we developed an opto-electronic feedback loop-based system integrating cellular electrophysiology, real-time computing, and optogenetic approaches
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opto-electronic feedback loop-based system
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The system accurately restored and preserved cardiac action-potential morphologies in the presence of electrical perturbations of different origin without prior knowledge of the disturbance.
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This allowed accurate restoration and preservation of cardiac AP morphologies in the presence of electrical perturbations of different origin in an unsupervised, self-regulatory manner, without any prior knowledge of the disturbance.
The reported opto-electronic feedback loop system enables real-time control of action-potential morphology in excitable cells.
Quoted textsource-backed
we developed an opto-electronic feedback loop-based system integrating cellular electrophysiology, real-time computing, and optogenetic approaches and applied it to monolayers of heart muscle cells
The system could enforce arbitrary action-potential waveforms onto heart muscle cell monolayers.
Quoted textsource-backed
Moreover, arbitrary AP waveforms could be enforced onto these cells.