用扩展的校准BOLD方法测量缺氧时cro2及其与CBF的关系

Yaoyu Zhang, Yayan Yin, Huanjie Li, Jia-Hong Gao
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引用次数: 3

摘要

脑血流量(CBF)和脑氧代谢率(cro2)是反映大脑健康和疾病的生理参数,也是血氧水平依赖(BOLD)信号的共同作用因素。然而,在不同的氧条件下,脑cbf - ccro2的关系仍未得到解决。特别是,对低氧条件下cro2对功能性任务的反应研究较少。我们扩展了校准后的BOLD模型,纳入了低氧条件下cro2的测量。该扩展模型与多室BOLD模型进行了交叉验证,考虑了动脉饱和水平降低、基线脑血容量(CBV)和脱氧血红蛋白浓度升高对缺氧时BOLD信号变化的影响。通过脉冲序列同时获取CBV、CBF和bold加权信号,我们研究了轻度缺氧对CBF和cmor2对分级视觉刺激反应的影响。与常氧相比,轻度缺氧导致cmoo2反应的幅度和趋势发生明显变化,但不影响相应的CBF反应。我们的观察结果表明,轻度缺氧时大脑的血流代谢耦合策略与正常缺氧时不同。
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Measurement of CMRO2 and its relationship with CBF in hypoxia with an extended calibrated BOLD method
Cerebral blood flow (CBF) and cerebral metabolic rate of oxygen (CMRO2) are physiological parameters that not only reflect brain health and disease but also jointly contribute to blood oxygen level-dependent (BOLD) signals. Nevertheless, unsolved issues remain concerning the CBF–CMRO2 relationship in the working brain under various oxygen conditions. In particular, the CMRO2 responses to functional tasks in hypoxia are less studied. We extended the calibrated BOLD model to incorporate CMRO2 measurements in hypoxia. The extended model, which was cross-validated with a multicompartment BOLD model, considers the influences of the reduced arterial saturation level and increased baseline cerebral blood volume (CBV) and deoxyhemoglobin concentration on the changes of BOLD signals in hypoxia. By implementing a pulse sequence to simultaneously acquire the CBV-, CBF- and BOLD-weighted signals, we investigated the effects of mild hypoxia on the CBF and CMRO2 responses to graded visual stimuli. Compared with normoxia, mild hypoxia caused significant alterations in both the amplitude and the trend of the CMRO2 responses but did not impact the corresponding CBF responses. Our observations suggested that the flow-metabolism coupling strategies in the brain during mild hypoxia were different from those during normoxia.
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