Modification of oxygen consumption and blood flow in mouse somatosensory cortex by cell-type-specific neuronal activity

Matilda K Dahlqvist, K. Thomsen, D. Postnov, M. Lauritzen
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引用次数: 16

Abstract

Gamma activity arising from the interplay between pyramidal neurons and fast-spiking parvalbumin (PV) interneurons is an integral part of higher cognitive functions and is assumed to contribute significantly to brain metabolic responses. Cerebral metabolic rate of oxygen (CMRO2) responses were evoked by optogenetic stimulation of cortical PV interneurons and pyramidal neurons. We found that CMRO2 responses depended on neuronal activation, but not on the power of gamma activity induced by optogenetic stimulation. This implies that evoked gamma activity per se is not energy demanding. Optogenetic stimulation of PV interneurons during somatosensory stimulation reduced excitatory neuronal activity but did not potentiate O2 consumption as previously hypothesized. In conclusion, our data suggest that activity-driven CMRO2 responses depend on neuronal excitation rather than the cerebral rhythmic activity they induce. Excitation of both excitatory and inhibitory neurons requires energy, but inhibition of cortical excitatory neurons by interneurons does not potentiate activity-driven energy consumption.
细胞类型特异性神经元活动对小鼠体感觉皮层耗氧量和血流的影响
由锥体神经元和快速尖峰小白蛋白(PV)中间神经元之间的相互作用产生的伽马活动是高级认知功能的一个组成部分,并且被认为对大脑代谢反应有重要贡献。光遗传刺激皮质PV中间神经元和锥体神经元可诱发脑氧代谢率(cro2)反应。我们发现cmor2的反应依赖于神经元的激活,而不依赖于光遗传刺激诱导的伽马活动的强度。这意味着诱发的伽马活动本身并不需要能量。在体感觉刺激过程中,光遗传刺激PV中间神经元会降低兴奋性神经元的活动,但不会像之前假设的那样增强氧气消耗。总之,我们的数据表明,活动驱动的cmor2反应依赖于神经元兴奋,而不是它们诱导的大脑节律性活动。兴奋性和抑制性神经元的兴奋都需要能量,但中间神经元对皮层兴奋性神经元的抑制并不会增强活动驱动的能量消耗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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