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Genetically targeted single-channel optical recording reveals multiple  Orai1 gating states and oscillations in calcium influx | PNAS
Genetically targeted single-channel optical recording reveals multiple Orai1 gating states and oscillations in calcium influx | PNAS

Genetically targeted single-channel optical recording reveals multiple  Orai1 gating states and oscillations in calcium influx | PNAS
Genetically targeted single-channel optical recording reveals multiple Orai1 gating states and oscillations in calcium influx | PNAS

Sensors | Free Full-Text | Sensing Senses: Optical Biosensors to Study  Gustation
Sensors | Free Full-Text | Sensing Senses: Optical Biosensors to Study Gustation

Highlightable Ca2+ Indicators for Live Cell Imaging | Journal of the  American Chemical Society
Highlightable Ca2+ Indicators for Live Cell Imaging | Journal of the American Chemical Society

A near-infrared genetically encoded calcium indicator for in vivo imaging |  Nature Biotechnology
A near-infrared genetically encoded calcium indicator for in vivo imaging | Nature Biotechnology

Photoswitching alters fluorescence readout of jGCaMP8 Ca2+ indicators  tethered to Orai1 channels | PNAS
Photoswitching alters fluorescence readout of jGCaMP8 Ca2+ indicators tethered to Orai1 channels | PNAS

A turquoise fluorescence lifetime-based biosensor for quantitative imaging  of intracellular calcium | Nature Communications
A turquoise fluorescence lifetime-based biosensor for quantitative imaging of intracellular calcium | Nature Communications

Biomolecules | Free Full-Text | Optimizing Calcium Detection Methods in  Animal Systems: A Sandbox for Synthetic Biology
Biomolecules | Free Full-Text | Optimizing Calcium Detection Methods in Animal Systems: A Sandbox for Synthetic Biology

Functional interrogation of neural circuits with virally transmitted  optogenetic tools - ScienceDirect
Functional interrogation of neural circuits with virally transmitted optogenetic tools - ScienceDirect

Cells | Free Full-Text | Optogenetic Methods to Investigate Brain  Alterations in Preclinical Models
Cells | Free Full-Text | Optogenetic Methods to Investigate Brain Alterations in Preclinical Models

A positively tuned voltage indicator for extended electrical recordings in  the brain | Nature Methods
A positively tuned voltage indicator for extended electrical recordings in the brain | Nature Methods

Reversible silencing of endogenous receptors in intact brain tissue using  two-photon pharmacology | bioRxiv
Reversible silencing of endogenous receptors in intact brain tissue using two-photon pharmacology | bioRxiv

A genetically encoded near-infrared fluorescent calcium ion indicator |  Nature Methods
A genetically encoded near-infrared fluorescent calcium ion indicator | Nature Methods

High-throughput longitudinal electrophysiology screening of mature  chamber-specific hiPSC-CMs using optical mapping - ScienceDirect
High-throughput longitudinal electrophysiology screening of mature chamber-specific hiPSC-CMs using optical mapping - ScienceDirect

Chemosensors | Free Full-Text | Illuminating Brain Activities with  Fluorescent Protein-Based Biosensors
Chemosensors | Free Full-Text | Illuminating Brain Activities with Fluorescent Protein-Based Biosensors

Voltage and Calcium Imaging of Brain Activity - ScienceDirect
Voltage and Calcium Imaging of Brain Activity - ScienceDirect

Frontiers | An Optogenetic Arrhythmia Model—Insertion of Several  Catecholaminergic Polymorphic Ventricular Tachycardia Mutations Into  Caenorhabditis elegans UNC-68 Disturbs Calstabin-Mediated Stabilization of  the Ryanodine Receptor Homolog
Frontiers | An Optogenetic Arrhythmia Model—Insertion of Several Catecholaminergic Polymorphic Ventricular Tachycardia Mutations Into Caenorhabditis elegans UNC-68 Disturbs Calstabin-Mediated Stabilization of the Ryanodine Receptor Homolog

Antigen discrimination by T cells relies on size-constrained microvillar  contact | Nature Communications
Antigen discrimination by T cells relies on size-constrained microvillar contact | Nature Communications

Improved Orange and Red Ca2+ Indicators and Photophysical Considerations  for Optogenetic Applications | ACS Chemical Neuroscience
Improved Orange and Red Ca2+ Indicators and Photophysical Considerations for Optogenetic Applications | ACS Chemical Neuroscience

Biomolecules | Free Full-Text | Optimizing Calcium Detection Methods in  Animal Systems: A Sandbox for Synthetic Biology
Biomolecules | Free Full-Text | Optimizing Calcium Detection Methods in Animal Systems: A Sandbox for Synthetic Biology

Biomolecules | Free Full-Text | Optimizing Calcium Detection Methods in  Animal Systems: A Sandbox for Synthetic Biology
Biomolecules | Free Full-Text | Optimizing Calcium Detection Methods in Animal Systems: A Sandbox for Synthetic Biology

IJMS | Free Full-Text | LHC-like Proteins: The Guardians of Photosynthesis
IJMS | Free Full-Text | LHC-like Proteins: The Guardians of Photosynthesis

Genetically Encoded Fluorescence/Bioluminescence Bimodal Indicators for  Ca2+ Imaging | ACS Sensors
Genetically Encoded Fluorescence/Bioluminescence Bimodal Indicators for Ca2+ Imaging | ACS Sensors

Using Genetically Encoded Fluorescent Biosensors for Quantitative In Vivo  Imaging | SpringerLink
Using Genetically Encoded Fluorescent Biosensors for Quantitative In Vivo Imaging | SpringerLink

Biomolecules | Free Full-Text | Optimizing Calcium Detection Methods in  Animal Systems: A Sandbox for Synthetic Biology
Biomolecules | Free Full-Text | Optimizing Calcium Detection Methods in Animal Systems: A Sandbox for Synthetic Biology

Frontiers | Using Light-Sheet Microscopy to Study Spontaneous Activity in  the Developing Lateral-Line System
Frontiers | Using Light-Sheet Microscopy to Study Spontaneous Activity in the Developing Lateral-Line System

Photoswitching alters fluorescence readout of jGCaMP8 Ca2+ indicators  tethered to Orai1 channels | PNAS
Photoswitching alters fluorescence readout of jGCaMP8 Ca2+ indicators tethered to Orai1 channels | PNAS

Antigen discrimination by T cells relies on size-constrained microvillar  contact | Nature Communications
Antigen discrimination by T cells relies on size-constrained microvillar contact | Nature Communications