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在初级感觉皮层3b区的计算模型中,兴奋性和抑制性突触强度的突发空间模式驱动躯体定位表征的不连续性及其可塑性。

Emergent Spatial Patterns of Excitatory and Inhibitory Synaptic Strengths Drive Somatotopic Representational Discontinuities and their Plasticity in a Computational Model of Primary Sensory Cortical Area 3b.

作者信息

Grajski Kamil A

机构信息

NuroSci, LLC. West Palm Beach, FL, USA.

出版信息

Front Comput Neurosci. 2016 Jul 25;10:72. doi: 10.3389/fncom.2016.00072. eCollection 2016.

Abstract

Mechanisms underlying the emergence and plasticity of representational discontinuities in the mammalian primary somatosensory cortical representation of the hand are investigated in a computational model. The model consists of an input lattice organized as a three-digit hand forward-connected to a lattice of cortical columns each of which contains a paired excitatory and inhibitory cell. Excitatory and inhibitory synaptic plasticity of feedforward and lateral connection weights is implemented as a simple covariance rule and competitive normalization. Receptive field properties are computed independently for excitatory and inhibitory cells and compared within and across columns. Within digit representational zones intracolumnar excitatory and inhibitory receptive field extents are concentric, single-digit, small, and unimodal. Exclusively in representational boundary-adjacent zones, intracolumnar excitatory and inhibitory receptive field properties diverge: excitatory cell receptive fields are single-digit, small, and unimodal; and the paired inhibitory cell receptive fields are bimodal, double-digit, and large. In simulated syndactyly (webbed fingers), boundary-adjacent intracolumnar receptive field properties reorganize to within-representation type; divergent properties are reacquired following syndactyly release. This study generates testable hypotheses for assessment of cortical laminar-dependent receptive field properties and plasticity within and between cortical representational zones. For computational studies, present results suggest that concurrent excitatory and inhibitory plasticity may underlie novel emergent properties.

摘要

在一个计算模型中,研究了哺乳动物手部初级体感皮层表征中表征不连续性的出现和可塑性的潜在机制。该模型由一个输入晶格组成,该晶格被组织成一个三位的手,向前连接到一个皮层柱晶格,每个皮层柱包含一对兴奋性和抑制性细胞。前馈和侧向连接权重的兴奋性和抑制性突触可塑性通过一个简单的协方差规则和竞争性归一化来实现。分别计算兴奋性和抑制性细胞的感受野特性,并在柱内和柱间进行比较。在手指表征区域内,柱内兴奋性和抑制性感受野范围是同心的、单指的、小的和单峰的。仅在与表征边界相邻的区域,柱内兴奋性和抑制性感受野特性不同:兴奋性细胞感受野是单指的、小的和单峰的;而配对的抑制性细胞感受野是双峰的、双指的和大的。在模拟并指(蹼状指)中,与边界相邻的柱内感受野特性重新组织为表征内类型;并指松解后重新获得不同的特性。这项研究产生了可测试的假设,用于评估皮层层依赖的感受野特性以及皮层表征区域内和之间的可塑性。对于计算研究,目前的结果表明,同时存在的兴奋性和抑制性可塑性可能是新出现特性的基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8423/4958931/69afca537b6c/fncom-10-00072-g0001.jpg

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