In vitro flow experiments for determination of optimal geometry of total cavopulmonary connection for surgical repair of children with functional single ventricle
S Sharma,
S Goudy,
P Walker,
S Panchal,
A Ensley,
K Kanter,
V Tam,
D Fyfe,
and
A Yoganathan
Children's Heart Center, Emory University School of Medicine, Atlanta, Georgia, USA.
OBJECTIVES. This study sought to evaluate the effect of offsetting cavopulmonary connections at varying pulmonary flow ratios to determine the optimal geometry of the connection. BACKGROUND. Previous investigators have demonstrated energy conservation within the streamlined contours of the total cavopulmonary connection compared with that of the atriopulmonary connection. However, their surgical design of connecting the two cavae directly opposite each other may result in high energy losses. Others have introduced a unidirectional connection with some advantages but with concerns about the formation of arteriovenous malformation in the lung excluded from hepatic venous return. Thus, an optimal surgical design has not been determined. METHODS. In the present models, the caval connections were offset through a range of 0.0 to 2.0 diameters by 0.5 superior cava diameter increments. Flow ratios were fixed for superior and inferior cavae and varied for right and left pulmonary arteries as 70:30, 60:40, 50:50, 40:60 and 30:70 to stimulate varying lung resistance. Pressure measurements and flow visualization were done at steady flows of 2, 4 and 6 liters/min to stimulate rest and exercise. RESULTS. Our data show that the energy losses at the 0.0-diameter offset were double the losses of the 1.0 and 1.5 diameters, which had minimal energy losses. This result was attributable to chaotic patterns seen on flow visualization in the 0.0-diameters offset. Energy savings were more evident at the 50:50 right/left pulmonary artery ratio. Energy losses increased with increased total flow rates. CONCLUSIONS. The results strongly suggest the incorporation of caval offsets in future total cavopulmonary connections.
This article has been cited by other articles:

|
 |

|
 |
 
Z. Yin, H. Wang, Z. Wang, H. Zhu, R. Zhang, M. Hou, and M. Fang
Radionuclide and Angiographic Assessment of Pulmonary Perfusion After Fontan Procedure: Comparative Interim Outcomes
Ann. Thorac. Surg.,
February 1, 2012;
93(2):
620 - 625.
[Abstract]
[Full Text]
[PDF]
|
 |
|

|
 |

|
 |
 
K. S. Sundareswaran, K. Pekkan, L. P. Dasi, K. Whitehead, S. Sharma, K. R. Kanter, M. A. Fogel, and A. P. Yoganathan
The total cavopulmonary connection resistance: a significant impact on single ventricle hemodynamics at rest and exercise
Am J Physiol Heart Circ Physiol,
December 1, 2008;
295(6):
H2427 - H2435.
[Abstract]
[Full Text]
[PDF]
|
 |
|

|
 |

|
 |
 
V. E. Hjortdal, T. D. Christensen, S. H. Larsen, K. Emmertsen, and E. M. Pedersen
Caval Blood Flow During Supine Exercise in Normal and Fontan Patients
Ann. Thorac. Surg.,
February 1, 2008;
85(2):
599 - 603.
[Abstract]
[Full Text]
[PDF]
|
 |
|

|
 |

|
 |
 
H. Murakami, N. Yoshimura, J. Kitahara, S. Otaka, F. Ichida, and T. Misaki
Collision of the caval flows caused early failure of the Fontan circulation.
J. Thorac. Cardiovasc. Surg.,
November 1, 2006;
132(5):
1235 - 1236.
[Full Text]
[PDF]
|
 |
|

|
 |

|
 |
 
D. A. de Zelicourt, K. Pekkan, J. Parks, K. Kanter, M. Fogel, and A. P. Yoganathan
Flow study of an extracardiac connection with persistent left superior vena cava
J. Thorac. Cardiovasc. Surg.,
April 1, 2006;
131(4):
785 - 791.
[Abstract]
[Full Text]
[PDF]
|
 |
|

|
 |

|
 |
 
K. Pekkan, H. D. Kitajima, D. de Zelicourt, J. M. Forbess, W. J. Parks, M. A. Fogel, S. Sharma, K. R. Kanter, D. Frakes, and A. P. Yoganathan
Total Cavopulmonary Connection Flow With Functional Left Pulmonary Artery Stenosis: Angioplasty and Fenestration In Vitro
Circulation,
November 22, 2005;
112(21):
3264 - 3271.
[Abstract]
[Full Text]
[PDF]
|
 |
|

