Using anatomical landmark to avoid phrenic nerve injury during balloon-based procedures in atrial fibrillation

Nicolina M Smith1, Larry Segars2, Travis Kauffman3

  • 1Kansas City University of Medicine and Biosciences, 1750 Independence Avenue, Kansas City, MO, 64106-1453, USA. NMSmith@Kcumb.edu.

Insights

This study measured distances to the right phrenic nerve (RPN) during catheter ablation procedures. Findings help physicians avoid RPN injury by using thoracic vertebrae as landmarks.

Area of Science:

  • Cardiology
  • Medical Imaging
  • Anatomy

Background:

  • Atrial fibrillation (AF) increases stroke risk, necessitating treatment like catheter ablation.
  • Cryoballoon ablation is standard for drug-refractory AF, but carries a risk of phrenic nerve injury (PNI).

Purpose of the Study:

  • To measure distances from anatomical landmarks to the right phrenic nerve (RPN).
  • To establish a safe zone for physicians performing cryoballoon ablation.
  • To reduce the incidence of phrenic nerve injury (PNI) during AF ablation.

Main Methods:

  • Utilized 30 cadaveric specimens for anatomical measurements.
  • Measured distances from the right superior pulmonary vein orifice (RSPV) and the sixth thoracic vertebra (T6) to the RPN.
  • Correlated left atrial (LA) size with RPN location.

Main Results:

  • Average distance from RPN to RSPV was 9.6 mm (range 4.3-18.8 mm).
  • Average distance from RPN to T6 was 30.6 mm (range 13.7-49.9 mm).
  • A trend suggested larger left atria correlated with increased measured distances.

Conclusions:

  • The sixth thoracic vertebra (T6) can serve as a fluoroscopic landmark to approximate RPN position.
  • Preoperative echocardiography to assess left atrial size may aid in determining RPN location.
  • These measurements can help physicians avoid RPN injury during cryoballoon ablation.
Abstract

Related Concept Videos