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首页> 外文期刊>Journal of Cerebral Blood Flow and Metabolism: Official Journal of the International Society of Cerebral Blood Flow and Metabolism >Measuring vascular reactivity with resting-state blood oxygenation level-dependent (BOLD) signal fluctuations: A potential alternative to the breath-holding challenge?
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Measuring vascular reactivity with resting-state blood oxygenation level-dependent (BOLD) signal fluctuations: A potential alternative to the breath-holding challenge?

机译:测量血管反应性与静态血氧氧化水平依赖(粗体)信号波动:呼吸持有挑战的潜在替代品?

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摘要

Measurement of the ability of blood vessels to dilate and constrict, known as vascular reactivity, is often performed with breath-holding tasks that transiently raise arterial blood carbon dioxide (PaCO2) levels. However, following the proper commands for a breath-holding experiment may be difficult or impossible for many patients. In this study, we evaluated two approaches for obtaining vascular reactivity information using blood oxygenation level-dependent signal fluctuations obtained from resting-state functional magnetic resonance imaging data: physiological fluctuation regression and coefficient of variation of the resting-state functional magnetic resonance imaging signal. We studied a cohort of 28 older adults (69 +/- 7 years) and found that six of them (21%) could not perform the breath-holding protocol, based on an objective comparison with an idealized respiratory waveform. In the subjects that could comply, we found a strong linear correlation between data extracted from spontaneous resting-state functional magnetic resonance imaging signal fluctuations and the blood oxygenation level-dependent percentage signal change during breath-holding challenge (R-2=0.57 and 0.61 for resting-state physiological fluctuation regression and resting-state coefficient of variation methods, respectively). This technique may eliminate the need for subject cooperation, thus allowing the evaluation of vascular reactivity in a wider range of clinical and research conditions in which it may otherwise be impractical.
机译:测量血管扩张和收缩的能力,称为血管反应性,通常通过呼吸持有的任务进行瞬时提高动脉血二氧化碳(PACO2)水平。然而,在许多患者可能是难以或不可能的呼吸持有实验的正确命令之后。在该研究中,我们评估了使用从静态功能磁共振成像数据获得的血氧水平依赖性信号波动获得血管反应性信息的两种方法:生理波动回归和静止状态功能磁共振成像信号的变化系数。我们研究了28名年龄较大的成年人(69 +/- 7年)的队列,发现它们中的六个(21%)无法根据与理想化呼吸波形的客观比较来执行呼吸持有协议。在可以遵守的受试者中,我们发现从自发休息状态功能磁共振成像信号波动提取的数据之间的强烈线性相关性,并且在呼吸持有挑战期间血氧水平依赖性百分比信号发生变化(R-2 = 0.57和0.61用于分别休息状态的生理波动回归和静态变异方法的变异方法。该技术可以消除对学科合作的需求,从而允许在更广泛的临床和研究条件下评估血管反应性,否则可能是不切实际的。

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