<div><p>Channelrhodospin-2 (ChR2), a light-sensitive ion channel, and its variants have emerged as new excitatory optogenetic tools not only in neuroscience, but also in other areas, including cardiac electrophysiology. An accurate quantitative model of ChR2 is necessary for <i>in silico</i> prediction of the response to optical stimulation in realistic tissue/organ settings. Such a model can guide the rational design of new ion channel functionality tailored to different cell types/tissues. Focusing on one of the most widely used ChR2 mutants (H134R) with enhanced current, we collected a comprehensive experimental data set of the response of this ion channel to different irradiances and voltages, and used these data to develop a model of C...
Cardiac action potential (AP) shape and propagation are regulated by several key dynamic factors suc...
Channelrhodopsins-2 (ChR2) are a class of light sensitive proteins that offer the ability to use lig...
BACKGROUND: Optogenetic manipulation of a neuronal network enables one to reveal how high-order func...
Channelrhodospin-2 (ChR2), a light-sensitive ion channel, and its variants have emerged as new excit...
ABSTRACT Channelrhodopsin-2 (ChR2) is a light-activated ion channel that can allow scientists to ele...
AbstractOptogenetics provides an alternative to electrical stimulation to manipulate membrane voltag...
AbstractThe ability to stimulate mammalian cells with light has significantly changed our understand...
Channelrhodpsin-2 (ChR2) is a light sensitive ion chan-nel protein currently investigated for millis...
Optogenetic defibrillation of hearts expressing light-sensitive cation channels (e.g., ChR2) has bee...
Channels Channelrhodopsin-2 (ChR2) is a light-activated microbial cation channel which can be used t...
Optogenetics is a recently established experimental technique that involves the heterologous express...
Optogenetics is an emerging method that uses light to manipulate electrical activity in excitable ce...
Voltage-gated sodium (Na\(^+\)) channels respond to short membrane depolarization with conformationa...
Background and Purpose Optogenetic control of electromechanical coupling in vascular smooth muscle c...
We engineered light-gated channelrhodopsins (ChRs) whose current strength and light sensitivity enab...
Cardiac action potential (AP) shape and propagation are regulated by several key dynamic factors suc...
Channelrhodopsins-2 (ChR2) are a class of light sensitive proteins that offer the ability to use lig...
BACKGROUND: Optogenetic manipulation of a neuronal network enables one to reveal how high-order func...
Channelrhodospin-2 (ChR2), a light-sensitive ion channel, and its variants have emerged as new excit...
ABSTRACT Channelrhodopsin-2 (ChR2) is a light-activated ion channel that can allow scientists to ele...
AbstractOptogenetics provides an alternative to electrical stimulation to manipulate membrane voltag...
AbstractThe ability to stimulate mammalian cells with light has significantly changed our understand...
Channelrhodpsin-2 (ChR2) is a light sensitive ion chan-nel protein currently investigated for millis...
Optogenetic defibrillation of hearts expressing light-sensitive cation channels (e.g., ChR2) has bee...
Channels Channelrhodopsin-2 (ChR2) is a light-activated microbial cation channel which can be used t...
Optogenetics is a recently established experimental technique that involves the heterologous express...
Optogenetics is an emerging method that uses light to manipulate electrical activity in excitable ce...
Voltage-gated sodium (Na\(^+\)) channels respond to short membrane depolarization with conformationa...
Background and Purpose Optogenetic control of electromechanical coupling in vascular smooth muscle c...
We engineered light-gated channelrhodopsins (ChRs) whose current strength and light sensitivity enab...
Cardiac action potential (AP) shape and propagation are regulated by several key dynamic factors suc...
Channelrhodopsins-2 (ChR2) are a class of light sensitive proteins that offer the ability to use lig...
BACKGROUND: Optogenetic manipulation of a neuronal network enables one to reveal how high-order func...