Key result
Simulation using hypothesized intercaval bundles resulted in a conduction pattern consistent with experimental data, suggesting myofiber orientation has larger effects than atrial working muscles.
Computational modeling suggests that hypothesized intercaval bundles and myofiber orientation are critical determinants of biatrial conduction patterns.
Refines biatrial conduction models; leaves open human translation and clinical relevance.
In order to better understand biatrial conduction, investigate various conduction pathways, and compare the differences between isotropic and anisotropic conductions in human atria, we present a simulation study of biatrial conduction with known/assumed conduction pathways using a recently developed human atrial model. In addition to known pathways: (1) Bachmann's bundle (BB), (2) limbus of fossa ovalis (LFO), and (3) coronary sinus (CS), we also hypothesize that there exist two fast conduction bundles that connect the crista terminalis (CT), LFO, and CS. Our simulation demonstrates that use of these fast conduction bundles results in a conduction pattern consistent with experimental data. The comparison of isotropic and anisotropoic conductions in the BB case showed that the atrial working muscles had small effect on conduction time and conduction speed, although the conductivities assigned in anisotropic conduction were two to four times higher than the isotropic conduction. In conclusion, we suggest that the hypothesized intercaval bundles play a significant role in the biatrial conduction and that myofiber orientation has larger effects on the conduction system than the atrial working muscles. This study presents readers with new insights into human atrial conduction.
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Deng et al. (2012) studied Biatrial conduction. Hypothesized fast conduction bundles connecting CT, LFO, and CS vs. Known pathways / Isotropic conduction was evaluated on Conduction pattern, time, and speed. Simulation using hypothesized intercaval bundles resulted in a conduction pattern consistent with experimental data, suggesting myofiber orientation has larger effects than atrial working muscles.
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