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Insights into Arch Vessel Development in the Bovine Aortic Arch
Alex M Meyer1, Joseph W Turek2, Julia Froud1
1Carver College of Medicine, University of Iowa, Iowa City, IA, USA.
Insights
Bovine aortic arch anatomy, common in infants, is linked to higher recoarctation risk. This study reveals specific arch vessel displacements in bovine arches, offering insights into coarctation repair outcomes.
Area of Science:
- Cardiovascular anatomy
- Pediatric cardiology
- Embryology
Background:
- The bovine aortic arch is the most frequent aortic arch variant.
- Children with bovine arch anatomy and coarctation face increased recoarctation risk after repair.
Purpose of the Study:
- Investigate the reasons for higher coarctation rates in bovine arches.
- Analyze arch vessel branching patterns and embryologic origins.
- Delineate arch vessel displacement patterns in bovine versus normal anatomy.
Main Methods:
- Retrospective review of 178 infant CT angiograms and CT scans (2007-2017).
- Utilized multiplanar reconstruction software to visualize key aortic arch structures.
- Measured and standardized inter-branch distances (HV1, HV2, HV3) relative to body surface area and sinotubular junction diameter.
Main Results:
- Bovine arches identified in 32.6% of patients.
- Total arch length was comparable between bovine and normal arches.
- Significant differences observed in HV3 length and combined distances (HV1+HV2, HV2+HV3) between the two groups.
- Proximal shift of the left subclavian artery and distal shift of the innominate artery noted in bovine arches.
Conclusions:
- Bovine aortic arch anatomy involves specific vessel displacements that may influence coarctation repair.
- Understanding these anatomical variations is crucial for predicting and managing recoarctation risk in pediatric patients.
Abstract:
A bovine arch is the most common aortic arch variant, characterized by a common origin of the innominate artery and the left common carotid artery. Data have shown that children with bovine arch anatomy and coarctation are at a significantly higher risk of recoarctation following coarctation repair. This study aims to explain the higher coarctation rates, assess the branching of the arch vessels, understand their embryologic origins, and delineate the patterns of displacement of the arch vessels in bovine versus normal anatomy. This retrospective study reviewed the medical records of 178 infants ( < 1-year-old) who had a chest CT Angiogram (58) or CT (120) at our institution between 2007 and 2017. Multiplanar reconstruction software was used to obtain the best image plane to display the sinotubular junction, innominate artery, left common carotid artery, and left subclavian artery. We measured the distances between the branches as HV1, HV2, and HV3. All distances were standardized to body surface area and sinotubular junction diameter, which is a novel method. Bovine arches were found in 32.6% of patients. The total arch length of both arch anatomies was similar. HV3 is longer in bovine arches. HV1 + HV2 and HV2 + HV3 are longer in the normal arches than the bovine arches. The left subclavian artery moves proximally, and the innominate artery moves slightly distally to form the bovine arch and decreasing the clamping distance for coarctation repair. Aortic arch distances were similar when standardized to either sinotubular junction diameter and body surface area.
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