|
 |

|
 |
 
D. A. de Zelicourt, K. Pekkan, L. Wills, K. Kanter, J. Forbess, S. Sharma, M. Fogel, and A. P. Yoganathan
In Vitro Flow Analysis of a Patient-Specific Intraatrial Total Cavopulmonary Connection
Ann. Thorac. Surg.,
June 1, 2005;
79(6):
2094 - 2102.
[Abstract]
[Full Text]
[PDF]
|
 |
|

|
 |

|
 |
 
E. L. Bove, M. R. de Leval, F. Migliavacca, G. Guadagni, and G. Dubini
Computational fluid dynamics in the evaluation of hemodynamic performance of cavopulmonary connections after the norwood procedure for hypoplastic left heart syndrome
J. Thorac. Cardiovasc. Surg.,
October 1, 2003;
126(4):
1040 - 1047.
[Abstract]
[Full Text]
[PDF]
|
 |
|

|
 |

|
 |
 
I-S. Kang, A. N. Redington, L. N. Benson, C. Macgowan, E. R. Valsangiacomo, K. Roman, C. J. Kellenberger, and S.-J. Yoo
Differential Regurgitation in Branch Pulmonary Arteries After Repair of Tetralogy of Fallot: A Phase-Contrast Cine Magnetic Resonance Study
Circulation,
June 17, 2003;
107(23):
2938 - 2943.
[Abstract]
[Full Text]
[PDF]
|
 |
|

|
 |

|
 |
 
A. Amodeo, M. Grigioni, G. Oppido, C. Daniele, G. D'Avenio, G. Pedrizzetti, S. Giannico, S. Filippelli, and R. M. Di Donato
The beneficial vortex and best spatial arrangement in total extracardiac cavopulmonary connection
J. Thorac. Cardiovasc. Surg.,
September 1, 2002;
124(3):
471 - 478.
[Abstract]
[Full Text]
[PDF]
|
 |
|

|
 |

|
 |
 
E M Pedersen, E V Stenbog, T Frund, K Houlind, O Kromann, K E Sorensen, K Emmertsen, and V E Hjortdal
Flow during exercise in the total cavopulmonary connection measured by magnetic resonance velocity mapping
Heart,
June 1, 2002;
87(6):
554 - 558.
[Abstract]
[Full Text]
[PDF]
|
 |
|

|
 |

|
 |
 
R. F. Zhang, H. D. Gong, H. Y. Zhu, M. X. Hou, X. M. Li, J. Wang, H. C. Song, N. B. Zhang, and L. L. Tan
Total Cavopulmonary Connection With Extraatrial Tunnel
Asian Cardiovasc Thorac Ann,
March 1, 2002;
10(1):
35 - 38.
[Abstract]
[Full Text]
[PDF]
|
 |
|

|
 |

|
 |
 
J. M. Chu, Q. Y. Wu, and W. M. Wang
Pulmonary Blood Distribution After Total Cavopulmonary Connection
Asian Cardiovasc Thorac Ann,
December 1, 2001;
9(4):
282 - 285.
[Abstract]
[Full Text]
[PDF]
|
 |
|

|
 |

|
 |
 
S. Sharma, A. E. Ensley, K. Hopkins, G. P. Chatzimavroudis, T. M. Healy, V. K.H. Tam, K. R. Kanter, and A. P. Yoganathan
In vivo flow dynamics of the total cavopulmonary connection from three-dimensional multislice magnetic resonance imaging
Ann. Thorac. Surg.,
March 1, 2001;
71(3):
889 - 898.
[Abstract]
[Full Text]
[PDF]
|
 |
|

|
 |

|
 |
 
R. Kumar, S. Samuel, K S. Sai, M. Vakamudi, R. Saldanha, K. R. Balakrishnan, R. Kumar, S. Samuel, K S. Sai, M. Vakamudi, et al.
Extracardiac Fontan/Kawashima Procedure Without Cardiopulmonary Bypass
Asian Cardiovasc Thorac Ann,
September 1, 2000;
8(3):
264 - 265.
[Abstract]
[Full Text]
[PDF]
|
 |
|

|
 |

|
 |
 
P. G. Walker, T. T. Howe, R. L. Davies, J. Fisher, and K. G. Watterson
Distribution of hepatic venous blood in the total cavo-pulmonary connection: an in vitro study
Eur J Cardiothorac Surg,
June 1, 2000;
17(6):
658 - 665.
[Abstract]
[Full Text]
[PDF]
|
 |
|

|
 |

|
 |
 
V. K.H. Tam, B. E. Miller, and K. Murphy
Modified Fontan without use of cardiopulmonary bypass
Ann. Thorac. Surg.,
November 1, 1999;
68(5):
1698 - 1703.
[Abstract]
[Full Text]
[PDF]
|
 |
|

