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Related Concept Videos

Mitral Stenosis III: Medical Management01:26

Mitral Stenosis III: Medical Management

Mitral stenosis, a condition marked by the narrowing of the mitral valve, necessitates an integrated approach for effective management. This approach includes preventative measures, medical therapy, and surgical interventions to reduce symptoms and prevent complications.PreventionPrevention of mitral stenosis primarily focuses on reducing the incidence of bacterial infections, particularly streptococcal infections, which can lead to rheumatic fever and subsequent valvular damage. Timely...
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Aortic Regurgitation III: Medical Management

Aortic regurgitation (AR) is when the aortic valve does not close or seal properly, leading to backward blood circulation from the aorta into the left ventricle during diastole. Common causes of AR include rheumatic heart disease, congenital valve defects, and aortic root dilation. Managing AR requires a multifaceted approach to alleviate symptoms, preserve left ventricular function, and address the underlying cause of the regurgitation. Patients with symptomatic AR or significant left...
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Peripheral Artery Disease III: Interprofessional Care

Peripheral Artery Disease (PAD) is characterized by narrowed arteries that diminish blood flow to the extremities. Effective management of PAD requires an interprofessional approach involving various healthcare professionals. The critical aspects of interprofessional care for PAD patients focus on risk factor modification, drug therapy, exercise therapy, nutrition therapy, critical limb ischemia care, and interventional radiology and surgical procedures.The primary treatment goal for PAD...
Cardiac Catheterization I: Pre-Procedure Overview01:28

Cardiac Catheterization I: Pre-Procedure Overview

Cardiac catheterization is an invasive diagnostic technique used to identify and evaluate structural and functional diseases of the heart and major blood vessels. This technique diagnoses congenital heart disease, coronary artery disease, valvular heart disease, and coronary spasms and assesses ventricular function. It helps guide treatment decisions, including the need for revascularization procedures like percutaneous coronary intervention (PCI) or coronary artery bypass grafting (CABG) and...

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Articles linked to this work by shared authors, journal, and citation graph.

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Comparing transcatheter aortic valves: time to look beyond simplistic categorisations.

EuroIntervention : journal of EuroPCR in collaboration with the Working Group on Interventional Cardiology of the European Society of Cardiology·2026
Same author

Balloon-Assisted Translocation of the Mitral Anterior Leaflet to Prevent Outflow Tract Obstruction During TMVR: The BATMAN Registry.

JACC. Cardiovascular interventions·2026
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Leaflet Modification to Mitigate Coronary Obstruction Risk During TAVR: Results From the LOFTER-TAVR Registry.

JACC. Cardiovascular interventions·2026
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Impact of Leaflet Modification on Redo-TAVR Feasibility: A Computed Tomography Simulation Study.

JACC. Cardiovascular interventions·2026
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Blood Transfusion After Surgical and Transcatheter Aortic Valve Replacement: Implications for Healthcare Systems.

Heart, lung & circulation·2026
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Progression of bicuspid-related aortopathy in patients undergoing transcatheter aortic valve implantation: Rationale and design of the international, multicenter PROSPERO-TAVI registry.

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Related Experiment Video

Updated: Jul 15, 2026

Technique and Patient Selection Criteria of Right Anterior Mini-Thoracotomy for Minimal Access Aortic Valve Replacement
08:50

Technique and Patient Selection Criteria of Right Anterior Mini-Thoracotomy for Minimal Access Aortic Valve Replacement

Published on: March 26, 2018

Procedural Strategies for Optimal Transcatheter Aortic Valve Replacement: An International Position Statement.

Annette Maznyczka1, Thomas Pilgrim2, David Hildick-Smith3

  • 1The Heart Center, Rigshospitalet, Copenhagen, Denmark.

JACC. Cardiovascular Interventions
|July 13, 2026
PubMed
Summary

Optimizing transcatheter aortic valve replacement (TAVR) with the TAVR CODE framework improves valve function and durability. This procedural standardization aims for better patient outcomes and longer-lasting clinical benefits in TAVR procedures.

Keywords:
coaxialitycommissural alignmentlifetime managementtranscatheter aortic valve replacementunderexpansion

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Upper-extremity Approach for Secondary Access in Transfemoral Transcatheter Aortic Valve Implantation
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Published on: August 8, 2025

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Last Updated: Jul 15, 2026

Technique and Patient Selection Criteria of Right Anterior Mini-Thoracotomy for Minimal Access Aortic Valve Replacement
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Technique and Patient Selection Criteria of Right Anterior Mini-Thoracotomy for Minimal Access Aortic Valve Replacement

Published on: March 26, 2018

Upper-extremity Approach for Secondary Access in Transfemoral Transcatheter Aortic Valve Implantation
06:04

Upper-extremity Approach for Secondary Access in Transfemoral Transcatheter Aortic Valve Implantation

Published on: August 8, 2025

Area of Science:

  • Cardiovascular Medicine
  • Interventional Cardiology
  • Medical Device Technology

Background:

  • Transcatheter aortic valve replacement (TAVR) is expanding to younger patients, necessitating procedural optimization for improved long-term outcomes.
  • Key goals include maximizing clinical benefit, ensuring durable results, preserving coronary access, and minimizing permanent pacemaker implantation.

Purpose of the Study:

  • To introduce and detail the TAVR CODE framework for standardizing intraprocedural evaluation of transcatheter heart valve (THV) implantation.
  • To explore the potential impact of implementing the TAVR CODE framework on THV function, durability, and clinical outcomes.

Main Methods:

  • The TAVR CODE framework assesses four fluoroscopic parameters: coaxiality, orientation, depth, and expansion.
  • Discussion of ongoing randomized trials evaluating pre- and postdilatation, specific balloon-expandable valve techniques, and commissural alignment.
  • Mention of intravascular ultrasound and innovative THV designs for assessing expansion and improving consistency.

Main Results:

  • Systematic implementation of the TAVR CODE framework is hypothesized to enhance valve performance and durability.
  • Expected benefits include improved afterload reduction, enhanced left ventricular reverse remodeling, and increased, longer-lasting clinical benefits.

Conclusions:

  • The TAVR CODE framework offers a standardized approach to optimize index TAVR outcomes.
  • Expert perspective on procedural strategies and management frameworks for achieving optimal THV implantation and patient benefits.