Department of Functional Brain Imaging, Institute of Quantum Medical Sciences, National Institutes for Quantum and Radiological Science and Technology, Chiba, Japan.
Department of Molecular Imaging and Theranostics, Institute of Quantum Medical Sciences, National Institutes for Quantum and Radiological Science and Technology, Chiba, Japan.
J Cereb Blood Flow Metab. 2022 Jan;42(1):197-212. doi: 10.1177/0271678X211045449. Epub 2021 Sep 13.
To assess if magnetic resonance spectroscopy (MRS)-measured Glutamate (Glu) and GABA reflect excitatory and inhibitory neural activities, respectively, we conducted MRS measurements along with two-photon mesoscopic imaging of calcium signals in excitatory and inhibitory neurons of living, unanesthetized mice. For monitoring stimulus-driven activations of a brain region, MRS signals and mesoscopic neural activities were measured during two consecutive sessions of 15-min prolonged sensory stimulations. In the first session, putative excitatory neuronal activities were increased, while inhibitory neuronal activities remained at the baseline level. In the second half, while excitatory neuronal activities remained elevated, inhibitory neuronal activities were significantly enhanced. We assessed regional neurochemical statuses by measuring MRS signals, which were overall in accordance with the neural activities, and neuronal activities and neurochemical statuses in a mouse model of Dravet syndrome under resting condition. Mesoscopic assessments showed that activities of inhibitory neurons in the cortex were diminished relative to wild-type mice in contrast to spared activities of excitatory neurons. Consistent with these observations, the Dravet model exhibited lower concentrations of GABA than wild-type controls. Collectively, the current investigations demonstrate that MRS-measured Glu and GABA can reflect spontaneous and stimulated activities of neurons producing and releasing these neurotransmitters in an awake condition.
为了评估磁共振波谱(MRS)测量的谷氨酸(Glu)和 GABA 是否分别反映兴奋性和抑制性神经活动,我们对活体、未麻醉小鼠的兴奋性和抑制性神经元进行了 MRS 测量和双光子介观钙信号成像。为了监测大脑区域的刺激驱动激活,我们在两次连续的 15 分钟延长感觉刺激期间测量了 MRS 信号和介观神经活动。在第一阶段,假定兴奋性神经元活动增加,而抑制性神经元活动保持基线水平。在下半部分,虽然兴奋性神经元活动仍然升高,但抑制性神经元活动显著增强。我们通过测量 MRS 信号来评估区域神经化学状态,这些信号总体上与神经活动以及 Dravet 综合征小鼠模型在静息状态下的神经元活动和神经化学状态相符。介观评估显示,与野生型小鼠相比,皮质中抑制性神经元的活动减少,而兴奋性神经元的活动保持不变。与这些观察结果一致,Dravet 模型显示 GABA 的浓度低于野生型对照。总之,当前的研究表明,MRS 测量的 Glu 和 GABA 可以反映在清醒状态下产生和释放这些神经递质的神经元的自发和刺激活动。