Department of Brain and Cognitive Sciences, McGovern Institute for Brain Research, Massachusetts Institute of Technology, Cambridge, MA, USA.
Nat Methods. 2023 Apr;20(4):546-549. doi: 10.1038/s41592-023-01806-1. Epub 2023 Mar 16.
Here we present a fluorescence microscope light path that enables imaging, during free behavior, of thousands of neurons in mice and hundreds of neurons in juvenile songbirds. The light path eliminates traditional illumination optics, allowing for head-mounted microscopes that have both a lower weight and a larger field of view (FOV) than previously possible. Using this light path, we designed two microscopes: one optimized for FOV (~4 mm FOV; 1.4 g), and the other optimized for weight (1.0 mm FOV; 1.0 g).
在这里,我们展示了一种荧光显微镜光路,该光路能够在自由行为期间对小鼠的数千个神经元和幼年鸣禽的数百个神经元进行成像。该光路消除了传统的照明光学元件,使得头戴式显微镜的重量更轻,视场(FOV)比以前更大。使用该光路,我们设计了两种显微镜:一种优化了 FOV(~4mm FOV;1.4g),另一种优化了重量(1.0mm FOV;1.0g)。