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Electrophysiology is the study of biological voltage changes, from a single ion channel through to a whole organ scale. Voltages can be measured using patch clamping, automated workstations, electrophysiology rigs or cell based assays. Specific cell lines, manipulators and microinjectors are also available for electrophysiology research.

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Human ASIC1a Channel EZCells™

ChanTest Corporation



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Human ASIC2a Channel EZCells™

ChanTest Corporation



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Human ASIC3 Channel EZCells™

ChanTest Corporation



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Human Cav2.2/β3/α2δ1 Calcium Channel EZCells

ChanTest Corporation



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Human Cav2.2/β3/α2δ1 Calcium Channel EZCells

ChanTest Corporation



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Human HCN4 Channel EZCells™

ChanTest Corporation



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Human Kv1.3 Potassium Channel EZCells

ChanTest Corporation



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Human KvLQT1/minK Potassium Channel EZCells™

ChanTest Corporation



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Human KCNQ4 Potassium Channel EZCells™

ChanTest Corporation



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Human hERG Potassium Channel EZCells™

ChanTest Corporation



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Human Nav1.1 Sodium Channel Division-Arrested Cells

ChanTest Corporation



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Human Nav1.2 Sodium Channel Division-Arrested Cells

ChanTest Corporation



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Human Nav1.3 Sodium Channel EZCells

ChanTest Corporation



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Human Nav1.4 Sodium Channel EZCells

ChanTest Corporation



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Human Nav1.5 Sodium Channel Division-Arrested Cells

ChanTest Corporation



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Human Nav1.6 Sodium Channel EZCells

ChanTest Corporation



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Human Nav1.7 Sodium Channel Division-Arrested Cells

ChanTest Corporation



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Human Nicotinic Receptor (nAChR) α4/β2 EZCells™ TT

ChanTest Corporation



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Action Potential Duration (APD) Testing on hESC-Derived Cardiomyocytes

ChanTest Corporation



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Human Cav2.2/β3/α2δ Calcium Channel Cell Line

ChanTest Corporation



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Human Nav1.8/b3 Sodium Channel Cell Line

ChanTest Corporation



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Human a3/β4 Nicotinic Acetylcholine Receptor Cell Line

ChanTest Corporation



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Human GABAA (α5β2γ2) Receptor Cell Line

ChanTest Corporation



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Human GABAA (a5β2γ2) Receptor Cell Line

ChanTest Corporation



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Human Cav2.2/b3/a2d Calcium Channel Cell Line

ChanTest Corporation