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A Modified Miniscope System for Simultaneous Electrophysiology and Calcium Imaging in vivo

Xiaoting Wu, Xiangyu Yang, Lulu Song, Yang Wang, Yamin Li, Yuanyuan Liu, Xiaowei Yang, Yijun Wang, Weihua Pei, Weidong Li

2021Frontiers in Integrative Neuroscience37 citationsDOIOpen Access PDF

Abstract

The miniscope system is one of the calcium (Ca 2+ ) imaging tools with small size and lightweight and can realize the deep-brain Ca 2+ imaging not confined to the cerebral cortex. Combining Ca 2+ imaging and electrophysiology recording has been an efficient method for extracting high temporal-spatial resolution signals in the brain. In this study, a particular electrode probe was developed and assembled on the imaging lens to modify the miniscope system. The electrode probe can be tightly integrated into the lens of the miniscope without increasing the volume, weight, and implantation complexity. In vivo tests verified that the proposed modified system has realized the simultaneous recording of Ca 2+ signals and local field potential (LFP) signal in the hippocampus CA1 region of an adult mouse.

Topics & Concepts

ElectrophysiologyLocal field potentialCalcium imagingIn vivoNeuroimagingBiomedical engineeringHippocampusSIGNAL (programming language)Preclinical imagingNeuroscienceMaterials scienceCalciumComputer scienceBiologyMedicineBiotechnologyProgramming languageMetallurgyNeuroscience and Neural EngineeringNeuroscience and Neuropharmacology ResearchNeural dynamics and brain function