All-optical electrophysiology—spatially resolved simultaneous optical perturbation and measurement of membrane voltage—would open new vistas in neuroscience research. We evolved two archaerhodopsin-based voltage indicators, QuasAr1 and 2, which show improved brightness and voltage sensitivity, microsecond response times, and produce no photocurrent. We engineered a novel channelrhodopsin actuator, CheRiff, which shows improved light sensitivity and kinetics, and spectral orthogonality to the QuasArs. A co-expression vector, Optopatch, enabled crosstalk-free genetically targeted all-optical electrophysiology. In cultured neurons, we combined Optopatch with patterned optical excitation to probe back-propagating action potentials in dendritic ...
Cell to cell communication in the central nervous system is encoded into transient and local membran...
<p>We introduce a novel all-optical assay for functional studies of biological neural networks in vi...
BACKGROUND: Optogenetic manipulation of a neuronal network enables one to reveal how high-order func...
All-optical electrophysiology—spatially resolved simultaneous optical perturbation and measurement o...
We introduce a novel all-optical assay for functional studies of biological neural networks in vitro...
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...
We introduce a novel all-optical assay for functional studies of biological neural networks in vitro...
Optical imaging of voltage indicators is a promising approach for detecting the activity of neuronal...
Recent advances in optogenetics have enabled simultaneous optical perturbation and optical readout o...
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...
Accurate visualization of structures and events at subcellular level is one of the major challenges ...
Understanding the pathophysiology of many complex neural disorders (like Alzheimer's, Parkinson's, d...
<p>We introduce a novel all-optical assay for functional studies of biological neural networks in vi...
Cell to cell communication in the central nervous system is encoded into transient and local membran...
<p>We introduce a novel all-optical assay for functional studies of biological neural networks in vi...
BACKGROUND: Optogenetic manipulation of a neuronal network enables one to reveal how high-order func...
All-optical electrophysiology—spatially resolved simultaneous optical perturbation and measurement o...
We introduce a novel all-optical assay for functional studies of biological neural networks in vitro...
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...
We introduce a novel all-optical assay for functional studies of biological neural networks in vitro...
Optical imaging of voltage indicators is a promising approach for detecting the activity of neuronal...
Recent advances in optogenetics have enabled simultaneous optical perturbation and optical readout o...
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...
Accurate visualization of structures and events at subcellular level is one of the major challenges ...
Understanding the pathophysiology of many complex neural disorders (like Alzheimer's, Parkinson's, d...
<p>We introduce a novel all-optical assay for functional studies of biological neural networks in vi...
Cell to cell communication in the central nervous system is encoded into transient and local membran...
<p>We introduce a novel all-optical assay for functional studies of biological neural networks in vi...
BACKGROUND: Optogenetic manipulation of a neuronal network enables one to reveal how high-order func...