Oh Jihae, Lee Chiwoo, Kaang Bong-Kiun
School of Biological Sciences, Seoul National University, Seoul 08826, Korea.
Korean J Physiol Pharmacol. 2019 Jul;23(4):237-249. doi: 10.4196/kjpp.2019.23.4.237. Epub 2019 Jun 25.
Confirming the direct link between neural circuit activity and animal behavior has been a principal aim of neuroscience. The genetically encoded calcium indicator (GECI), which binds to calcium ions and emits fluorescence visualizing intracellular calcium concentration, enables detection of neuronal firing activity. Various GECIs have been developed and can be chosen for diverse purposes. These GECI-based signals can be acquired by several tools including two-photon microscopy and microendoscopy for precise or wide imaging at cellular to synaptic levels. In addition, the images from GECI signals can be analyzed with open source codes including constrained non-negative matrix factorization for endoscopy data (CNMF_E) and miniscope 1-photon-based calcium imaging signal extraction pipeline (MIN1PIPE), and considering parameters of the imaged brain regions (e.g., diameter or shape of soma or the resolution of recorded images), the real-time activity of each cell can be acquired and linked with animal behaviors. As a result, GECI signal analysis can be a powerful tool for revealing the functions of neuronal circuits related to specific behaviors.
证实神经回路活动与动物行为之间的直接联系一直是神经科学的主要目标。基因编码钙指示剂(GECI)与钙离子结合并发出荧光以显示细胞内钙浓度,能够检测神经元放电活动。已经开发出各种GECI,可根据不同目的进行选择。这些基于GECI的信号可以通过多种工具获取,包括双光子显微镜和显微内窥镜,用于在细胞到突触水平进行精确或广泛成像。此外,来自GECI信号的图像可以使用开源代码进行分析,包括用于内窥镜数据的约束非负矩阵分解(CNMF_E)和基于单光子微型显微镜的钙成像信号提取管道(MIN1PIPE),并考虑成像脑区的参数(例如,胞体的直径或形状或记录图像的分辨率),可以获取每个细胞的实时活动并将其与动物行为联系起来。因此,GECI信号分析可以成为揭示与特定行为相关的神经回路功能的强大工具。