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Structural Heart
The Journal of the Heart Team
Volume 2, 2018 - Issue 5
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Review Article

3D Hybrid Imaging for Structural and Congenital Heart Interventions in the Cath Lab

, MScORCID Icon, , PhD, , MD, PhD, , PhD, , MD, PhD, , MD, PhD, , MD, PhD, , MD, PhD, , MD, PhD & , PhD show all
Pages 362-371 | Received 17 Jan 2018, Accepted 14 Jun 2018, Published online: 19 Jul 2018

References

  • Holmes DR , Mack MJ , Kaul S , et al. ACCF/AATS/SCAI/STS expert consensus document on transcatheter aortic valve replacement. J Am Coll Cardiol . 2012;59(13):1200–1254.doi:10.1016/j.jacc.2012.01.001.
  • Ooi YK , Kelleman M , Ehrlich A , et al. Transcatheter versus surgical closure of atrial septal defects in children a value comparison. JACC Cardiovasc Interv . 2016;9(1):79–86. doi:10.1016/j.jcin.2015.09.028.
  • Hijazi ZM , Awad SM. Pediatric cardiac interventions. JACC Cardiovasc Interv . 2008;1(6):603–611. doi:10.1016/j.jcin.2008.07.007.
  • Takagi H , Ando T , Umemoto T. A review of comparative studies of MitraClip versus surgical repair for mitral regurgitation. Int J Cardiol . 2017;228(June 2016):289–294. doi:10.1016/j.ijcard.2016.11.153.
  • Pantos I , Patatoukas G , Katritsis DG , Efstathopoulos E . Patient radiation doses in interventional cardiology procedures. Curr Cardiol Rev . 2009;5(1):1–11. doi:10.2174/157340309787048059.
  • Voskuil M , Sievert H , Arslan F . Guidance of interventions in structural heart disease; three-dimensional techniques are here to stay. Neth Heart J . 2017;25(2):63–64. doi:10.1007/s12471-016-0945-0.
  • Cavalcante JL , Lalude OO , Schoenhagen P , Lerakis S . Cardiovascular magnetic resonance imaging for structural and valvular heart disease interventions. JACC Cardiovasc Interv . 2016;9(5):399–425. doi:10.1016/j.jcin.2015.11.031.
  • Thaden JJ , Sanon S , Geske JB , et al. Echocardiographic and fluoroscopic fusion imaging for procedural guidance: an overview and early clinical experience. J Am Soc Echocardiogr . 2016;29(6):503–512. doi:10.1016/j.echo.2016.01.013.
  • Schwartz JG , Neubauer AM , Fagan TE , et al. Potential role of three-dimensional rotational angiography and C-arm CT for valvular repair and implantation. Int J Cardiovasc Imaging . 2011;27(8):1205–1222. doi:10.1007/s10554-011-9839-9.
  • Numburi UD , Kapadia SR , Schoenhagen P , et al. Optimization of acquisition and contrast injection protocol for C-arm CT imaging in transcatheter aortic valve implantation: initial experience in a swine model. Int J Cardiovasc Imaging . 2013;29(2):405–415. doi:10.1007/s10554-012-0075-8.
  • Balzer JC , Boering YC , Mollus S , et al. Left ventricular contrast injection with rotational C-arm CT improves accuracy of aortic annulus measurement during cardiac catheterisation. EuroIntervention . 2014;10(3):347–354. doi:10.4244/EIJV10I3A60.
  • Peters M , Krings G , Koster M , et al. Effective radiation dosage of three-dimensional rotational angiography in children. Europace . 2014;17(4):611–616. doi:10.1093/europace/euu207.
  • Haddad L , Waller BR , Johnson J . et al. Radiation protocol for three-dimensional rotational angiography to limit procedural radiation exposure in the pediatric cardiac catheterization lab. Congenit Heart Dis . 2016;11:637–646. doi:10.1111/chd.12356.
  • De Buck S , Alzand BSN , Wielandts JY , et al. Cardiac three-dimensional rotational angiography can be performed with low radiation dose while preserving image quality. Europace . 2013;15(12):1718–1724. doi:10.1093/europace/eut140.
  • Starek Z , Lehar F , Jez J , et al. Periprocedural 3D imaging of the left atrium and esophagus: comparison of different protocols of 3D rotational angiography of the left atrium and esophagus in group of 547 consecutive patients undergoing catheter ablation of the complex atrial arrhythmias. Int J Cardiovasc Imaging . 2016;1–9. doi:10.1007/s10554-016-0888-y.
  • Eloot L , Bacher K , Steenbeke F , et al. Three-dimensional rotational X-ray acquisition technique is reducing patients’ cancer risk in coronary angiography. Catheter Cardiovasc Interv . 2013;82(4):419–427. doi:10.1002/ccd.24879.
  • Picano E , Vañó E , Rehani MM , et al. The appropriate and justified use of medical radiation in cardiovascular imaging: a position document of the ESC Associations of Cardiovascular Imaging, Percutaneous Cardiovascular Interventions and Electrophysiology. Eur Heart J . 2014;35(10):665–672. doi:10.1093/eurheartj/eht394.
