Key result
Single and dual equivalent dipoles localized simulated single and dual accessory pathways with average localization errors of 5 mm and 12 mm, respectively.
Single and dual equivalent dipoles can localize accessory pathways with average errors of 5 and 12 mm, respectively, potentially providing useful information prior to electrophysiological study.
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Hypothesis-generating for dipole localization of accessory pathways; leaves open clinical translation pending human validation.
Jazbinšek et al. (2014) studied Accessory pathways (simulated). Single-dipole and dual-dipole inverse solutions was evaluated on Localization errors for single and dual accessory pathways. Single and dual equivalent dipoles localized simulated single and dual accessory pathways with average localization errors of 5 mm and 12 mm, respectively.