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Feedback to distal dendrites links fMRI signals to neural receptive fields in a spiking network model of the visual cortex

机译:对远端树突的反馈将fMRI信号链接到视觉皮层突刺网络模型中的神经感受野

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The blood oxygenation level-dependent (BOLD) response has been strongly associated with neuronal activity in the brain. However, some neuronal tuning properties are consistently different from the BOLD response. We studied the spatial extent of neural and hemodynamic responses in the primary visual cortex, where the BOLD responses spread and interact over much longer distances than the small receptive fields of individual neurons would predict. Our model shows that a feedforward-feedback loop between V1 and a higher visual area can account for the observed spread of the BOLD response. In particular, anisotropic landing of inputs to compartmental neurons were necessary to account for the BOLD signal spread, while retaining realistic spiking responses. Our work shows that simple dendrites can separate tuning at the synapses and at the action potential output, thus bridging the BOLD signal to the neural receptive fields with high fidelity.
机译:血液氧合水平依赖性(BOLD)反应与大脑神经元活动密切相关。但是,某些神经元调节特性始终不同于BOLD响应。我们研究了主要视觉皮层中神经和血液动力学反应的空间范围,其中BOLD反应比单个神经元的小感受野预测的传播和相互作用的距离更长。我们的模型表明,V1和较高的可视区域之间的前馈-反馈回路可以解释观察到的BOLD响应范围。特别是,在保持现实的尖峰响应的同时,输入到隔室神经元的各向异性着陆对于解决BOLD信号传播是必要的。我们的工作表明,简单的树突可以将突触和动作电位的输出分开,从而将BOLD信号以高保真度桥接到神经感受野。

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