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首页> 外文期刊>Biological Cybernetics >Hebbian mechanisms help explain development of multisensory integration in the superior colliculus: a neural network model
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Hebbian mechanisms help explain development of multisensory integration in the superior colliculus: a neural network model

机译:Hebbian机制有助于解释上丘多感官整合的发展:一个神经网络模型

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摘要

The superior colliculus (SC) integrates relevant sensory information (visual, auditory, somatosensory) from several cortical and subcortical structures, to program orientation responses to external events. However, this capacity is not present at birth, and it is acquired only through interactions with cross-modal events during maturation. Mathematical models provide a quantitative framework, valuable in helping to clarify the specific neural mechanisms underlying the maturation of the multisensory integration in the SC. We extended a neural network model of the adult SC (Cuppini et al., Front Integr Neurosci 4:1–15, 2010) to describe the development of this phenomenon starting from an immature state, based on known or suspected anatomy and physiology, in which: (1) AES afferents are present but weak, (2) Responses are driven from non-AES afferents, and (3) The visual inputs have a marginal spatial tuning. Sensory experience was modeled by repeatedly presenting modality-specific and cross-modal stimuli. Synapses in the network were modified by simple Hebbian learning rules. As a consequence of this exposure, (1) Receptive fields shrink and come into spatial register, and (2) SC neurons gained the adult characteristic integrative properties: enhancement, depression, and inverse effectiveness. Importantly, the unique architecture of the model guided the development so that integration became dependent on the relationship between the cortical input and the SC. Manipulations of the statistics of the experience during the development changed the integrative profiles of the neurons, and results matched well with the results of physiological studies.
机译:上丘(SC)集成了来自多个皮质和皮质下结构的相关感官信息(视觉,听觉,体感),以编程对外部事件的定向响应。但是,这种能力在出生时就不存在,只能通过在成熟过程中与交叉模式事件的相互作用来获得。数学模型提供了一个定量框架,对于帮助阐明SC中多感官整合成熟的特定神经机制具有重要价值。我们扩展了成人SC的神经网络模型(Cuppini等人,Front Integr Neurosci 4:1-15,2010),从已知或可疑的解剖学和生理学出发,描述了从不成熟状态开始的这种现象的发展。其中:(1)存在AES传入但较弱;(2)响应由非AES传入驱动;(3)视觉输入具有边际空间调整。感官体验是通过反复呈现特定于模态和跨模态的刺激来建模的。网络中的突触通过简单的Hebbian学习规则进行了修改。这种暴露的结果是,(1)感受野缩小并进入空间记录,(2)SC神经元获得了成人特征的整合特性:增强,抑制和逆向有效性。重要的是,该模型的独特架构指导了开发过程,因此集成度取决于皮层输入与SC之间的关系。在发展过程中对经验统计的操纵改变了神经元的整体分布,其结果与生理学研究的结果非常吻合。

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