Definition and anatomical description of the left atrial appendage neck

Jakub Batko1,2,3,4, Rafał Jakiel1, Agata Krawczyk-Ożóg1,5

  • 1HEART-Heart Embryology and Anatomy Research Team, Department of Anatomy, Jagiellonian University Medical College, Cracow, Poland.

Clinical Anatomy (New York, N.Y.)
|November 30, 2023
PubMed

Insights

The left atrial appendage (LAA) neck, a source of cardiac thrombus, is anatomically defined. This study details its morphometric characteristics, aiding LAA exclusion procedures.

Area of Science:

  • Cardiovascular Anatomy
  • Medical Imaging
  • Cardiac Surgery

Background:

  • The left atrial appendage (LAA) is a primary source of cardiac thrombus formation.
  • The anatomical definition and morphometric characteristics of the LAA neck remain poorly understood.
  • Accurate LAA neck characterization is crucial for effective LAA exclusion procedures.

Purpose of the Study:

  • To precisely define the anatomical boundaries of the LAA neck.
  • To determine the detailed morphometric characteristics of the LAA neck.
  • To investigate potential differences in LAA neck morphology based on sex and LAA type.

Main Methods:

  • Three-dimensional (3D) reconstructions were generated from contrast-enhanced electrocardiography-gated computed tomography (CE-ECG-CT) scans of 200 patients.
  • The LAA neck was defined as a truncated cone connecting the LAA orifice to the lobe origin.
  • Morphometric parameters including central axis length and wall area were measured and analyzed.

Main Results:

  • The LAA neck was identified in 98.0% of cases, characterized as a truncated cone.
  • The mean central axis length was 14.7 ± 2.3 mm, and the mean wall area was 856.6 ± 316.7 mm².
  • Significant sex-based differences were observed in central axis length and wall area, but not between LAA types.

Conclusions:

  • The study provides a comprehensive definition and morphometric analysis of the LAA neck using 3D CT reconstructions.
  • Detailed LAA neck morphology, including its division into distinct surfaces, is elucidated.
  • These findings can enhance the precision and safety of LAA exclusion interventions.

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