Key result
Integration of monophasic action potential recording with electro-anatomical mapping systems enables precise in vivo evaluation of global cardiac repolarization sequence and dispersion.
Why the study?
Does the integration of monophasic action potential (MAP) recording with electroanatomical mapping allow for in vivo evaluation of cardiac repolarisation?
Population
Experimental and clinical settings for studying cardiac arrhythmias and basic arrhythmic mechanisms
Comparison
Non-fluoroscopic catheter-based mapping systems… vs Single-plane fluoroscopic mapping
Design
Review
Authors
Loading...
May advance repolarization research; leaves open clinical adoption pending prospective validation.
Does the integration of monophasic action potential (MAP) recording with electroanatomical mapping allow for in vivo evaluation of cardiac repolarisation?
The integration of monophasic action potential recording with 3-D electroanatomical mapping provides a novel method for studying in vivo cardiac repolarisation and basic electrophysiological mechanisms.
Platonov et al. (2006) conducted a review in Cardiac arrhythmias. Non-fluoroscopic catheter-based mapping systems and monophasic action potential (MAP) mapping was evaluated. Integration of monophasic action potential recording with electro-anatomical mapping systems enables precise in vivo evaluation of global cardiac repolarization sequence and dispersion.
Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context: