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Cardiac conductive system excitation maps using intracardiac tissue Doppler imaging
Lixue Yin1, Changqiong Zheng, Li Cai
1Echocardiography Laboratory, Sichuan Provincial Hospital, Chengdu 610071, China. yinlixue@yahoo.com
Objective:
To precisely visualize cardiac anatomic structures and simultaneously depict electro-mechanical events for the purpose of precise underblood intervention.
Methods:
Intracardiac high-resolution tissue Doppler imaging was used to map real time myocardial contractions in response to electrical activation within the anatomic structure of the cardiac conductive system using a canine open-chest model.
Results:
The detailed inner anatomic structure of the cardiac conductive system at different sites (i.e., sino-atrial, atrial wall, atrial-ventricular node and ventricular wall) with the inside onset and propagation of myocardial velocity and acceleration induced by electrical activation was clearly visualized and quantitatively evaluated.
Conclusion:
The simultaneous single modality visualization of the anatomy, function and electrical events of the cardiac conductive system will foster target pacing and precision ablation.