|
 |

|
 |
 
A. C. Lardo, S. A. Webber, A. Iyengar, P. J. del Nido, I. Friehs, and E. G. Cape
BIDIRECTIONAL SUPERIOR CAVOPULMONARY ANASTOMOSIS IMPROVES MECHANICAL EFFICIENCY IN DILATED ATRIOPULMONARY CONNECTIONS
J. Thorac. Cardiovasc. Surg.,
October 1, 1999;
118(4):
681 - 691.
[Abstract]
[Full Text]
[PDF]
|
 |
|

|
 |

|
 |
 
W. I. Douglas, C. S. Goldberg, R. S. Mosca, I. H. Law, and E. L. Bove
Hemi-Fontan procedure for hypoplastic left heart syndrome: outcome and suitability for Fontan
Ann. Thorac. Surg.,
October 1, 1999;
68(4):
1361 - 1367.
[Abstract]
[Full Text]
[PDF]
|
 |
|

|
 |

|
 |
 
A. E. Ensley, P. Lynch, G. P. Chatzimavroudis, C. Lucas, S. Sharma, and A. P. Yoganathan
Toward designing the optimal total cavopulmonary connection: an in vitro study
Ann. Thorac. Surg.,
October 1, 1999;
68(4):
1384 - 1390.
[Abstract]
[Full Text]
[PDF]
|
 |
|

|
 |

|
 |
 
A. Gerdes, J. Kunze, G. Pfister, and H.-H. Sievers
Addition of a small curvature reduces power losses across total cavopulmonary connections
Ann. Thorac. Surg.,
June 1, 1999;
67(6):
1760 - 1764.
[Abstract]
[Full Text]
[PDF]
|
 |
|

|
 |

|
 |
 
A. C. Lardo, S. A. Webber, I. Friehs, P. J. del Nido, and E. G. Cape
FLUID DYNAMIC COMPARISON OF INTRA-ATRIAL AND EXTRACARDIAC TOTAL CAVOPULMONARY CONNECTIONS
J. Thorac. Cardiovasc. Surg.,
April 1, 1999;
117(4):
697 - 704.
[Abstract]
[Full Text]
[PDF]
|
 |
|

|
 |

|
 |
 
M. A. Fogel, P. M. Weinberg, J. Rychik, A. Hubbard, M. Jacobs, T. L. Spray, and J. Haselgrove
Caval Contribution to Flow in the Branch Pulmonary Arteries of Fontan Patients With a Novel Application of Magnetic Resonance Presaturation Pulse
Circulation,
March 9, 1999;
99(9):
1215 - 1221.
[Abstract]
[Full Text]
[PDF]
|
 |
|

|
 |

|
 |
 
K Houlind, E V Stenbog, K E Sorensen, K Emmertsen, O K Hansen, L Rybro, and V E Hjortdal
Pulmonary and caval flow dynamics after total cavopulmonary connection
Heart,
January 1, 1999;
81(1):
67 - 72.
[Abstract]
[Full Text]
|
 |
|

|
 |

|
 |
 
E. Be'eri, S. E. Maier, M. J. Landzberg, T. Chung, and T. Geva
In Vivo Evaluation of Fontan Pathway Flow Dynamics by Multidimensional Phase-Velocity Magnetic Resonance Imaging
Circulation,
December 22, 1998;
98(25):
2873 - 2882.
[Abstract]
[Full Text]
[PDF]
|
 |
|

|
 |

|
 |
 
V. L. Morgan, T. P. Graham Jr., R. J. Roselli, and C. H. Lorenz
Alterations in pulmonary artery flow patterns and shear stress determined with three-dimensional phase-contrast magnetic resonance imaging in fontan patients
J. Thorac. Cardiovasc. Surg.,
August 1, 1998;
116(2):
294 - 304.
[Abstract]
[Full Text]
[PDF]
|
 |
|

|
 |

|
 |
 
H.-H. Sievers, A. Gerdes, J. Kunze, and G. Pfister
Superior Hydrodynamics of a Modified Cavopulmonary Connection for the Norwood Operation
Ann. Thorac. Surg.,
June 1, 1998;
65(6):
1741 - 1745.
[Abstract]
[Full Text]
[PDF]
|
 |
|

|
 |

|
 |
 
L. Mertens, D. J. Hagler, U. Sauer, J. Somerville, and M. Gewillig
Protein-losing enteropathy after the Fontan operation: An international multicenter study
J. Thorac. Cardiovasc. Surg.,
May 1, 1998;
115(5):
1063 - 1073.
[Abstract]
[Full Text]
[PDF]
|
 |
|
|