  • Glatz AC , Zhu X , Gillespie MJ , Hanna BD , Rome JJ . Use of angiographic CT imaging in the cardiac catheterization laboratory for congenital heart disease. JACC Cardiovasc Imaging . 2010;3(11):1149–1157. doi:10.1016/j.jcmg.2010.09.011.
  • Sinning J-M , Ghanem A , Steinhäuser H , et al. Renal function as predictor of mortality in patients after percutaneous transcatheter aortic valve implantation. JACC Cardiovasc Interv . 2010;3(11):1141–1149. doi:10.1016/j.jcin.2010.09.009.
  • Jabbour A , Ismail TF , Moat N , et al. Multimodality imaging in transcatheter aortic valve implantation and post-procedural aortic regurgitation: comparison among cardiovascular magnetic resonance, cardiac computed tomography, and echocardiography. J Am Coll Cardiol . 2011;58(21):2165–2173. doi:10.1016/j.jacc.2011.09.010.
  • Singh GD , Smith TW , Rogers JH . Targeted transseptal access for MitraClip percutaneous mitral valve repair. Interv Cardiol Clin . 2017;5(1):55–69. doi:10.1016/j.iccl.2015.08.005.
  • Poon KK , Crowhurst J , James C , et al. Impact of optimising fluoroscopic implant angles on paravalvular regurgitation in transcatheter aortic valve replacements – Utility of three-dimensional rotational angiography. EuroIntervention . 2012;8(5):538–545. doi:10.4244/EIJV8I5A84.
  • Binder RK , Leipsic J , Wood D , et al. Prediction of optimal deployment projection for transcatheter aortic valve replacement: angiographic 3-dimensional reconstruction of the aortic root versus multidetector computed tomography. Circ Cardiovasc Interv . 2012;5(2):247–252. doi:10.1161/CIRCINTERVENTIONS.111.966531.
  • Samim M , Stella PR , Agostoni P , et al. Automated 3D analysis of pre-procedural MDCT to predict annulus plane angulation and C-arm positioning: benefit on procedural outcome in patients referred for TAVR. JACC Cardiovasc Imaging . 2013;6(2):238–248. doi:10.1016/j.jcmg.2012.12.004.
  • Van Linden A , Kempfert J , Blumenstein J , et al. Manual versus automatic detection of aortic annulus plane in a computed tomography scan for transcatheter aortic valve implantation screening. Eur J Cardio-Thoracic Surg . 2014;46(2):207–212. doi:10.1093/ejcts/ezt600.
  • Vaitkus PT , Wang DD , Greenbaum A , Guerrero M , O’Neill W . Assessment of a novel software tool in the selection of aortic valve prosthesis size for transcatheter aortic valve replacement. J Invasive Cardiol . 2014;26:328–332.
  • Kliger C , Jelnin V , Sharma S , et al. CT angiography-fluoroscopy fusion imaging for percutaneous transapical access. JACC Cardiovasc Imaging . 2014;7(2):169–177. doi:10.1016/j.jcmg.2013.10.009.
  • Blanke P , Dvir D , Naoum C , et al. Prediction of fluoroscopic angulation and coronary sinus location by CT in the context of transcatheter mitral valve implantation. J Cardiovasc Comput Tomogr . 2015;9(3):183–192. doi:10.1016/j.jcct.2015.02.007.
  • Jone P-N , Ross MM , Bracken JA , et al. Feasibility and safety of using a fused echocardiography/fluoroscopy imaging system in patients with congenital heart disease. J Am Soc Echocardiogr . 2016;29(6):513–521. doi:10.1016/j.echo.2016.03.014.
  • Sündermann SH , Biaggi P , Grünenfelder J , et al. Safety and feasibility of novel technology fusing echocardiography and fluoroscopy images during MitraClip interventions. EuroIntervention . 2014;9(10):1210–1216. doi:10.4244/EIJV9I10A203.
  • Quaife RA , Salcedo EE , Carroll JD . Procedural guidance using advance imaging techniques for percutaneous edge-to-edge mitral valve repair. Curr Cardiol Rep . 2014;16(2):452. doi:10.1007/s11886-013-0452-5.
  • Goreczny S , Moszura T , Dryzek P , et al. Three-dimensional image fusion guidance of percutaneous pulmonary valve implantation to reduce radiation exposure and contrast dose: a comparison with traditional two-dimensional and three-dimensional rotational angiographic guidance. Neth Heart J . 2017;25(2):91–99. doi:10.1007/s12471-016-0941-4.
  • Nguyen HH , Balzer DT , Murphy JJ , Nicolas R , Shahanavaz S . Radiation exposure by three-dimensional rotational angiography (3DRA) during trans-catheter melody pulmonary valve procedures (TMPV) in a pediatric cardiac catheterization laboratory. Pediatr Cardiol . 2016;37(8):1429–1435. doi:10.1007/s00246-016-1453-0.
