Franceschini Alessandra, Costantini Irene, Pavone Francesco S, Silvestri Ludovico
European Laboratory for Non-linear Spectroscopy (LENS), Sesto Fiorentino, Italy.
National Institute of Optics, National Research Council (INO-CNR), Sesto Fiorentino, Italy.
Front Neurosci. 2020 Oct 23;14:569517. doi: 10.3389/fnins.2020.569517. eCollection 2020.
Visualizing neuronal activation on a brain-wide scale yet with cellular resolution is a fundamental technical challenge for neuroscience. This would enable analyzing how different neuronal circuits are disrupted in pathology and how they could be rescued by pharmacological treatments. Although this goal would have appeared visionary a decade ago, recent technological advances make it eventually feasible. Here, we review the latest developments in the fields of genetics, sample preparation, imaging, and image analysis that could be combined to afford whole-brain cell-resolution activation mapping. We show how the different biochemical and optical methods have been coupled to study neuronal circuits at different spatial and temporal scales, and with cell-type specificity. The inventory of techniques presented here could be useful to find the tools best suited for a specific experiment. We envision that in the next years, mapping of neuronal activation could become routine in many laboratories, allowing dissecting the neuronal counterpart of behavior.
在全脑尺度上以细胞分辨率可视化神经元激活是神经科学面临的一项基本技术挑战。这将有助于分析不同的神经元回路在病理状态下是如何被破坏的,以及如何通过药物治疗来挽救它们。尽管这个目标在十年前看起来很有远见,但最近的技术进步使其最终成为可行。在这里,我们回顾了遗传学、样本制备、成像和图像分析领域的最新进展,这些进展可以结合起来实现全脑细胞分辨率的激活图谱绘制。我们展示了不同的生化和光学方法是如何结合起来,在不同的空间和时间尺度上以及具有细胞类型特异性地研究神经元回路的。这里介绍的技术清单可能有助于找到最适合特定实验的工具。我们设想,在未来几年,神经元激活图谱绘制在许多实验室中可能会成为常规操作,从而能够剖析行为的神经元对应物。