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The secret connections of the brain: a connectomic reserve for neuroplasticity?

神经科学 连合 神经可塑性 集合(抽象数据类型) 生物神经网络 神经元回路 异位表达 认知 脑功能 神经网络 功能(生物学) 索马 心理学 生物 计算机科学 ATF3 医学 人脑 细胞功能 大脑定位
作者
Roberto Lent,Fernanda Tovar‐Moll,Diego Szczupak
出处
期刊:Brain [Oxford University Press]
卷期号:149 (7): 2273-2285 被引量:1
标识
DOI:10.1093/brain/awag082
摘要

Here, we propose a new concept linked to neuroplasticity and cognitive reserve: 'Connectomic reserve'. It is suggested and discussed as a hypothesis, aiming to stimulate experimental testing, taking as an example the exuberant circuits formed during development by commissural neurons and their projections. Upon reviewing the developmental strategies of the formation of callosal circuits, from axonal emission by cortical cell bodies to the choice of trajectories within the ipsi and contralateral hemispheres, we identified the formation of many ectopic and heterotopic projections. Ectopic projections were first described in cases of congenital malformations but later shown to exist in typical adult brains as well. Heterotopic projections are usually presumed to be eliminated and give way to the more restricted set of connections of adult brains. However, many experiments have shown that they, in fact, remain 'hidden' in the brain throughout life in typical subjects of many species. Morphological shaping (pruning or enlargement) and physiological modulation (inhibition or enhancement) of these circuits would be resources for optimizing the function of the alternative bundles and preterminal arbors typical of neuroplasticity. The former mechanisms would take place during development, the latter in adulthood. 'Connectomic reserve', thus, would consist of a pervasive set of connections broadly distributed throughout the brain, susceptible to selective neuroplastic shaping or modulation depending on the requirements of the external or internal environment. Of course, being a hypothesis, this requires experimental testing in brain circuits other than commissural tracts and functional validation using emerging high-resolution imaging techniques.
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