Hu Jia, Cherkkil Arun, Surinach Daniel A, Oladepo Ibrahim, Hossain Ridwan F, Fausner Skylar, Saxena Kapil, Ko Eunsong, Peters Ryan, Feldkamp Michael, Konda Pavan C, Pathak Vinayak, Horstmeyer Roarke, Kodandaramaiah Suhasa B
bioRxiv. 2024 Jul 29:2024.07.04.601964. doi: 10.1101/2024.07.04.601964.
Understanding how circuits in the brain simultaneously coordinate their activity to mediate complex ethnologically relevant behaviors requires recording neural activities from distributed populations of neurons in freely behaving animals. Current miniaturized imaging microscopes are typically limited to imaging a relatively small field of view, precluding the measurement of neural activities across multiple brain regions. Here we present a miniaturized micro-camera array microscope (mini-MCAM) that consists of four fluorescence imaging micro-cameras, each capable of capturing neural activity across a 4.5 mm x 2.55 mm field of view (FOV). Cumulatively, the mini-MCAM images over 30 mm area of sparsely expressed GCaMP6s neurons distributed throughout the dorsal cortex, in regions including the primary and secondary motor, somatosensory, visual, retrosplenial, and association cortices across both hemispheres. We demonstrate cortex-wide cellular resolution in vivo Calcium (Ca ) imaging using the mini-MCAM in both head-fixed and freely behaving mice.
要理解大脑中的神经回路如何同时协调其活动以介导复杂的与种族学相关的行为,需要记录自由活动动物中分散的神经元群体的神经活动。当前的小型化成像显微镜通常限于对相对较小的视野进行成像,从而排除了对多个脑区神经活动的测量。在此,我们展示了一种小型化微相机阵列显微镜(mini-MCAM),它由四个荧光成像微相机组成,每个微相机能够在4.5毫米×2.55毫米的视野(FOV)内捕获神经活动。累计起来,mini-MCAM可对分布于整个背侧皮层、包括双侧半球的初级和次级运动、体感、视觉、压后皮质及联合皮质等区域中稀疏表达的GCaMP6s神经元的超过30平方毫米的区域进行成像。我们在头部固定和自由活动的小鼠中均使用mini-MCAM展示了体内全皮质细胞分辨率的钙(Ca)成像。