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药物调节大脑血氧水平依赖反应:乙酰唑胺和硝化甘油在人体中的研究。

Pharmacological modulation of the BOLD response: a study of acetazolamide and glyceryl trinitrate in humans.

机构信息

Danish Headache Center, Department of Neurology, Glostrup Hospital, Faculty of Health Sciences, University of Copenhagen, Denmark.

出版信息

J Magn Reson Imaging. 2011 Oct;34(4):921-7. doi: 10.1002/jmri.22659. Epub 2011 Jul 18.

Abstract

PURPOSE

To examine the effect of acetazolamide, known to increase cerebral blood flow (CBF) and glyceryl trinitrate (GTN), known to increase cerebral blood volume (CBV) on the blood oxygenation level-dependent (BOLD) response in humans using 3 T magnetic resonance imaging (MRI), and to evaluate how pharmacological agents may modulate cerebral hemodynamic and thereby possibly the BOLD signal.

MATERIALS AND METHODS

Six subjects were randomly allocated to receive acetazolamide, GTN, or placebo in a double-blind three-way crossover controlled study. Before, during, and after drug administration we recorded the BOLD response during visual stimulation with reversing checkerboard.

RESULTS

We found that acetazolamide caused significant depression of the BOLD response (P = 0.0066). The maximum decrease occurred at 5 minutes after infusion and was 51.9% (95% confidence interval [CI], 22.03-81.76). GTN did not influence the BOLD response (P = 0.55).

CONCLUSION

The BOLD response is decreased during increased CBF by acetazolamide, suggesting an inverse relationship between global CBF and the BOLD response. GTN does not change the BOLD response. This indicates that GTN exerts an effect on the large vessels only and that CBV changes in the microvascular system are necessary to alter the BOLD response.

摘要

目的

使用 3T 磁共振成像 (MRI) 研究乙酰唑胺(已知可增加脑血流量 [CBF])和甘油三硝酸酯(GTN,已知可增加脑血容量 [CBV])对人类血氧水平依赖 (BOLD) 反应的影响,并评估药物如何调节脑血流动力学,从而可能调节 BOLD 信号。

材料和方法

6 名受试者在双盲三向交叉对照研究中随机分配接受乙酰唑胺、GTN 或安慰剂。在药物给药前、给药中和给药后,我们记录了视觉刺激时反向棋盘的 BOLD 反应。

结果

我们发现乙酰唑胺导致 BOLD 反应显著抑制(P=0.0066)。最大降低发生在输注后 5 分钟,为 51.9%(95%置信区间 [CI],22.03-81.76)。GTN 对 BOLD 反应没有影响(P=0.55)。

结论

乙酰唑胺增加 CBF 时 BOLD 反应降低,表明全局 CBF 与 BOLD 反应之间存在反比关系。GTN 不会改变 BOLD 反应。这表明 GTN 仅对大血管起作用,并且需要改变微血管系统中的 CBV 变化才能改变 BOLD 反应。

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