Global electrophysiological mapping of the atrium: computerized three-dimensional mapping system.

Global electrophysiological mapping of the atrium: computerized three-dimensional mapping system.
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心房的整体电生理测绘:计算机化三维测绘系统。

DOI:
10.1111/j.1540-8159.1997.tb04241.x
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发表时间:
1997
期刊:
Pacing and clinical electrophysiology : PACE
影响因子:
--
通讯作者:
Boineau,JP
Boineau,JP
中科院分区:
--
文献类型:
--
作者:
Rodefeld,MD;Branham,BH;Schuessler,RB;Hand,DE;Gamache,CM;Platt,JW;Labarbera,SP;Cox,JL;Boineau,JP

文献摘要

相似文献

The atria are anatomically complex three‐dimensional (3‐D) structures. Impulse propagation is dynamic and complex during both normal conduction and arrhythmia, Atrial activation has traditionally been represented on two‐dimensional surface maps, which have inherent inaccuracies and are difficult to interpret. Interactive computerized 3‐D display facilitates interpretation of complex atrial activation sequence data obtained from form‐fitting multipoint electrodes. Accordingly, the purpose of this article is to describe the application of 3‐D form‐fitting electrode molds to the 3‐D mapping and display system developed in this laboratory for the study of complex cardiac arrhythmias. Computer generated 3‐D surface models are created from a database of serial cross‐sectional anatomical images. Points chosen on endocardial and epicardial surfaces in each cross‐sectional image are processed to create polygons defining myocardial wall boundaries. The polygons from adjacent serial images are then combined, to create a 3‐D surface model. The discrete anatomical locations of unit electrodes on multipoint electrode templates are then assigned in the proper position on the surface model. Computer analysis of simultaneous activation data from each unit electrode is performed based on parameters set by the user. Activation data from each unit electrode site are displayed on the computer surface model in a color spectrum correlating with a user‐defined time scale. Activation sequence maps can be visualized as static isochrone maps, interval maps, or as dynamic maps at variable speeds, from any 3‐D perspective. Thus, an interactive computerized 3‐D display system is described, which allows anatomically superior analysis and interpretation of complex atrial arrhythmias.