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通过体素级血流动力学延迟优化提高屏气功能磁共振成像中局部脑血流反应性(CVR)估计值

Voxelwise optimization of hemodynamic lags to improve regional CVR estimates in breath-hold fMRI.

作者信息

Moia Stefano, Stickland Rachael C, Ayyagari Apoorva, Termenon Maite, Caballero-Gaudes Cesar, Bright Molly G

出版信息

Annu Int Conf IEEE Eng Med Biol Soc. 2020 Jul;2020:1489-1492. doi: 10.1109/EMBC44109.2020.9176225.

Abstract

Cerebrovascular Reactivity (CVR), the responsiveness of blood vessels to a vasodilatory stimulus, is an important indicator of cerebrovascular health. Assessing CVR with fMRI, we can measure the change in the Blood Oxygen Level Dependent (BOLD) response induced by a change in CO2 pressure (%BOLD/mmHg). However, there exists a temporal offset between the recorded CO2 pressure and the local BOLD response, due to both measurement and physiological delays. If this offset is not corrected for, voxel-wise CVR values will not be accurate. In this paper, we propose a framework for mapping hemodynamic lag in breath-hold fMRI data. As breath-hold tasks drive task-correlated head motion artifacts in BOLD fMRI data, our framework for lag estimation fits a model that includes polynomial terms and head motion parameters, as well as a shifted variant of the CO2 regressor (±9 s in 0.3 s increments), and the hemodynamic lag at each voxel is the shift producing the maximum total model R2 within physiological constraints. This approach is evaluated in 8 subjects with multi-echo fMRI data, resulting in robust maps of hemodynamic delay that show consistent regional variation across subjects, and improved contrast-to-noise compared to methods where motion regression is ignored or performed earlier in preprocessing.Clinical Relevance- We map hemodynamic lag using breathhold fMRI, providing insight into vascular transit times and improving the regional accuracy of cerebrovascular reactivity measurements.

摘要

脑血管反应性(CVR)是血管对血管舒张刺激的反应性,是脑血管健康的重要指标。通过功能磁共振成像(fMRI)评估CVR时,我们可以测量由二氧化碳压力变化(%BOLD/mmHg)引起的血氧水平依赖(BOLD)反应的变化。然而,由于测量和生理延迟,记录的二氧化碳压力与局部BOLD反应之间存在时间偏移。如果不校正这种偏移,逐体素的CVR值将不准确。在本文中,我们提出了一个用于映射屏气fMRI数据中血液动力学延迟的框架。由于屏气任务会在BOLD fMRI数据中产生与任务相关的头部运动伪影,我们的延迟估计框架拟合了一个模型,该模型包括多项式项和头部运动参数,以及二氧化碳回归器的移位变体(以0.3秒为增量,±9秒),每个体素的血液动力学延迟是在生理约束范围内产生最大总模型R2的移位。该方法在8名受试者中使用多回波fMRI数据进行了评估,得到了血液动力学延迟的稳健图谱,显示出受试者之间一致的区域变化,并且与忽略运动回归或在预处理中更早进行运动回归的方法相比,对比度噪声有所改善。临床相关性——我们使用屏气fMRI映射血液动力学延迟,深入了解血管传输时间,并提高脑血管反应性测量的区域准确性。

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