David Geffen School of Medicine, University of California, Los Angeles, Los Angeles, CA 90095, USA.
Department of Neurology, David Geffen School of Medicine, University of California, Los Angeles, Los Angeles, CA 90095, USA.
Sci Adv. 2023 Apr 21;9(16):eadg3918. doi: 10.1126/sciadv.adg3918.
Imaging large-population, single-cell fluorescent dynamics in freely behaving animals larger than mice remains a key endeavor of neuroscience. We present a large-field-of-view open-source miniature microscope (MiniLFOV) designed for large-scale (3.6 mm × 2.7 mm), cellular resolution neural imaging in freely behaving rats. It has an electrically adjustable working distance of up to 3.5 mm ± 100 μm, incorporates an absolute head orientation sensor, and weighs only 13.9 g. The MiniLFOV is capable of both deep brain and cortical imaging and has been validated in freely behaving rats by simultaneously imaging >1000 GCaMP7s-expressing neurons in the hippocampal CA1 layer and in head-fixed mice by simultaneously imaging ~2000 neurons in the dorsal cortex through a cranial window. The MiniLFOV also supports optional wire-free operation using a novel, wire-free data acquisition expansion board. We expect that this new open-source implementation of the UCLA Miniscope platform will enable researchers to address novel hypotheses concerning brain function in freely behaving animals.
在自由活动的动物中进行大群体单细胞荧光动力学成像,对于神经科学来说仍然是一项关键的工作。我们提出了一种大视野的开源微型显微镜(MiniLFOV),旨在对自由活动的大鼠进行大规模(3.6 毫米×2.7 毫米)、细胞分辨率的神经成像。它具有电动可调的工作距离,最大可达 3.5 毫米±100 微米,内置绝对头部方向传感器,重量仅为 13.9 克。MiniLFOV 能够进行深部脑和皮质成像,并已在自由活动的大鼠中得到验证,通过颅窗同时对海马 CA1 层中超过 1000 个表达 GCaMP7 的神经元进行成像,并在头部固定的小鼠中同时对背侧皮质中的约 2000 个神经元进行成像。MiniLFOV 还支持使用新型无线数据采集扩展板进行可选的无线操作。我们预计,UCLA Miniscope 平台的这一新开源实现将使研究人员能够解决关于自由活动动物大脑功能的新假设。