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High spatial correspondence at a columnar level between activation and resting state fMRI signals and local field potentials

机译:激活和静止状态fMRI信号与局部场电位之间在柱状水平上具有高空间对应性

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摘要

Although blood oxygenation level-dependent (BOLD) fMRI has been widely used to map brain responses to external stimuli and to delineate functional circuits at rest, the extent to which BOLD signals correlate spatially with underlying neuronal activity, the spatial relationships between stimulus-evoked BOLD activations and local correlations of BOLD signals in a resting state, and whether these spatial relationships vary across functionally distinct cortical areas are not known. To address these critical questions, we directly compared the spatial extents of stimulated activations and the local profiles of intervoxel resting state correlations for both high-resolution BOLD at 9.4 T and local field potentials (LFPs), using 98-channel microelectrode arrays, in functionally distinct primary somatosensory areas 3b and 1 in nonhuman primates. Anatomic images of LFP and BOLD were coregistered within 0.10 mm accuracy. We found that the point spread functions (PSFs) of BOLD and LFP responses were comparable in the stimulus condition, and both estimates of activations were slightly more spatially constrained than local correlations at rest. The magnitudes of stimulus responses in area 3b were stronger than those in area 1 and extended in a medial to lateral direction. In addition, the reproducibility and stability of stimulus-evoked activation locations within and across both modalities were robust. Our work suggests that the intrinsic resolution of BOLD is not a limiting feature in practice and approaches the intrinsic precision achievable by multielectrode electrophysiology.
机译:尽管血液氧合水平依赖性(BOLD)功能磁共振成像已广泛用于绘制大脑对外部刺激的反应并描述静止时的功能电路,但BOLD信号的程度在空间上与潜在的神经元活动,刺激诱发的BOLD之间的空间关系相关尚不清楚静止状态下BOLD信号的激活和局部相关性,以及这些空间关系是否在功能上不同的皮质区域中变化。为了解决这些关键问题,我们使用功能于98通道的微电极阵列,直接比较了9.4 T的高分辨率BOLD和局部场电势(LFP)的刺激激活的空间范围和体素静息状态相关性的局部分布非人类灵长类动物的两个不同的主要体感区域3b和1。 LFP和BOLD的解剖图像在0.10 mm精度内共配准。我们发现,在刺激条件下,BOLD和LFP反应的点扩散函数(PSF)具有可比性,并且两种估计的激活作用都比静止时的局部相关作用受到更多的空间限制。区域3b中的刺激响应幅度比区域1中的强,并在内侧到外侧方向上扩展。此外,两种模式之内和之间的刺激诱发激活位置的重现性和稳定性均很强。我们的工作表明,BOLD的内在分辨率在实践中并不是一个限制功能,它接近于多电极电生理学所能达到的内在精度。

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