École d'Optométrie, Université de Montréal, 2500 Chem. De Polytechnique, Montréal, QC, H3T 1J4, Canada.
Institute of Biomedical Engineering, École Polytechnique de Montréal, Montréal, Canada.
Sci Rep. 2023 Aug 15;13(1):13269. doi: 10.1038/s41598-023-40321-3.
Resting state networks (RSN), which show the connectivity in the brain in the absence of any stimuli, are increasingly important to assess brain function. Here, we investigate the changes in RSN as well as the hemodynamic changes during acute, global hypoxia. Mice were imaged at different levels of oxygen (21, 12, 10 and 8%) over the course of 10 weeks, with hypoxia and normoxia acquisitions interspersed. Simultaneous GCaMP and intrinsic optical imaging allowed tracking of both neuronal and hemodynamic changes. During hypoxic conditions, we found a global increase of both HbO and HbR in the brain. The saturation levels of blood dropped after the onset of hypoxia, but surprisingly climbed back to levels similar to baseline within the 10-min hypoxia period. Neuronal activity also showed a peak at the onset of hypoxia, but dropped back to baseline as well. Despite regaining baseline sO2 levels, changes in neuronal RSN were observed. In particular, the connectivity as measured with GCaMP between anterior and posterior parts of the brain decreased. In contrast, when looking at these same connections with HbO measurements, an increase in connectivity in anterior-posterior brain areas was observed suggesting a potential neurovascular decoupling.
静息态网络(RSN)在没有任何刺激的情况下显示大脑的连通性,对于评估大脑功能变得越来越重要。在这里,我们研究了急性、全脑缺氧期间 RSN 的变化以及血液动力学的变化。在 10 周的时间内,对不同氧水平(21%、12%、10%和 8%)的小鼠进行成像,在缺氧和正常氧采集之间穿插进行。同时进行的 GCaMP 和固有光学成像允许跟踪神经元和血液动力学的变化。在缺氧条件下,我们发现大脑中的 HbO 和 HbR 都有全局增加。血氧饱和度水平在缺氧开始后下降,但令人惊讶的是,在 10 分钟的缺氧期间回升到与基线相似的水平。神经元活动也在缺氧开始时达到峰值,但也回落到基线水平。尽管恢复了基线 sO2 水平,但仍观察到神经元 RSN 的变化。特别是,用 GCaMP 测量的大脑前、后部之间的连通性降低。相比之下,当用 HbO 测量观察这些相同的连接时,观察到前脑和后脑区域的连通性增加,这表明存在潜在的神经血管解耦。