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  4. Coronary artery anatomy in complete transposition with situs solitus and dextrocardia
 
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Coronary artery anatomy in complete transposition with situs solitus and dextrocardia

Journal
Pediatric Cardiology
Journal Volume
31
Journal Issue
5
Pages
615-619
Date Issued
2010
Author(s)
Lee C.-H.
ING-SH CHIU  
Chang C.-C.
Wu S.-J.
CHUN-AN CHEN  
Chiu H.-H.
DOI
10.1007/s00246-010-9684-y
URI
https://www.scopus.com/inward/record.uri?eid=2-s2.0-77955096705&doi=10.1007%2fs00246-010-9684-y&partnerID=40&md5=805c6b5bba8af8cc14391f006d51a244
https://scholars.lib.ntu.edu.tw/handle/123456789/475616
Abstract
The coronary artery anatomy of complete transposition with situs solitus/levocardia (CTSSL) has been well elucidated in the current era of arterial switch operation. However, coronary artery for complete transposition with situs solitus/dextrocardia (CTSSD) has never been documented. Coronary anatomy of transposition and aortopulmonary rotation were identified by angiography or surgical intervention from 1988 to 2007 at our hospital. The degree of aortopulmonary rotation was defined by the aortic sinus pattern on lateral angiogram. Apicocaval ipsilaterality was defined as situs solitus/dextrocardia or situs inversus/levocardia. The coronary artery anatomy in 3 cases of CTSSD was analyzed and correlated with those patients having transposition with the same coronary pattern but without apicocaval ipsilaterality, i.e., 276 cases with CTSSL and 8 cases with complete transposition with situs inversus/dextrocardia (CTSID). Fisher's exact test was used to determine statistical significance. All three cases with CTSSD (with apicocaval ipsilaterality) had a single coronary artery piercing into the left-hand sinus with a right coronary artery in the posterior atrioventricular groove, whereas all 284 cases without apicocaval ipsilaterality (CTSSL or CTSID) had the left circumflex artery in the posterior atrioventricular groove. The aorta was significantly less left laterally rotated in CTSSD than the other 2 cases of CTSSL and 3 cases of CTSSD with a similar coronary pattern (p<0.05). One may anticipate coronary artery anatomy in the posterior atrioventricular groove based on apicocaval ipsilaterality, which in turn decreases aortopulmonary rotation to predict the central coronary pattern. ? Springer Science+Business Media, LLC 2010.
SDGs

[SDGs]SDG3

Other Subjects
anatomy; angiography; aorta; aorta sinus; aortopulmonary shunt; article; blood vessel graft; carotid arteriography; clinical article; coronary artery; dextrocardia; female; Fisher exact test; human; infant; levocardia; male; situs inversus; angiocardiography; Coronary Vessel Anomalies; dextrocardia; newborn; radiography; situs inversus; Transposition of Great Vessels; Coronary Angiography; Coronary Vessel Anomalies; Dextrocardia; Female; Humans; Infant; Infant, Newborn; Male; Situs Inversus; Transposition of Great Vessels; Coronary Angiography; Coronary Vessel Anomalies; Dextrocardia; Female; Humans; Infant; Infant, Newborn; Male; Situs Inversus; Transposition of Great Vessels
Type
journal article

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