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Published on: February 26, 2013
Morphology of the Left Atrial Appendage: Introduction of a New Simplified Shape-Based Classification System
Katarzyna Słodowska1, Elżbieta Szczepanek1, Damian Dudkiewicz1
1HEART - Heart Embryology and Anatomy Research Team, Department of Anatomy, Jagiellonian University Medical College, Cracow, Poland.
Insights
This study classified left atrial appendage (LAA) anatomy into three shapes: cauliflower, chicken wing, and arrowhead. Age and heart weight correlate with LAA size and orifice shape, potentially influencing thrombogenic risk.
Area of Science:
- Cardiovascular Anatomy
- Medical Imaging
- Cardiac Surgery
Background:
- The left atrial appendage (LAA) is a cardiac structure implicated in thrombosis and arrhythmias.
- Understanding LAA morphology is crucial for clinical interventions.
Purpose of the Study:
- To develop a simple classification system for LAA body shape.
- To analyze the anatomical variations within the LAA.
Main Methods:
- Examination of 200 autopsied human hearts.
- Categorization of LAA into three distinct morphological types: cauliflower, chicken wing, and arrowhead.
- Measurement of LAA dimensions, orifice size, and pectinate muscle thickness.
Main Results:
- Three LAA types identified: cauliflower (36.5%), chicken wing (37.5%), and arrowhead (26.0%).
- Significant differences in LAA length and pectinate muscle thickness were observed among the types.
- LAA volume and orifice size were not type-dependent but correlated positively with donor age and heart weight.
Conclusions:
- A novel, simple classification system for LAA morphology based on body shape has been established.
- Increasing age and heart weight are associated with LAA enlargement and oval orifices.
- This classification may aid in predicting thrombogenic potential and guiding LAA interventions.
Background:
The left atrial appendage (LAA) is a heart structure with known prothrombogenic and pro-arrhythmogenic properties.
Aim:
The aim of this study was to evaluate the specific anatomy of the LAA and to create a simple classification system based on the shape of its body.
Method And Results:
This study investigated 200 randomly selected autopsied human hearts (25.0% females, 46.6±19.1 years old). Three (3) types of LAAs were distinguished: the cauliflower type (no bend, limited overall length, compact structure [36.5%]); the chicken wing type (substantial bend in the dominant lobe [37.5%]), and the arrowhead type (no bend, one dominant lobe of substantial length [26.0%]). Additional accessory lobes were present in 55.5% of all LAAs. Significant variations between category types were noted in LAA length (chicken wing: 35.7±9.8 mm, arrowhead: 30.8±10.1 mm, cauliflower: 22.3±9.6 mm [p<0.001]) and in the thickness of pectinate muscles located within the LAA apex (arrowhead: 1.2±0.7 mm; cauliflower: 1.1±0.6 mm; chicken wing: 0.9±0.6 mm [p<0.001]). Left atrial appendage volume and orifice size were not affected by the type of LAA shape. The age of the donor was positively correlated with LAA volume (r=0.29, p=0.005), body length (r=0.26, p=0.012), and area of the orifice (r=0.36, p<0.001). Donors with an oval LAA orifice were significantly older than those with round orifices (50.2±16.6 vs 43.7±20.4 years [p=0.014]) and had significantly heavier hearts (458.2±104.8 vs 409.6±114.1g [p=0.002]).
Conclusions:
This study delivered a new simple classification system of the LAA based on its body shape. An increase in age and heart weight was associated with LAA enlargement and a more oval-shaped orifice. Results of current study may help to estimate the different thrombogenic properties associated with each LAA type and be an assistance during planning and performing interventions on LAA.
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