Department of Neuroscience, Washington University School of Medicine, St Louis, MO, USA.
Department of Psychiatry, Washington University School of Medicine, St Louis, MO, USA.
Nat Neurosci. 2022 Sep;25(9):1124-1128. doi: 10.1038/s41593-022-01152-z. Epub 2022 Aug 30.
Fiber photometry enables recording of population neuronal calcium dynamics in awake mice. While the popularity of fiber photometry has grown in recent years, it remains unclear whether photometry reflects changes in action potential firing (that is, 'spiking') or other changes in neuronal calcium. In microscope-based calcium imaging, optical and analytical approaches can help differentiate somatic from neuropil calcium. However, these approaches cannot be readily applied to fiber photometry. As such, it remains unclear whether the fiber photometry signal reflects changes in somatic calcium, changes in nonsomatic calcium or a combination of the two. Here, using simultaneous in vivo extracellular electrophysiology and fiber photometry, along with in vivo endoscopic one-photon and two-photon calcium imaging, we determined that the striatal fiber photometry does not reflect spiking-related changes in calcium and instead primarily reflects nonsomatic changes in calcium.
光纤光度测定法能够在清醒的小鼠中记录群体神经元钙动力学。尽管近年来光纤光度测定法的普及度有所增加,但仍不清楚光度测定法是否反映了动作电位发射(即“尖峰”)的变化,还是神经元钙的其他变化。在基于显微镜的钙成像中,光学和分析方法可以帮助区分体细胞钙和神经突钙。然而,这些方法不能轻易应用于光纤光度测定法。因此,尚不清楚光纤光度测定法信号是否反映了体细胞钙的变化、非体细胞钙的变化还是两者的组合。在这里,我们使用同时进行的体内细胞外电生理学和光纤光度测定法,以及体内内窥镜单光子和双光子钙成像,确定纹状体光纤光度测定法不反映与尖峰相关的钙变化,而是主要反映非体细胞钙的变化。