Related Experiment Video
Updated: Oct 2, 2025

Voltage and Calcium Dual Channel Optical Mapping of Cultured HL-1 Atrial Myocyte Monolayer
Published on: March 23, 2015
Methodology for Cross-Talk Elimination in Simultaneous Voltage and Calcium Optical Mapping Measurements With
Ilija Uzelac1, Christopher J Crowley1, Shahriar Iravanian2
1School of Physics, Georgia Institute of Technology, Atlanta, GA, United States.
Abstract:
Most cardiac arrhythmias at the whole heart level result from alteration of cell membrane ionic channels and intracellular calcium concentration ([Ca2+] ) cycling with emerging spatiotemporal behavior through tissue-level coupling. For example, dynamically induced spatial dispersion of action potential duration, QT prolongation, and alternans are clinical markers for arrhythmia susceptibility in regular and heart-failure patients that originate due to changes of the transmembrane voltage (V m) and [Ca2+] . We present an optical-mapping methodology that permits simultaneous measurements of the V m - [Ca2+] signals using a single-camera without cross-talk, allowing quantitative characterization of favorable/adverse cell and tissue dynamical effects occurring from remodeling and/or drugs in heart failure. We demonstrate theoretically and experimentally in six different species the existence of a family of excitation wavelengths, we termed semasbestic, that give no change in signal for one dye, and thus can be used to record signals from another dye, guaranteeing zero cross-talk.

