Skip to main content
Top
Published in: Pediatric Cardiology 7/2016

01-10-2016 | Original Article

Diagnostic Utility of Three-Dimensional Rotational Angiography in Congenital Cardiac Catheterization

Authors: Osamah Aldoss, Brian M. Fonseca, Uyen T. Truong, John Bracken, Jeffrey R. Darst, Ruixin Guo, Tamekia L. Jones, Thomas E. Fagan

Published in: Pediatric Cardiology | Issue 7/2016

Login to get access

Abstract

We evaluated the diagnostic utility of the three modalities of three-dimensional rotational angiography (3DRA): rotational angiography (RA), multiplanar reformat (MPR) and three-dimensional angiographic reconstruction (3D-R) in pediatric cardiac catheterization. The 3DRA studies were classified by anatomy of interest based on our injection protocol: pulmonary arteries (PA), aorta, cavopulmonary connection (CPC), and others. Retrospective review of 3DRA images by two reviewers for each modality was conducted with grading as inferior, similar, or superior in comparison with the diagnostic quality of fixed-plane angiography (FPA). The percentages of grades for each modality were averaged. Weighted kappa statistic was used to evaluate inter-rater reliability. In total, 114 3DRA studies were performed on 87 patients between August 2010 and March 2012. Median age was 2.7 years (1 day–48.4 years) and median weight 12.1 kg (3.6–106.5 kg). For RA: 79.4 % of the studies were of diagnostic quality and 52.2 % were superior; 3D-R: 82 % were of diagnostic quality and 65.8 % were superior; and MPR: 83.5 % were of diagnostic quality and 63 % were superior. Overall 3DRA technologies (RA, 3D-R, MPR) were of diagnostic quality or better in 111/114 (97.4 %) studies and 103/114 (90.4 %) were judged superior. Most common reasons for inferior grading were limited opacification and metallic artifact. In pediatric cardiac catheterization, 3DRA imaging was of diagnostic quality and frequently provided additional clinically relevant data when compared to FPA.
Appendix
Available only for authorised users
Literature
1.
go back to reference Benndorf G, Claus B, Strother CM, Chang L, Klucznik RP (2006) Increased cell opening and prolapse of struts of a neuroform stent in curved vasculature: value of angiographic computed tomography: technical case report. Neurosurgery 58:ONS-E380PubMed Benndorf G, Claus B, Strother CM, Chang L, Klucznik RP (2006) Increased cell opening and prolapse of struts of a neuroform stent in curved vasculature: value of angiographic computed tomography: technical case report. Neurosurgery 58:ONS-E380PubMed
2.
go back to reference Heran NS, Song JK, Namba K, Smith W, Niimi Y, Berenstein A (2006) The utility of DynaCT in neuroendovascular procedures. AJNR Am J Neuroradiol 27:330–332PubMed Heran NS, Song JK, Namba K, Smith W, Niimi Y, Berenstein A (2006) The utility of DynaCT in neuroendovascular procedures. AJNR Am J Neuroradiol 27:330–332PubMed
3.
go back to reference Noble S, Miro J, Yong G, Bonan R, Tardif JC, Ibrahim R (2009) Rapid pacing rotational angiography with three-dimensional reconstruction: use and benefits in structural heart disease interventions. EuroIntervention 5:244–249CrossRefPubMed Noble S, Miro J, Yong G, Bonan R, Tardif JC, Ibrahim R (2009) Rapid pacing rotational angiography with three-dimensional reconstruction: use and benefits in structural heart disease interventions. EuroIntervention 5:244–249CrossRefPubMed
4.
go back to reference Glatz AC, Zhu X, Gillespie MJ, Hanna BD, Rome JJ (2010) Use of angiographic CT imaging in the cardiac catheterization laboratory for congenital heart disease. JACC Cardiovasc Imaging 3:1149–1157CrossRefPubMed Glatz AC, Zhu X, Gillespie MJ, Hanna BD, Rome JJ (2010) Use of angiographic CT imaging in the cardiac catheterization laboratory for congenital heart disease. JACC Cardiovasc Imaging 3:1149–1157CrossRefPubMed
5.
