Optical imaging of voltage indicators is a promising approach for detecting the activity of neuronal circuits with high spatial and temporal resolution. In this context, genetically encoded voltage indicators, combining genetic targeting and optical readout of transmembrane voltage, represent a technological breaktrough that will without doubt have a major impact in neuroscience. However, so far the existing genetically encoded voltage indicators lacked the capabilities to detect individual action potentials and fast spike trains in live animals. Here, we present a novel indicator allowing high-fidelity imaging of individual spikes and dentritic voltage dynamics in vivo. Used in combination with optogenetics, which allows to manipulate neur...
All-optical electrophysiology—spatially resolved simultaneous optical perturbation and measurement o...
Genetically encoded fluorescence voltage sensors offer the possibility of directly visualizing neura...
SummaryNervous systems process information by integrating the electrical activity of neurons in comp...
Voltage imaging and "all-optical electrophysiology" in human induced pluripotent stem cell (hiPSC)-d...
Voltage imaging and "all-optical electrophysiology" in human induced pluripotent stem cell (hiPSC)-d...
Membrane potential is the critical parameter that reflects the excitability of a neuron, and it is u...
Voltage imaging and “all-optical electrophysiology” in human induced pluripotent stem cell (hiPSC)-d...
Voltage imaging and “all-optical electrophysiology” in human induced pluripotent stem cell (hiPSC)-d...
As a “holy grail” of neuroscience, optical imaging of membrane potential could enable high resolutio...
Our ability to investigate the brain is limited by available technologies that can record biological...
We developed genetically encoded voltage indicators using a transmembrane voltage-sensing domain and...
Accurate visualization of structures and events at subcellular level is one of the major challenges ...
Genetically encoded fluorescent reporters of membrane potential promise to reveal aspects of neural ...
Protein engineering over the past four years has made rhodopsin-based genetically encoded voltage in...
These authors contributed equally to this work. Genetically encoded fluorescent reporters of membran...
All-optical electrophysiology—spatially resolved simultaneous optical perturbation and measurement o...
Genetically encoded fluorescence voltage sensors offer the possibility of directly visualizing neura...
SummaryNervous systems process information by integrating the electrical activity of neurons in comp...
Voltage imaging and "all-optical electrophysiology" in human induced pluripotent stem cell (hiPSC)-d...
Voltage imaging and "all-optical electrophysiology" in human induced pluripotent stem cell (hiPSC)-d...
Membrane potential is the critical parameter that reflects the excitability of a neuron, and it is u...
Voltage imaging and “all-optical electrophysiology” in human induced pluripotent stem cell (hiPSC)-d...
Voltage imaging and “all-optical electrophysiology” in human induced pluripotent stem cell (hiPSC)-d...
As a “holy grail” of neuroscience, optical imaging of membrane potential could enable high resolutio...
Our ability to investigate the brain is limited by available technologies that can record biological...
We developed genetically encoded voltage indicators using a transmembrane voltage-sensing domain and...
Accurate visualization of structures and events at subcellular level is one of the major challenges ...
Genetically encoded fluorescent reporters of membrane potential promise to reveal aspects of neural ...
Protein engineering over the past four years has made rhodopsin-based genetically encoded voltage in...
These authors contributed equally to this work. Genetically encoded fluorescent reporters of membran...
All-optical electrophysiology—spatially resolved simultaneous optical perturbation and measurement o...
Genetically encoded fluorescence voltage sensors offer the possibility of directly visualizing neura...
SummaryNervous systems process information by integrating the electrical activity of neurons in comp...