Barbera Giovanni, Thapa Rashmi, Adhikari Navin, Li Yun, Lin Da-Ting
Intramural Research Program, National Institute on Drug Abuse National Institutes of Health, Baltimore, MD, United States.
Department of Zoology and Physiology, University of Wyoming, Laramie, WY, United States.
Front Neurosci. 2024 Dec 9;18:1445020. doi: 10.3389/fnins.2024.1445020. eCollection 2024.
Miniature fluorescence microscopes (miniscopes) are one of the most powerful and versatile tools for recording large scale neural activity in freely moving rodents with single cell resolution. Recent advances in the design of genetically encoded calcium indicators (GECIs) allow to target distinct neuronal populations with non-overlapping emission spectral profiles. However, conventional miniscopes are limited to a single excitation, single focal plane imaging, which does not allow to compensate for chromatic aberration and image from two spectrally distinct calcium indicators. In this paper we present an open-source dual channel miniscope capable of simultaneous imaging of genetically or functionally distinct neuronal populations. Chromatic aberrations are corrected using an electrowetting lens (EWL), which allows fast focal plane change between frames. To demonstrate the capabilities of the dual channel miniscope, we labeled layer specific excitatory neurons or inhibitory interneurons in the medial prefrontal cortex (mPFC) with a red fluorescence protein, and simultaneously imaged neural activity of distinct neuronal populations of freely moving mice via a green GECI.
微型荧光显微镜(微型显微镜)是用于以单细胞分辨率记录自由活动啮齿动物大规模神经活动的最强大、用途最广泛的工具之一。基因编码钙指示剂(GECIs)设计的最新进展使得能够靶向具有不重叠发射光谱特征的不同神经元群体。然而,传统的微型显微镜仅限于单激发、单焦平面成像,这无法补偿色差,也无法对来自两种光谱不同的钙指示剂进行成像。在本文中,我们展示了一种开源双通道微型显微镜,它能够同时对基因或功能不同的神经元群体进行成像。使用电润湿透镜(EWL)校正色差,该透镜允许在帧之间快速改变焦平面。为了展示双通道微型显微镜的功能,我们用红色荧光蛋白标记内侧前额叶皮质(mPFC)中的层特异性兴奋性神经元或抑制性中间神经元,并通过绿色GECI同时成像自由活动小鼠不同神经元群体的神经活动。