go back to reference Glockler M, Koch A, Greim V, Shabaiek A, Ruffer A, Cesnjevar R, Achenbach S, Dittrich S (2011) The value of flat-detector computed tomography during catheterisation of congenital heart disease. Eur Radiol 21:2511–2520CrossRefPubMed Glockler M, Koch A, Greim V, Shabaiek A, Ruffer A, Cesnjevar R, Achenbach S, Dittrich S (2011) The value of flat-detector computed tomography during catheterisation of congenital heart disease. Eur Radiol 21:2511–2520CrossRefPubMed
6.
go back to reference Fagan T, Kay J, Carroll J, Neubauer A (2012) 3-D guidance of complex pulmonary artery stent placement using reconstructed rotational angiography with live overlay. Catheter Cardiovasc Interv 79:414–421CrossRefPubMed Fagan T, Kay J, Carroll J, Neubauer A (2012) 3-D guidance of complex pulmonary artery stent placement using reconstructed rotational angiography with live overlay. Catheter Cardiovasc Interv 79:414–421CrossRefPubMed
7.
go back to reference Glockler M, Halbfabeta J, Koch A, Achenbach S, Dittrich S (2013) Multimodality 3D-roadmap for cardiovascular interventions in congenital heart disease—a single-center, retrospective analysis of 78 cases. Catheter Cardiovasc Interv 82:436–442CrossRefPubMed Glockler M, Halbfabeta J, Koch A, Achenbach S, Dittrich S (2013) Multimodality 3D-roadmap for cardiovascular interventions in congenital heart disease—a single-center, retrospective analysis of 78 cases. Catheter Cardiovasc Interv 82:436–442CrossRefPubMed
8.
go back to reference Schwartz JG, Neubauer AM, Fagan TE, Noordhoek NJ, Grass M, Carroll JD (2011) Potential role of three-dimensional rotational angiography and C-arm CT for valvular repair and implantation. Int J Cardiovasc Imaging 27:1205–1222CrossRefPubMed Schwartz JG, Neubauer AM, Fagan TE, Noordhoek NJ, Grass M, Carroll JD (2011) Potential role of three-dimensional rotational angiography and C-arm CT for valvular repair and implantation. Int J Cardiovasc Imaging 27:1205–1222CrossRefPubMed
9.
go back to reference Berman DP, Khan DM, Gutierrez Y, Zahn EM (2012) The use of three-dimensional rotational angiography to assess the pulmonary circulation following cavo-pulmonary connection in patients with single ventricle. Catheter Cardiovasc Interv 80:922–930CrossRefPubMed Berman DP, Khan DM, Gutierrez Y, Zahn EM (2012) The use of three-dimensional rotational angiography to assess the pulmonary circulation following cavo-pulmonary connection in patients with single ventricle. Catheter Cardiovasc Interv 80:922–930CrossRefPubMed
10.
go back to reference Glockler M, Koch A, Halbfass J, Greim V, Ruffer A, Cesnjevar R, Achenbach S, Dittrich S (2013) Assessment of cavopulmonary connections by advanced imaging: value of flat-detector computed tomography. Cardiol Young 23:18–26CrossRefPubMed Glockler M, Koch A, Halbfass J, Greim V, Ruffer A, Cesnjevar R, Achenbach S, Dittrich S (2013) Assessment of cavopulmonary connections by advanced imaging: value of flat-detector computed tomography. Cardiol Young 23:18–26CrossRefPubMed
11.
go back to reference Maddux JT, Wink O, Messenger JC, Groves BM, Liao R, Strzelczyk J, Chen SY, Carroll JD (2004) Randomized study of the safety and clinical utility of rotational angiography versus standard angiography in the diagnosis of coronary artery disease. Catheter Cardiovasc Interv 62:167–174CrossRefPubMed Maddux JT, Wink O, Messenger JC, Groves BM, Liao R, Strzelczyk J, Chen SY, Carroll JD (2004) Randomized study of the safety and clinical utility of rotational angiography versus standard angiography in the diagnosis of coronary artery disease. Catheter Cardiovasc Interv 62:167–174CrossRefPubMed
12.
