First-pass extracted concept

all-optical electrophysiology

Candidate: concept label3 source documents4 linked claims
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Evidence Snippets

In this Review, we appraise a decade of advances that define near-term (immediate) translation based on all-optical electrophysiology, including high-throughput screening, cardiotoxicity testing and personalized medicine assays.
Evidence 1Source 1DOIPubMedprovenance
The review explicitly centers optogenetic/all-optical electrophysiology for phenotypic screening.
Evidence 2Source 2DOIPubMedprovenance
Here we review the fundamental aspects of bioelectricity with the aim of laying a conceptual framework for all-optical electrophysiology.
Evidence 3Source 3DOIPubMedprovenance

Supporting Sources

Linked Claims

Claim 1translational application statementsupports2021Source 1DOIPubMed

Advances in cardiac optogenetics define near-term translational opportunities based on all-optical electrophysiology for high-throughput screening, cardiotoxicity testing, and personalized medicine assays.

Quoted textsource-backed
In this Review, we appraise a decade of advances that define near-term (immediate) translation based on all-optical electrophysiology, including high-throughput screening, cardiotoxicity testing and personalized medicine assays.
Claim 2review scopesupports2017Source 2DOIPubMed

This review centers optogenetic and all-optical electrophysiology approaches for phenotypic screening in drug discovery.

Claim 3measurement differencesupports2014Source 3DOIPubMed

Optogenetic tools are not electrodes, so optical and electrode-based measurements have different quirks.

Quoted textsource-backed
Optogenetic tools are not electrodes; thus, optical and electrode-based measurements have different quirks.
Claim 4scope statementsupports2014Source 3DOIPubMed

Combining optical perturbation with optical readout of membrane voltage enables electrophysiology studies in systems that were previously inaccessible to electrode-based measurements.

Quoted textsource-backed
The combination of optical perturbation and optical readout of membrane voltage opens the door to studies of electrophysiology in a huge variety of systems previously inaccessible to electrode-based measurements.