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分布校正的降噪主成分分析(NORDIC)可改善啮齿动物和人类功能磁共振成像环境下的脑活动检测。

NOise Reduction with DIstribution Corrected (NORDIC) principal component analysis improves brain activity detection across rodent and human functional MRI contexts.

作者信息

Chan Russell W, Hamilton-Fletcher Giles, Edelman Bradley J, Faiq Muneeb A, Sajitha Thajunnisa A, Moeller Steen, Chan Kevin C

机构信息

Department of Ophthalmology, New York University Grossman School of Medicine, New York, NY, United States.

Neuroscience Institute, New York University Grossman School of Medicine, New York, NY, United States.

出版信息

Imaging Neurosci (Camb). 2024 Oct 24;2:1-18. doi: 10.1162/imag_a_00325. eCollection 2024 Oct 1.

Abstract

NOise Reduction with DIstribution Corrected (NORDIC) principal component analysis (PCA) has been shown to selectively suppress thermal noise and improve the temporal signal-to-noise ratio (tSNR) in human functional magnetic resonance imaging (fMRI). However, the feasibility to improve data quality for rodent fMRI using NORDIC PCA remains uncertain. NORDIC PCA may also be particularly beneficial for improving topological brain mapping, as conventional mapping requires precise spatiotemporal signals from large datasets (ideally ~1 hour acquisition) for individual representations. In this study, we evaluated the effects of NORDIC PCA compared with "Standard" processing in various rodent fMRI contexts that range from task-evoked optogenetic fMRI to resting-state fMRI. We also evaluated the effects of NORDIC PCA on human resting-state and retinotopic mapping fMRI via population receptive field (pRF) modeling. In rodent optogenetic fMRI, apart from doubling the tSNR, NORDIC PCA resulted in a larger number of activated voxels and a significant decrease in the variance of evoked brain responses without altering brain morphology. In rodent resting-state fMRI, we found that NORDIC PCA induced a nearly threefold increase in tSNR and preserved task-free relative cerebrovascular reactivity (rCVR) across cortical depth. NORDIC PCA further improved the detection of TGN020-induced aquaporin-4 inhibition on rCVR compared with Standard processing without NORDIC PCA. NORDIC PCA also increased the tSNR for both human resting-state and pRF fMRI, and for the latter also increased activation cluster sizes while retaining retinotopic organization. This suggests that NORDIC PCA preserves the spatiotemporal precision of fMRI signals needed for pRF analysis, and effectively captures small activity changes with high sensitivity. Taken together, these results broadly demonstrate the value of NORDIC PCA for the enhanced detection of neural dynamics across various rodent and human fMRI contexts. This can in turn play an important role in improving fMRI image quality and sensitivity for translational and preclinical neuroimaging research.

摘要

分布校正的降噪主成分分析(NORDIC PCA)已被证明能在人类功能磁共振成像(fMRI)中选择性地抑制热噪声并提高时间信噪比(tSNR)。然而,使用NORDIC PCA改善啮齿动物fMRI数据质量的可行性仍不确定。NORDIC PCA对于改善拓扑脑图谱可能也特别有益,因为传统图谱绘制需要来自大型数据集(理想情况下采集约1小时)的精确时空信号以进行个体表征。在本研究中,我们评估了在从任务诱发的光遗传学fMRI到静息态fMRI的各种啮齿动物fMRI情境下,NORDIC PCA与“标准”处理相比的效果。我们还通过群体感受野(pRF)建模评估了NORDIC PCA对人类静息态和视网膜拓扑图谱fMRI的影响。在啮齿动物光遗传学fMRI中,除了使tSNR翻倍外,NORDIC PCA还导致更多的激活体素,并且诱发的脑反应方差显著降低,同时不改变脑形态。在啮齿动物静息态fMRI中,我们发现NORDIC PCA使tSNR增加了近三倍,并在整个皮质深度保留了无任务相对脑血管反应性(rCVR)。与不使用NORDIC PCA的标准处理相比,NORDIC PCA进一步改善了对TGN020诱导的水通道蛋白4抑制对rCVR的检测。NORDIC PCA还增加了人类静息态和pRF fMRI的tSNR,对于后者还增加了激活簇大小,同时保留了视网膜拓扑组织。这表明NORDIC PCA保留了pRF分析所需的fMRI信号的时空精度,并以高灵敏度有效地捕捉小的活动变化。综上所述,这些结果广泛证明了NORDIC PCA在增强检测各种啮齿动物和人类fMRI情境下神经动力学方面的价值。这反过来可以在提高fMRI图像质量和灵敏度以用于转化和临床前神经成像研究中发挥重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7e23/11506209/8bab86e6cdac/imag_a_00325_fig1.jpg

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