊>BioSystems >Computational modeling of an early evolutionary stage of the nervous system.
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Computational modeling of an early evolutionary stage of the nervous system.

机译:神经系统早期进化阶段的计算模型。

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摘要

The object of this work is to create a computational model that examines the early evolution of the nervous system in relation to adaptive behavior. The main questions are: how did the nervous system and the most primitive forms of intelligence came into being, how a system can be organized during evolution that is able to ensure the adaptive behavior of a being, what are the basic rules of construction that are sufficient to create a workable nervous system without specifying the details of the construction. The biological bases of the model are the phyla Cnidaria and Porifera as they stand at the beginning of the genesis of nervous organization. We found in our model that in a network of homogenous epithelial-like cells, which is considered the starting point of the genesis of the nervous system, the changes that have positive influence on the behavior are those that make the spreading of the electric potential more efficient. It can cause the increase of the effectiveness of the behavior by itself without creating new specific cell-types. There are some alternatives to increasing the effectiveness of spreading of stimuli, for example increasing the value of biophysical parameters of the cells, or increasing the density of nerve cells and the number of synapses. If during the evolution a sort of cell comes into being that is able to conduct electrical stimuli--even in a rudimentary way--it can increase the adaptivity of behavior by itself without the need for specific information of how to organize the construction of this system.
机译:这项工作的目的是创建一个计算模型,该模型检查与适应行为有关的神经系统的早期演变。主要问题是:神经系统和最原始的智力形式是如何形成的,在进化过程中如何组织系统以确保人的适应行为,构造的基本规则是什么?足以在不指定构造细节的情况下创建可行的神经系统。该模型的生物学基础是Cindaria和Porifera,它们位于神经组织起源的起点。我们在模型中发现,在被视为神经系统起源的同质上皮样细胞网络中,对行为产生积极影响的变化是那些使电势扩散更多的变化高效。它本身可以导致行为有效性的提高,而无需创建新的特定单元格类型。存在增加刺激扩散的有效性的一些替代方案,例如增加细胞的生物物理参数的值或增加神经细胞的密度和突触的数量。如果在进化过程中形成了一种能够传导电刺激的细胞,即使它只是一种基本的方式,它也可以自己提高行为的适应性,而无需了解如何组织这种行为的具体信息。系统。

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