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C J Kafer

Publications and source records attributed to C J Kafer.

2 recordsLinked to original sources

Internodal pathways in the human atria: a model study.

An electrophysical/anatomical computer model of human atrial excitation was used to investigate the controversy over specialized internodal pathways. The only atrial pathways that have been thoroughly described in the literature are those that connect the sinoatrial (SA) and atrioventricular (AV) nodes, and the right and left atria. By incorporating pathways of rapid propagation representing the internodal and interatrial tracts, anisotropy was introduced into an otherwise isotropic atrial model. Simulated epicardial isochrone maps, heart vector loops, and electrograms were calculated for both the isotropic and anisotropic atrial models, and the simulations were compared with observed normal data. Although the simulations using the anisotropic model compare more favorably with real data, the results suggest that there are more pathways of rapid propagation in the atria than those described and that a global anisotropy based on morphology and fiber direction is a more likely explanation than rapid propagation confined to a few specialized pathways.

Anisotropy↗

Characterizing His-Purkinje system signals observed at the body surface. A model study.

A computer model of the His-Purkinje system (HPS), based on human geometry, has been developed and used in conjunction with an atrial model and an inhomogeneous torso model to calculate electrocardiograms (ECGs) and isofield potential and magnetic maps. The calculated electric potential maximum for penetrating His bundle (HB) activity is 0.6 microV, somewhat smaller than reported by others. A calculated ECG of combined atrial and HPS activity indicates that atrial repolarization contributes to the ramp pattern observed in the PR segment. Simulated isofield distributions indicate two features that should be present in serial-measured HPS maps: (1) maps preceding HB activity should be included to illustrate the nature of the onset of HB activity and (2) maps should show a change in the location and magnitude of the extrema commensurate with the change in direction and magnitude of the source current circumscribed by the anatomy of the HB and bundle branches.

Action Potentials↗