Our ability to investigate the brain is limited by available technologies that can record biological processes in vivo with suitable spatiotemporal resolution. Advances in optogenetics now enable optical recording and perturbation of central physiological processes within the intact brains of model organisms. By monitoring key signaling molecules noninvasively, we can better appreciate how information is processed and integrated within intact circuits. In this review, we describe recent efforts engineering genetically-encoded fluorescence indicators to monitor neuronal activity. We summarize recent advances of sensors for calcium, potassium, voltage, and select neurotransmitters, focusing on their molecular design, properties, and current l...
© 2016, Nizhny Novgorod State Medical Academy. All rights reserved.Optogenetic tools, photochromic s...
This mini-symposium aims to provide an integrated perspective on recent developments in optogenetics...
Fluorescent protein-based biosensors are indispensable molecular tools for life science research. Th...
Our ability to investigate the brain is limited by available technologies that can record biological...
Recent advances in fluorescence imaging permit large-scale recording of neural activity and dynamics...
Recording activity from identified populations of neurons is a central goal of neuroscience. Changes...
Recording activity from identified populations of neurons is a central goal of neuroscience. Changes...
The advent of optogenetics and genetically-encoded photosensors has provided neuroscience researcher...
Fluorescent nanosensors and molecular probes are next-generation tools for imaging chemical signalin...
Fluorescent nanosensors and molecular probes are next-generation tools for imaging chemical signalin...
Fluorescent nanosensors and molecular probes are next-generation tools for imaging chemical signalin...
Accurate visualization of structures and events at subcellular level is one of the major challenges ...
Recent developments in genetically encoded indicators of neural activity (GINAs) have greatly advanc...
© 2016, Nizhny Novgorod State Medical Academy. All rights reserved.Optogenetic tools, photochromic s...
© 2016, Nizhny Novgorod State Medical Academy. All rights reserved.Optogenetic tools, photochromic s...
© 2016, Nizhny Novgorod State Medical Academy. All rights reserved.Optogenetic tools, photochromic s...
This mini-symposium aims to provide an integrated perspective on recent developments in optogenetics...
Fluorescent protein-based biosensors are indispensable molecular tools for life science research. Th...
Our ability to investigate the brain is limited by available technologies that can record biological...
Recent advances in fluorescence imaging permit large-scale recording of neural activity and dynamics...
Recording activity from identified populations of neurons is a central goal of neuroscience. Changes...
Recording activity from identified populations of neurons is a central goal of neuroscience. Changes...
The advent of optogenetics and genetically-encoded photosensors has provided neuroscience researcher...
Fluorescent nanosensors and molecular probes are next-generation tools for imaging chemical signalin...
Fluorescent nanosensors and molecular probes are next-generation tools for imaging chemical signalin...
Fluorescent nanosensors and molecular probes are next-generation tools for imaging chemical signalin...
Accurate visualization of structures and events at subcellular level is one of the major challenges ...
Recent developments in genetically encoded indicators of neural activity (GINAs) have greatly advanc...
© 2016, Nizhny Novgorod State Medical Academy. All rights reserved.Optogenetic tools, photochromic s...
© 2016, Nizhny Novgorod State Medical Academy. All rights reserved.Optogenetic tools, photochromic s...
© 2016, Nizhny Novgorod State Medical Academy. All rights reserved.Optogenetic tools, photochromic s...
This mini-symposium aims to provide an integrated perspective on recent developments in optogenetics...
Fluorescent protein-based biosensors are indispensable molecular tools for life science research. Th...