The miniscope system is one of the calcium (Ca2+) imaging tools with small size and lightweight and can realize the deep-brain Ca2+ imaging not confined to the cerebral cortex. Combining Ca2+ 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 Ca2+ signals and local field potential (LFP) signa...
Studies of the neural basis of memory and decision making have utilized rats as a model organism for...
Simultaneous recording of optical and electrophysiological signals from multiple cortical areas may ...
This article describes the development and application of miniaturized two-photon-excited fluorescen...
We developed a miniaturized two-photon microscope (MINI2P) for fast, high-resolution, multiplane cal...
The light microscope is traditionally an instrument of substantial size and expense. Its miniaturize...
International audienceCombining voltage and Ca(2+) imaging allows the correlation of electrical and ...
International audienceCa(2+) imaging is a commonly used approach for measuring Ca(2+) signals at hig...
Miniaturized microscopes are lightweight imaging devices that allow optical recordings from neurons ...
Objective: Calcium imaging is an essential tool for obtaining neuroactivities to understand the comp...
Dynamic calcium imaging is a major technique of neuroscientists. It can reveal information about the...
Visualization 4 – Simultaneous voltage and calcium imaging in neurons. Neurons from an E18 rat hipp...
In vivo neuronal and glial calcium activity was monitored using a novel direct-contact probe that wa...
We will use miniscopes to detect activities in the frontal eye field, a brain region responsible for...
Genetically encoded calcium indicators for visualizing dynamic cellular activity have greatly expand...
wo-photon microscopy of bulk-loaded functional dyes is an outstanding physiological technique that e...
Studies of the neural basis of memory and decision making have utilized rats as a model organism for...
Simultaneous recording of optical and electrophysiological signals from multiple cortical areas may ...
This article describes the development and application of miniaturized two-photon-excited fluorescen...
We developed a miniaturized two-photon microscope (MINI2P) for fast, high-resolution, multiplane cal...
The light microscope is traditionally an instrument of substantial size and expense. Its miniaturize...
International audienceCombining voltage and Ca(2+) imaging allows the correlation of electrical and ...
International audienceCa(2+) imaging is a commonly used approach for measuring Ca(2+) signals at hig...
Miniaturized microscopes are lightweight imaging devices that allow optical recordings from neurons ...
Objective: Calcium imaging is an essential tool for obtaining neuroactivities to understand the comp...
Dynamic calcium imaging is a major technique of neuroscientists. It can reveal information about the...
Visualization 4 – Simultaneous voltage and calcium imaging in neurons. Neurons from an E18 rat hipp...
In vivo neuronal and glial calcium activity was monitored using a novel direct-contact probe that wa...
We will use miniscopes to detect activities in the frontal eye field, a brain region responsible for...
Genetically encoded calcium indicators for visualizing dynamic cellular activity have greatly expand...
wo-photon microscopy of bulk-loaded functional dyes is an outstanding physiological technique that e...
Studies of the neural basis of memory and decision making have utilized rats as a model organism for...
Simultaneous recording of optical and electrophysiological signals from multiple cortical areas may ...
This article describes the development and application of miniaturized two-photon-excited fluorescen...