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静息态连接性与血流关系的空间异质性:药理学研究的重要考量因素。

Spatial heterogeneity of the relation between resting-state connectivity and blood flow: an important consideration for pharmacological studies.

作者信息

Khalili-Mahani Najmeh, van Osch Matthias J, de Rooij Mark, Beckmann Christian F, van Buchem Mark A, Dahan Albert, van Gerven Johannes M, Rombouts Serge A R B

机构信息

Institute of Psychology, Leiden University, Leiden, The Netherlands; Department of Radiology, Leiden University Medical Center (LUMC), Leiden, The Netherlands; Leiden Institute for Brain and Cognition (LIBC), Leiden University, Leiden, The Netherlands.

出版信息

Hum Brain Mapp. 2014 Mar;35(3):929-42. doi: 10.1002/hbm.22224. Epub 2012 Dec 26.

Abstract

Resting state fMRI (RSfMRI) and arterial spin labeling (ASL) provide the field of pharmacological Neuroimaging tool for investigating states of brain activity in terms of functional connectivity or cerebral blood flow (CBF). Functional connectivity reflects the degree of synchrony or correlation of spontaneous fluctuations--mostly in the blood oxygen level dependent (BOLD) signal--across brain networks; but CBF reflects mean delivery of arterial blood to the brain tissue over time. The BOLD and CBF signals are linked to common neurovascular and hemodynamic mechanisms that necessitate increased oxygen transportation to the site of neuronal activation; however, the scale and the sources of variation in static CBF and spatiotemporal BOLD correlations are likely different. We tested this hypothesis by examining the relation between CBF and resting-state-network consistency (RSNC)--representing average intranetwork connectivity, determined from dual regression analysis with eight standard networks of interest (NOIs)--in a crossover placebo-controlled study of morphine and alcohol. Overall, we observed spatially heterogeneous relations between RSNC and CBF, and between the experimental factors (drug-by-time, time, drug and physiological rates) and each of these metrics. The drug-by-time effects on CBF were significant in all networks, but significant RSNC changes were limited to the sensorimotor, the executive/salience and the working memory networks. The post-hoc voxel-wise statistics revealed similar dissociations, perhaps suggesting differential sensitivity of RSNC and CBF to neuronal and vascular endpoints of drug actions. The spatial heterogeneity of RSNC/CBF relations encourages further investigation into the role of neuroreceptor distribution and cerebrovascular anatomy in predicting spontaneous fluctuations under drugs.

摘要

静息态功能磁共振成像(RSfMRI)和动脉自旋标记(ASL)为药理学神经影像学领域提供了工具,用于从功能连接性或脑血流量(CBF)方面研究脑活动状态。功能连接性反映了跨脑网络的自发波动(主要是血氧水平依赖(BOLD)信号)的同步程度或相关性;而CBF反映了随着时间推移动脉血向脑组织的平均输送量。BOLD和CBF信号与共同的神经血管和血液动力学机制相关联,这些机制需要增加向神经元激活部位的氧气输送;然而,静态CBF的变化规模和来源以及时空BOLD相关性可能不同。我们通过在一项关于吗啡和酒精的交叉安慰剂对照研究中,检查CBF与静息态网络一致性(RSNC)(代表平均网络内连接性,通过对八个标准感兴趣网络(NOIs)进行双回归分析确定)之间的关系来检验这一假设。总体而言,我们观察到RSNC与CBF之间以及实验因素(药物×时间、时间、药物和生理速率)与这些指标中的每一个之间存在空间异质性关系。药物×时间对CBF的影响在所有网络中均显著,但RSNC的显著变化仅限于感觉运动、执行/突显和工作记忆网络。事后体素级统计显示了类似的分离,这可能表明RSNC和CBF对药物作用的神经元和血管终点具有不同的敏感性。RSNC/CBF关系的空间异质性鼓励进一步研究神经受体分布和脑血管解剖结构在预测药物作用下自发波动中的作用。

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