Electrophysiology lab efficiency simulation: a comparison between novel dual-energy lattice-tip and conventional contact-force sensing radiofrequency ablation systems.

Mountantonakis SE, Anter E, Marschke J, Mburu W, Holbrook R, Lim HW, Taigen TL, SPHERE Per-AF Investigators

Open source

DOI
10.25270/jic/25.00094
Published
2025 Dec
Container
The Journal of invasive cardiology
Publisher
Not recorded
Open access
no

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BibTeX

@article{allodium:10.25270/jic/25.00094,
  title = {Electrophysiology lab efficiency simulation: a comparison between novel dual-energy lattice-tip and conventional contact-force sensing radiofrequency ablation systems.},
  author = {Mountantonakis SE and Anter E and Marschke J and Mburu W and Holbrook R and Lim HW and Taigen TL and SPHERE Per-AF Investigators},
  year = {2025},
  journal = {The Journal of invasive cardiology},
  doi = {10.25270/jic/25.00094},
  url = {https://doi.org/10.25270/jic/25.00094}
}

RIS

TY  - JOUR
TI  - Electrophysiology lab efficiency simulation: a comparison between novel dual-energy lattice-tip and conventional contact-force sensing radiofrequency ablation systems.
AU  - Mountantonakis SE
AU  - Anter E
AU  - Marschke J
AU  - Mburu W
AU  - Holbrook R
AU  - Lim HW
AU  - Taigen TL
AU  - SPHERE Per-AF Investigators
PY  - 2025
JO  - The Journal of invasive cardiology
DO  - 10.25270/jic/25.00094
UR  - https://doi.org/10.25270/jic/25.00094
ER  - 

APA

SE, M., E, A., J, M., W, M., R, H., HW, L., TL, T., & Investigators, S. P. (2025). Electrophysiology lab efficiency simulation: a comparison between novel dual-energy lattice-tip and conventional contact-force sensing radiofrequency ablation systems.. The Journal of invasive cardiology. https://doi.org/10.25270/jic/25.00094

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