  • Faletra FF , Biasco L , Pedrazzini G , et al. Echocardiographic-fluoroscopic fusion imaging in transseptal puncture: a new technology for an old procedure. J Am Soc Echocardiogr . 2017;30(9):886–895. doi:10.1016/j.echo.2017.05.001.
  • Afzal S , Veulemans V , Balzer J , et al. Safety and efficacy of transseptal puncture guided by real-time fusion of echocardiography and fluoroscopy. Neth Heart J . 2017;25(2):131–136. doi:10.1007/s12471-016-0937-0.
  • Berman DP , Khan DM , Gutierrez Y , Zahn EM . The use of three-dimensional rotational angiography to assess the pulmonary circulation following cavo-pulmonary connection in patients with single ventricle. Catheter Cardiovasc Interv . 2012;80(6):922–930. doi:10.1002/ccd.23461.
  • Starmans NLP , Krings GJ , Molenschot MMC , van der Stelt F , Breur JMPJ . Three-dimensional rotational angiography in children with an aortic coarctation. Neth Heart J . 2016;24:666–674. doi:10.1007/s12471-016-0899-2.
  • Stenger A , Dittrich S , Glöckler M . Three-dimensional rotational angiography in the pediatric Cath lab: optimizing aortic interventions. Pediatr Cardiol . 2016;37(3):528–536. doi:10.1007/s00246-015-1310-6.
  • Goreczny S , Dryzek P , Morgan GJ , et al. Novel three-dimensional image fusion software to facilitate guidance of complex cardiac catheterization 3D image fusion for interventions in CHD. Pediatr Cardiol . 2017;38(6):1133–1142. doi:10.1007/s00246-017-1627-4.
  • Suntharos P , Setser RM , Bradley-Skelton S , Prieto LR . Real-time three dimensional CT and MRI to guide interventions for congenital heart disease and acquired pulmonary vein stenosis. Int J Cardiovasc Imaging . 2017;33(10):1619–1626. doi:10.1007/s10554-017-1151-x.
  • Noseworthy PA , Malchano ZJ , Ahmed J , et al. The impact of respiration on left atrial and pulmonary venous anatomy: implications for image-guided intervention. Heart Rhythm . 2005;2(11):1173–1178. doi:10.1016/j.hrthm.2005.08.008.
  • Jungen C , Zeus T , Balzer J , et al. Left atrial appendage closure guided by integrated echocardiography and fluoroscopy imaging reduces radiation exposure. PLoS One . 2015;10(10):1–13. doi:10.1371/journal.pone.0140386.
  • Kpodonu J . Hybrid cardiovascular suite: the operating room of the future. J Card Surg . 2010;25(6):704–709. doi:10.1111/j.1540-8191.2010.01111.x.
  • Kriatselis C , Nedios S , Akrivakis S , et al. Intraprocedural imaging of left atrium and pulmonary veins: a comparison study between rotational angiography and cardiac computed tomography. PACE - Pacing Clin Electrophysiol . 2011;34(3):315–322. doi:10.1111/j.1540-8159.2010.02969.x.
  • Rogers T , Ratnayaka K , Karmarkar P , et al. Real-time magnetic resonance imaging guidance improves the diagnostic yield of endomyocardial biopsy. JACC Basic to Transl Sci . 2016;1(5):376–383. doi:10.1016/j.jacbts.2016.05.007.
  • Behar JM , Rajani R , Rinaldi CA . Guided left ventricular lead placement for cardiac resynchronization therapy: an opportunity for image integration. Eur J Heart Fail . 2017;19(3):435–436. doi:10.1002/ejhf.716.
  • Mory C , Auvray V , Zhang B , et al. Cardiac C-arm computed tomography using a 3D + time ROI reconstruction method with spatial and temporal regularization. Med Phys . 2014;41(2):21903. doi:10.1118/1.4860215.
  • Wielandts J-Y , De Buck S , Michielsen K , et al. Multi-phase rotational angiography of the left ventricle to assist ablations: feasibility and accuracy of novel imaging. Eur Hear J – Cardiovasc Imaging . 2016;17(2):162–168. doi:10.1093/ehjci/jev120.
  • Taubmann O , Haase V , Lauritsch G , et al. Assessing cardiac function from total-variation-regularized 4D C-arm CT in the presence of angular undersampling. Phys Med Biol . 2017;62(7):2762–2777. doi:10.1088/1361-6560/aa6241.
  • Kuhlemann I , Kleemann M , Jauer P , Schweikard A , Ernst F . Towards X-ray free endovascular interventions – using HoloLens for on-line holographic visualisation. Healthc Technol Lett . 2017; 4:184–187. doi:10.1049/htl.2017.0061.
  • Meier LM , Meineri M , Qua Hiansen J , Horlick EM . Structural and congenital heart disease interventions: the role of three-dimensional printing. Neth Heart J . 2017;25(2):65–75. doi:10.1007/s12471-016-0942-3.