Low-level carbon monoxide exposure affects BOLD fMRI response

Caroline Bendell, S. Moosavi, M. Herigstad
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引用次数: 2

Abstract

Blood oxygen level dependent (BOLD) fMRI is a common technique for measuring brain activation that could be affected by low-level carbon monoxide (CO) exposure from, e.g. smoking. This study aimed to probe the vulnerability of BOLD fMRI to CO and determine whether it may constitute a significant neuroimaging confound. Low-level (6 ppm exhaled) CO effects on BOLD response were assessed in 12 healthy never-smokers on two separate experimental days (CO and air control). fMRI tasks were breath-holds (hypercapnia), visual stimulation and fingertapping. BOLD fMRI response was lower during breath holds, visual stimulation and fingertapping in the CO protocol compared to the air control protocol. Behavioural and physiological measures remained unchanged. We conclude that BOLD fMRI might be vulnerable to changes in baseline CO, and suggest exercising caution when imaging populations exposed to elevated CO levels. Further work is required to fully elucidate the impact on CO on fMRI and its underlying mechanisms.
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低浓度一氧化碳暴露影响BOLD fMRI反应
血氧水平依赖(BOLD)功能磁共振成像(fMRI)是一种常用的技术,用于测量可能受到低水平一氧化碳(CO)暴露(例如吸烟)影响的大脑活动。本研究旨在探讨BOLD fMRI对CO的易感性,并确定其是否可能构成重大的神经影像学混淆。在两个单独的实验天(CO和空气控制)中,对12名健康的不吸烟者进行了低水平(6 ppm) CO对BOLD反应的影响评估。fMRI任务包括屏气(高碳酸血症)、视觉刺激和手指敲击。与空气控制方案相比,在CO方案中屏气、视觉刺激和手指敲击时,BOLD fMRI反应较低。行为和生理指标保持不变。我们得出结论,BOLD fMRI可能容易受到基线CO变化的影响,并建议在对暴露于高CO水平的人群进行成像时要谨慎。需要进一步的工作来充分阐明CO对fMRI的影响及其潜在机制。
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