Reconstructing fMRI BOLD signals arising from cerebellar granule neurons - comparing GLM and balloon models

Chaitanya Medini, G. Naldi, B. Nair, E. D’Angelo, S. Sunitha Diwakar
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引用次数: 1

Abstract

Understanding the relationship between fMRI BOLD and underlying neuronal activity has been crucial to connect circuit behavior to cognitive functions. In this paper, we modeled fMRI BOLD reconstructions with general linear model and balloon modeling using biophysical models of rat cerebellum granular layer and stimuli spike trains of various response times. Linear convolution of the hemodynamic response function with the known spiking information reconstructed activity similar to experimental BOLD-like signals with the limitation of short stimuli trains. Balloon model through Volterra kernels gave seemingly similar results to that of general linear model. Our main goal in this study was to understand the activity role of densely populated clusters through BOLD-like reconstructions given neuronal responses and by varying response times for the whole stimulus duration.
重建小脑颗粒神经元产生的fMRI BOLD信号——比较GLM和球囊模型
了解fMRI BOLD与潜在神经元活动之间的关系对于将回路行为与认知功能联系起来至关重要。在本文中,我们利用大鼠小脑颗粒层的生物物理模型和不同反应时间的刺激峰列,用一般线性模型和球囊模型对fMRI BOLD重建进行了建模。血液动力学响应函数与已知尖峰信息的线性卷积重建了类似于实验类bold信号的活动,但受短刺激序列的限制。通过Volterra核的气球模型得到了与一般线性模型相似的结果。在这项研究中,我们的主要目标是通过在整个刺激持续时间内对神经元的反应和不同的反应时间进行类似bold的重建,来了解密集群集的活动作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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