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低氧性缺氧状态下视觉刺激期间的血氧水平依赖反应和血管反应性

The BOLD response and vascular reactivity during visual stimulation in the presence of hypoxic hypoxia.

作者信息

Ho Yi-Ching L, Vidyasagar Rishma, Shen Yuji, Balanos George M, Golay Xavier, Kauppinen Risto A

机构信息

Neuroradiology, National Neuroscience Institute, Singapore, Singapore.

出版信息

Neuroimage. 2008 Jun;41(2):179-88. doi: 10.1016/j.neuroimage.2008.02.048. Epub 2008 Mar 6.

Abstract

A disproportionate increase in cerebral blood flow (CBF) relative to the cerebral metabolic rate of oxygen (CMRO(2)), in response to neuronal activation, results in a decreased oxygen extraction fraction (OEF) and hence local 'hyperoxygenation'. The mismatch is the key 'physiological substrate' for blood oxygenation level dependent (BOLD) fMRI. The mismatch may reflect inefficient O(2) diffusion in the brain tissue, a factor requiring maintenance of a steep [O(2)] gradient between capillary bed and neural cell mitochondria. The aim of this study was to assess vascular responsiveness to reduced blood oxygen saturation, using both BOLD fMRI and the CBV-weighted vascular space occupancy (VASO)-dependent fMRI technique, during visual activation in hypoxic hypoxia. Our fMRI results show decreased amplitude and absence of initial sharp overshoot in the BOLD response, while VASO signal was not influenced by decreasing oxygen saturation down to 0.85. The results suggest that the OEF during visual activation may be different in hypoxia relative to normoxia, due to a more efficient oxygen extraction under compromised oxygen availability. The data also indicate that vascular reactivity to brain activation is not affected by mild hypoxia.

摘要

响应神经元激活时,脑血流量(CBF)相对于脑氧代谢率(CMRO₂)不成比例地增加,导致氧摄取分数(OEF)降低,从而出现局部“高氧状态”。这种不匹配是血氧水平依赖(BOLD)功能磁共振成像的关键“生理基础”。这种不匹配可能反映了脑组织中氧气扩散效率低下,这一因素要求在毛细血管床和神经细胞线粒体之间维持陡峭的[O₂]梯度。本研究的目的是在低氧性缺氧的视觉激活过程中,使用BOLD功能磁共振成像和基于脑血容量(CBV)加权的血管空间占据(VASO)依赖性功能磁共振成像技术,评估血管对血氧饱和度降低的反应性。我们的功能磁共振成像结果显示,BOLD反应的幅度降低且没有初始的急剧超调,而VASO信号不受血氧饱和度降至0.85的影响。结果表明,由于在氧供应受损的情况下氧摄取更有效,缺氧时视觉激活期间的OEF可能与正常氧合时不同。数据还表明,轻度缺氧不会影响血管对脑激活的反应性。

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