Computational modeling of cardiac electrophysiology and arrhythmogenesis: toward clinical translation

NA Trayanova, A Lyon, J Shade… - Physiological …, 2024‏ - journals.physiology.org
The complexity of cardiac electrophysiology, involving dynamic changes in numerous
components across multiple spatial (from ion channel to organ) and temporal (from …

2017 HRS expert consensus statement on magnetic resonance imaging and radiation exposure in patients with cardiovascular implantable electronic devices

JH Indik, JR Gimbel, H Abe… - Heart …, 2017‏ - heartrhythmjournal.com
Document Reviewers: Luis Aguinaga, MD; Timothy SE Albert, MD, FACC; Peter F. Aziz, MD,
FHRS; Alec Block, MD; Peter Brady, MB, ChB, MD; Mina Chung, MD, FACC; Michael …

[HTML][HTML] SCMR expert consensus statement for cardiovascular magnetic resonance of patients with a cardiac implantable electronic device

D Kim, JD Collins, JA White, K Hanneman… - Journal of …, 2024‏ - Elsevier
Cardiovascular magnetic resonance (CMR) is a proven imaging modality for informing
diagnosis and prognosis, guiding therapeutic decisions, and risk stratifying surgical …

[HTML][HTML] Interventional cardiovascular magnetic resonance: state-of-the-art

T Rogers, AE Campbell-Washburn… - Journal of …, 2023‏ - Elsevier
Transcatheter cardiovascular interventions increasingly rely on advanced imaging. X-ray
fluoroscopy provides excellent visualization of catheters and devices, but poor visualization …

Sudden cardiac death substrate imaged by magnetic resonance imaging: from investigational tool to clinical applications

KC Wu - Circulation: Cardiovascular Imaging, 2017‏ - ahajournals.org
Sudden cardiac death (SCD) is a devastating event afflicting 350 000 Americans annually
despite the availability of life-saving preventive therapy, the implantable cardioverter …

Whole‐heart high‐resolution late gadolinium enhancement: Techniques and clinical applications

S Toupin, T Pezel, A Bustin… - Journal of Magnetic …, 2022‏ - Wiley Online Library
In cardiovascular magnetic resonance, late gadolinium enhancement (LGE) has become the
cornerstone of myocardial tissue characterization. It is widely used in clinical routine to …

Wideband black‐blood late gadolinium enhancement imaging for improved myocardial scar assessment in patients with cardiac implantable electronic devices

P Gut, H Cochet, G Caluori… - Magnetic …, 2024‏ - Wiley Online Library
Purpose Wideband phase‐sensitive inversion recovery (PSIR) late gadolinium
enhancement (LGE) enables myocardial scar imaging in implantable cardioverter …

Implantable electronic cardiac devices and compatibility with magnetic resonance imaging

JD Miller, S Nazarian, HR Halperin - Journal of the American College of …, 2016‏ - jacc.org
There is a growing population of patients with implanted electronic cardiac devices and a
concomitant increase in the use of magnetic resonance (MR). There are theoretical safety …

[HTML][HTML] An automated near-real time computational method for induction and treatment of scar-related ventricular tachycardias

FO Campos, A Neic, CM Costa, J Whitaker… - Medical Image …, 2022‏ - Elsevier
Catheter ablation is currently the only curative treatment for scar-related ventricular
tachycardias (VTs). However, not only are ablation procedures long, with relatively high risk …

Clinical impact of cardiovascular magnetic resonance with optimized myocardial scar detection in patients with cardiac implantable devices

AN Bhuva, P Kellman, A Graham, M Ramlall… - International Journal of …, 2019‏ - Elsevier
Background Myocardial scar assessment using late gadolinium enhancement
Cardiovascular Magnetic Resonance (LGE CMR) is commonly indicated for patients with …