首页> 外文期刊>NeuroImage >Regional differences in the coupling of cerebral blood flow and oxygen metabolism changes in response to activation: implications for BOLD-fMRI.
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Regional differences in the coupling of cerebral blood flow and oxygen metabolism changes in response to activation: implications for BOLD-fMRI.

机译:脑血流和氧代谢耦合的区域差异响应激活而改变:对BOLD-fMRI的影响。

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摘要

Functional magnetic resonance imaging (fMRI) based on blood oxygenation level dependent (BOLD) signal changes is a sensitive tool for mapping brain activation, but quantitative interpretation of the BOLD response is problematic. The BOLD response is primarily driven by cerebral blood flow (CBF) changes, but is moderated by M, a scaling parameter reflecting baseline deoxyhemoglobin, and n, the ratio of fractional changes in CBF to cerebral metabolic rate of oxygen consumption (CMRO(2)). We compared M and n between cortical (visual cortex, VC) and subcortical (lentiform nuclei, LN) regions using a quantitative approach based on calibrating the BOLD response with a hypercapnia experiment. Although M was similar in both regions (~5.8%), differences in n (2.21+/-0.03 in VC and 1.58+/-0.03 in LN; Cohen d=1.71) produced substantially weaker (~3.7x) subcortical than cortical BOLD responses relative to CMRO(2) changes. Because of this strong sensitivity to n, BOLD response amplitudes cannot be interpreted as a quantitative reflection of underlying metabolic changes, particularly when comparing cortical and subcortical regions.
机译:基于血液氧合水平依赖性(BOLD)信号变化的功能磁共振成像(fMRI)是绘制大脑激活图的灵敏工具,但是对BOLD反应的定量解释存在问题。 BOLD反应主要由脑血流量(CBF)变化驱动,但受M(反映基线脱氧血红蛋白的比例参数)和n(CBF分数变化与脑部耗氧率(CMRO(2))的比率所调节)。我们使用基于高碳酸血症实验校准BOLD响应的定量方法,比较了皮质(视觉皮层,VC)和皮质下(扁豆状核,LN)区域的M和n。尽管两个区域的M值相似(〜5.8%),但n的差异(VC中为2.21 +/- 0.03,LN中为1.58 +/- 0.03; Cohen d = 1.71)比皮质BOLD产生的弱得多(〜3.7x)相对于CMRO(2)的响应变化。由于对n的强烈敏感性,BOLD反应幅度不能解释为潜在代谢变化的定量反映,尤其是在比较皮质和皮质下区域时。

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