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在灌注升高期间,对激活的绝对脑血流量反应得以保留:对神经血管耦合测量的启示。

The absolute CBF response to activation is preserved during elevated perfusion: Implications for neurovascular coupling measures.

作者信息

Whittaker Joseph R, Driver Ian D, Bright Molly G, Murphy Kevin

机构信息

Cardiff University Brain Research Imaging Centre (CUBRIC), School of Psychology, Cardiff University, CF10 3AT Cardiff, UK.

Cardiff University Brain Research Imaging Centre (CUBRIC), School of Psychology, Cardiff University, CF10 3AT Cardiff, UK; Sir Peter Mansfield Imaging Centre, Clinical Neurology, School of Medicine, University of Nottingham, Nottingham, UK.

出版信息

Neuroimage. 2016 Jan 15;125:198-207. doi: 10.1016/j.neuroimage.2015.10.023. Epub 2015 Oct 23.

Abstract

Functional magnetic resonance imaging (fMRI) techniques in which the blood oxygenation level dependent (BOLD) and cerebral blood flow (CBF) response to a neural stimulus are measured, can be used to estimate the fractional increase in the cerebral metabolic rate of oxygen consumption (CMRO2) that accompanies evoked neural activity. A measure of neurovascular coupling is obtained from the ratio of fractional CBF and CMRO2 responses, defined as n, with the implicit assumption that relative rather than absolute changes in CBF and CMRO2 adequately characterise the flow-metabolism response to neural activity. The coupling parameter n is important in terms of its effect on the BOLD response, and as potential insight into the flow-metabolism relationship in both normal and pathological brain function. In 10 healthy human subjects, BOLD and CBF responses were measured to test the effect of baseline perfusion (modulated by a hypercapnia challenge) on the coupling parameter n during graded visual stimulation. A dual-echo pulsed arterial spin labelling (PASL) sequence provided absolute quantification of CBF in baseline and active states as well as relative BOLD signal changes, which were used to estimate CMRO2 responses to the graded visual stimulus. The absolute CBF response to the visual stimuli were constant across different baseline CBF levels, meaning the fractional CBF responses were reduced at the hyperperfused baseline state. For the graded visual stimuli, values of n were significantly reduced during hypercapnia induced hyperperfusion. Assuming the evoked neural responses to the visual stimuli are the same for both baseline CBF states, this result has implications for fMRI studies that aim to measure neurovascular coupling using relative changes in CBF. The coupling parameter n is sensitive to baseline CBF, which would confound its interpretation in fMRI studies where there may be significant differences in baseline perfusion between groups. The absolute change in CBF, as opposed to the change relative to baseline, may more closely match the underlying increase in neural activity in response to a stimulus.

摘要

功能磁共振成像(fMRI)技术通过测量血液氧合水平依赖(BOLD)信号和脑血流量(CBF)对神经刺激的反应,可用于估计伴随诱发神经活动的脑氧代谢率(CMRO2)的分数增加。通过分数CBF和CMRO2反应的比率(定义为n)获得神经血管耦合的测量值,隐含的假设是CBF和CMRO2的相对而非绝对变化足以表征对神经活动的血流-代谢反应。耦合参数n对BOLD反应的影响很重要,并且可能为正常和病理脑功能中的血流-代谢关系提供潜在的见解。在10名健康人类受试者中,测量了BOLD和CBF反应,以测试基线灌注(通过高碳酸血症激发进行调节)对分级视觉刺激期间耦合参数n的影响。双回波脉冲动脉自旋标记(PASL)序列提供了基线和活跃状态下CBF的绝对定量以及相对BOLD信号变化,这些用于估计对分级视觉刺激的CMRO2反应。对视觉刺激的绝对CBF反应在不同的基线CBF水平上是恒定的,这意味着在高灌注基线状态下分数CBF反应降低。对于分级视觉刺激,在高碳酸血症诱导的高灌注期间n值显著降低。假设两种基线CBF状态下对视觉刺激的诱发神经反应相同,这一结果对旨在使用CBF相对变化测量神经血管耦合的fMRI研究具有启示意义。耦合参数n对基线CBF敏感,这将混淆其在fMRI研究中的解释,因为不同组之间的基线灌注可能存在显著差异。与相对于基线的变化相反,CBF的绝对变化可能更紧密地匹配对刺激的神经活动的潜在增加。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b572/4692513/2d1fee79a02b/gr1.jpg

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