Dimitrios A Vrachatis, Konstantinos A Papathanasiou, Ioannis Anagnostopoulos, Maria S Kousta, Sotiria G Giotaki, Christos Piperis, Christos Karavasilis, Gerasimos Deftereos, George Marinos, Antonios A Argyris, Konstantinos Raisakis, Andreas Kaoukis, Sotirios Patsilinakos, Georgios Giannopoulos, Gerasimos Siasos, Spyridon Deftereos
Transseptal puncture constitutes the foundational step required for left atrial access, serving as the critical gateway for pulmonary vein isolation, left-sided electrophysiological ablations, and percutaneous structural heart interventions. Although fluoroscopically guided transseptal puncture demonstrates high technical success rates alongside low reported complication rates, procedural training historically relies on unstructured apprenticeship models where overlooked mechanical nuances generate the majority of periprocedural adverse events. Methodological execution demands precise interatrial septal mapping, preprocedural left atrial thrombus screening, systemic anticoagulation, and rigorous hardware de-airing protocols. Real-time imaging using transesophageal or intracardiac echocardiography enhances fluoroscopic landmarks, facilitating precise localized puncture at the thin fossa ovalis while safeguarding adjacent anatomical structures such as the aortic root, posterior left atrial wall, and pericardial space. Modern auxiliary technologies, including radiofrequency crossing devices, provide systematic escalation strategies for fibrotic or altered septal substrates. Left atrial access must be unequivocally confirmed before dilator or sheath advancement using appropriate imaging, hemodynamic, or other procedural confirmation methods according to the technique employed. Ultimate procedural safety and operator competence depend on maintaining rigorous multi-modality confirmation protocols rather than relying on technical improvisation.