go back to reference Garcia JA, Agostoni P, Green NE, Maddux JT, Chen SY, Messenger JC, Casserly IP, Hansgen A, Wink O, Movassaghi B, Groves BM, Den Van, Heuvel P, Verheye S, Van Langenhove G, Vermeersch P, Van den Branden F, Yeghiazarians Y, Michaels AD, Carroll JD (2009) Rotational vs. standard coronary angiography: an image content analysis. Catheter Cardiovasc Interv 73:753–761CrossRefPubMed Garcia JA, Agostoni P, Green NE, Maddux JT, Chen SY, Messenger JC, Casserly IP, Hansgen A, Wink O, Movassaghi B, Groves BM, Den Van, Heuvel P, Verheye S, Van Langenhove G, Vermeersch P, Van den Branden F, Yeghiazarians Y, Michaels AD, Carroll JD (2009) Rotational vs. standard coronary angiography: an image content analysis. Catheter Cardiovasc Interv 73:753–761CrossRefPubMed
13.
go back to reference Truong UT, Fagan TE, Deterding R, Ing RJ, Fonseca BM (2015) Use of rotational angiography in assessing relationship of the airway to vasculature during cardiac catheterization. Catheter Cardiovasc Interv 86:1068–1077CrossRefPubMed Truong UT, Fagan TE, Deterding R, Ing RJ, Fonseca BM (2015) Use of rotational angiography in assessing relationship of the airway to vasculature during cardiac catheterization. Catheter Cardiovasc Interv 86:1068–1077CrossRefPubMed
14.
go back to reference Reinke G, Halbfabeta J, Dittrich S, Banckwitz R, Kohler C, Achenbach S, Rompel O, Glockler M (2013) Three-dimensional rotational angiography in congenital heart disease: estimation of radiation exposure. Open J Radiol 3:124–129CrossRef Reinke G, Halbfabeta J, Dittrich S, Banckwitz R, Kohler C, Achenbach S, Rompel O, Glockler M (2013) Three-dimensional rotational angiography in congenital heart disease: estimation of radiation exposure. Open J Radiol 3:124–129CrossRef
15.
go back to reference Dori Y, Sarmiento M, Glatz AC, Gillespie MJ, Jones VM, Harris MA, Whitehead KK, Fogel MA, Rome JJ (2011) X-ray magnetic resonance fusion to internal markers and utility in congenital heart disease catheterization. Circ Cardiovasc Imaging 4:415–424CrossRefPubMedPubMedCentral Dori Y, Sarmiento M, Glatz AC, Gillespie MJ, Jones VM, Harris MA, Whitehead KK, Fogel MA, Rome JJ (2011) X-ray magnetic resonance fusion to internal markers and utility in congenital heart disease catheterization. Circ Cardiovasc Imaging 4:415–424CrossRefPubMedPubMedCentral
16.
go back to reference Fagan TE, Truong UT, Jone PN, Bracken J, Quaife R, Hazeem AA, Salcedo EE, Fonseca BM (2014) Multimodality 3-dimensional image integration for congenital cardiac catheterization. Methodist DeBakey Cardiovasc J 10:68–76CrossRefPubMedPubMedCentral Fagan TE, Truong UT, Jone PN, Bracken J, Quaife R, Hazeem AA, Salcedo EE, Fonseca BM (2014) Multimodality 3-dimensional image integration for congenital cardiac catheterization. Methodist DeBakey Cardiovasc J 10:68–76CrossRefPubMedPubMedCentral
17.
go back to reference Moore P (2005) Mri-guided congenital cardiac catheterization and intervention: the future? Catheter Cardiovasc Interv 66:1–8CrossRefPubMed Moore P (2005) Mri-guided congenital cardiac catheterization and intervention: the future? Catheter Cardiovasc Interv 66:1–8CrossRefPubMed
18.
go back to reference Ratnayaka K, Faranesh AZ, Hansen MS, Stine AM, Halabi M, Barbash IM, Schenke WH, Wright VJ, Grant LP, Kellman P, Kocaturk O, Lederman RJ (2013) Real-time MRI-guided right heart catheterization in adults using passive catheters. Eur Heart J 34:380–389CrossRefPubMed Ratnayaka K, Faranesh AZ, Hansen MS, Stine AM, Halabi M, Barbash IM, Schenke WH, Wright VJ, Grant LP, Kellman P, Kocaturk O, Lederman RJ (2013) Real-time MRI-guided right heart catheterization in adults using passive catheters. Eur Heart J 34:380–389CrossRefPubMed
Metadata
Title
Diagnostic Utility of Three-Dimensional Rotational Angiography in Congenital Cardiac Catheterization
Authors
Osamah Aldoss
Brian M. Fonseca
Uyen T. Truong
John Bracken
Jeffrey R. Darst
Ruixin Guo
Tamekia L. Jones
Thomas E. Fagan
Publication date
01-10-2016
Publisher
Springer US
Published in
Pediatric Cardiology / Issue 7/2016
Print ISSN: 0172-0643
Electronic ISSN: 1432-1971
DOI
https://doi.org/10.1007/s00246-016-1418-3

Other articles of this Issue 7/2016

Pediatric Cardiology 7/2016 Go to the issue