AbstractFluorescent protein voltage sensors are recombinant proteins that are designed as genetically encoded cellular probes of membrane potential using mechanisms of voltage-dependent modulation of fluorescence. Several such proteins, including VSFP2.3 and VSFP3.1, were recently reported with reliable function in mammalian cells. They were designed as molecular fusions of the voltage sensor of Ciona intestinalis voltage sensor containing phosphatase with a fluorescence reporter domain. Expression of these proteins in cell membranes is accompanied by additional dynamic membrane capacitance, or “sensing capacitance”, with feedback effect on the native electro-responsiveness of targeted cells. We used recordings of sensing currents and fluor...
Voltage imaging with fluorescent dyes offers promise for interrogating the complex roles of membrane...
Fluorescent proteins have been used to generate a variety of biosensors to optically monitor biologi...
Comprehensively mapping and recording the electrical inputs and outputs of multiple neurons simultan...
AbstractFluorescent protein voltage sensors are recombinant proteins that are designed as geneticall...
Over the last decade, optical neuroimaging methods have been enriched by engineered biosensors deriv...
<div><p>FRET (Förster Resonance Energy Transfer)-based protein voltage sensors can be useful for mon...
Genetically-encoded optical probes for membrane potential hold the promise of monitoring electrical ...
There is a pressing need in neuroscience for genetically-encoded, fluorescent voltage probes that ca...
SummaryMonitoring neuronal electrical activity using fluorescent protein-based voltage sensors has b...
Neuronal networks are responsible for complicated responses to stimuli and behavior. Understanding ...
BACKGROUND: Fluorescent proteins have been used to generate a variety of biosensors to optically mon...
Genetically encoded fluorescence voltage sensors offer the possibility of directly visualizing neura...
The hybrid voltage sensor (hVOS) combines membrane-targeted green fluorescent protein and the hydrop...
These authors contributed equally to this work. Genetically encoded fluorescent reporters of membran...
Genetically encoded fluorescent reporters of membrane potential promise to reveal aspects of neural ...
Voltage imaging with fluorescent dyes offers promise for interrogating the complex roles of membrane...
Fluorescent proteins have been used to generate a variety of biosensors to optically monitor biologi...
Comprehensively mapping and recording the electrical inputs and outputs of multiple neurons simultan...
AbstractFluorescent protein voltage sensors are recombinant proteins that are designed as geneticall...
Over the last decade, optical neuroimaging methods have been enriched by engineered biosensors deriv...
<div><p>FRET (Förster Resonance Energy Transfer)-based protein voltage sensors can be useful for mon...
Genetically-encoded optical probes for membrane potential hold the promise of monitoring electrical ...
There is a pressing need in neuroscience for genetically-encoded, fluorescent voltage probes that ca...
SummaryMonitoring neuronal electrical activity using fluorescent protein-based voltage sensors has b...
Neuronal networks are responsible for complicated responses to stimuli and behavior. Understanding ...
BACKGROUND: Fluorescent proteins have been used to generate a variety of biosensors to optically mon...
Genetically encoded fluorescence voltage sensors offer the possibility of directly visualizing neura...
The hybrid voltage sensor (hVOS) combines membrane-targeted green fluorescent protein and the hydrop...
These authors contributed equally to this work. Genetically encoded fluorescent reporters of membran...
Genetically encoded fluorescent reporters of membrane potential promise to reveal aspects of neural ...
Voltage imaging with fluorescent dyes offers promise for interrogating the complex roles of membrane...
Fluorescent proteins have been used to generate a variety of biosensors to optically monitor biologi...
Comprehensively mapping and recording the electrical inputs and outputs of multiple neurons simultan...