Guo Changliang, Wang Aimin, Cheng Heping, Chen Liangyi
Beijing Institute of Collaborative Innovation, Beijing, China.
State Key Laboratory of Membrane Biology, Institute of Molecular Medicine, Peking-Tsinghua Center for Life Sciences, College of Future Technology, Peking University, Beijing, China.
J Neurochem. 2023 Feb;164(3):270-283. doi: 10.1111/jnc.15711. Epub 2022 Nov 5.
Over the past decade, novel optical imaging tools have been developed for imaging neuronal activities along with the evolution of fluorescence indicators with brighter expression and higher sensitivity. Miniature microscopes, as revolutionary approaches, enable the imaging of large populations of neuron ensembles in freely behaving rodents and mammals, which allows exploring the neural basis of behaviors. Recent progress in two-photon miniature microscopes and mesoscale single-photon miniature microscopes further expand those affordable methods to navigate neural activities during naturalistic behaviors. In this review article, two-photon miniature microscopy techniques are summarized historically from the first documented attempt to the latest ones, and comparisons are made. The driving force behind and their potential for neuroscientific inquiries are also discussed. Current progress in terms of the mesoscale, i.e., the large field-of-view miniature microscopy technique, is addressed as well. Then, pipelines for registering single cells from the data of two-photon and large field-of-view miniature microscopes are discussed. Finally, we present the potential evolution of the techniques.
在过去十年中,随着荧光指示剂的不断发展,其表达更明亮、灵敏度更高,新型光学成像工具已被开发用于对神经元活动进行成像。微型显微镜作为一种革命性的方法,能够对自由活动的啮齿动物和哺乳动物中的大量神经元群体进行成像,从而有助于探索行为的神经基础。双光子微型显微镜和中尺度单光子微型显微镜的最新进展进一步扩展了这些经济实惠的方法,以在自然行为期间追踪神经活动。在这篇综述文章中,双光子微型显微镜技术从首次有记录的尝试到最新技术进行了历史总结,并进行了比较。还讨论了其背后的驱动力及其在神经科学研究中的潜力。还介绍了中尺度方面的当前进展,即大视野微型显微镜技术。然后,讨论了从双光子和大视野微型显微镜数据中记录单个细胞的流程。最后,我们展示了这些技术的潜在发展。