Cardiac magnetic resonance for prediction of arrhythmogenic areas
Tài liệu tham khảo
Nakahara, 2011, Characterization of myocardial scars: electrophysiological imaging correlates in a porcine infarct model, Heart Rhythm, 8, 1060, 10.1016/j.hrthm.2011.02.029
Wijnmaalen, 2011, Head-to-head comparison of contrast-enhanced magnetic resonance imaging and electroanatomical voltage mapping to assess post-infarct scar characteristics in patients with ventricular tachycardias: real-time image integration and reversed registration, Eur Heart J, 32, 104, 10.1093/eurheartj/ehq345
Gupta, 2012, Delayed-enhanced MR scar imaging and intraprocedural registration into an electroanatomical mapping system in post-infarction patients, JACC Cardiovasc Imaging, 5, 207, 10.1016/j.jcmg.2011.08.021
Josephson, 1979, Endocardial excision: a new surgical technique for recurrent ventricular tachycardia, Circulation, 60, 1430, 10.1161/01.CIR.60.7.1430
Guiraudon, 1978, Encircling endocardial ventriculotomy: a new surgical treatment for life-threatening ventricular tachycardias resistant to medical treatment following myocardial infarction, Ann Thorac Surg, 26, 438, 10.1016/S0003-4975(10)62923-2
Fenoglio, 1983, Recurrent sustained ventricular tachycardia: structure and ultrastructure of subendocardial regions in which tachycardia originates, Circulation, 68, 518, 10.1161/01.CIR.68.3.518
de Bakker, 1988, Reentry as a cause of ventricular tachycardia in patients with chronic ischemic heart disease: electrophysiologic and anatomic correlation, Circulation, 77, 589, 10.1161/01.CIR.77.3.589
Arheden, 2000, Reperfused rat myocardium subjected to various durations of ischemia: estimation of the distribution volume of contrast material with echo-planar MR imaging, Radiology, 215, 520, 10.1148/radiology.215.2.r00ma38520
Roes, 2009, Infarct tissue heterogeneity assessed with contrast-enhanced MRI predicts spontaneous ventricular arrhythmia in patients with ischemic cardiomyopathy and implantable cardioverter-defibrillator, Circ Cardiovasc Imaging, 2, 183, 10.1161/CIRCIMAGING.108.826529
Schmidt, 2007, Infarct tissue heterogeneity by magnetic resonance imaging identifies enhanced cardiac arrhythmia susceptibility in patients with left ventricular dysfunction, Circulation, 115, 2006, 10.1161/CIRCULATIONAHA.106.653568
Yan, 2006, Characterization of the peri-infarct zone by contrast-enhanced cardiac magnetic resonance imaging is a powerful predictor of post-myocardial infarction mortality, Circulation, 114, 32, 10.1161/CIRCULATIONAHA.106.613414
Wu, 2012, Combined cardiac magnetic resonance imaging and C-reactive protein levels identify a cohort at low risk for defibrillator firings and death, Circ Cardiovasc Imaging, 5, 178, 10.1161/CIRCIMAGING.111.968024
Perez-David, 2011, Noninvasive identification of ventricular tachycardia-related conducting channels using contrast-enhanced magnetic resonance imaging in patients with chronic myocardial infarction: comparison of signal intensity scar mapping and endocardial voltage mapping, J Am Coll Cardiol, 57, 184, 10.1016/j.jacc.2010.07.043
Estner, 2011, The critical isthmus sites of ischemic ventricular tachycardia are in zones of tissue heterogeneity, visualized by magnetic resonance imaging, Heart Rhythm, 8, 1942, 10.1016/j.hrthm.2011.07.027
Ashikaga, 2007, Magnetic resonance-based anatomical analysis of scar-related ventricular tachycardia: implications for catheter ablation, Circ Res, 101, 939, 10.1161/CIRCRESAHA.107.158980
Verma, 2005, Relationship between successful ablation sites and the scar border zone defined by substrate mapping for ventricular tachycardia post-myocardial infarction, J Cardiovasc Electrophysiol, 16, 465, 10.1046/j.1540-8167.2005.40443.x
Desjardins, 2009, Infarct architecture and characteristics on delayed enhanced magnetic resonance imaging and electroanatomic mapping in patients with postinfarction ventricular arrhythmia, Heart Rhythm, 6, 644, 10.1016/j.hrthm.2009.02.018
Sasaki, 2012, Myocardial structural associations with local electrograms: a study of postinfarct ventricular tachycardia pathophysiology and magnetic resonance-based noninvasive mapping, Circ Arrhythm Electrophysiol, 5, 1081, 10.1161/CIRCEP.112.970699
Piers, 2014, CMR-based identification of critical isthmus sites of ischemic and nonischemic ventricular tachycardia, JACC Cardiovasc Imaging, 7, 774, 10.1016/j.jcmg.2014.03.013
Raymond, 2009, Catheter ablation for scar-related ventricular tachycardias, Curr Probl Cardiol, 34, 225, 10.1016/j.cpcardiol.2009.01.002
Boyé, 2011, Prediction of life-threatening arrhythmic events in patients with chronic myocardial infarction by contrast-enhanced CMR, JACC Cardiovasc Imaging, 4, 871, 10.1016/j.jcmg.2011.04.014
Andreu, 2011, Integration of 3D electroanatomic maps and magnetic resonance scar characterization into the navigation system to guide ventricular tachycardia ablation, Circ Arrhythm Electrophysiol, 4, 674, 10.1161/CIRCEP.111.961946
Bogun, 2009, Delayed-enhanced magnetic resonance imaging in nonischemic cardiomyopathy: utility for identifying the ventricular arrhythmia substrate, J Am Coll Cardiol, 53, 1138, 10.1016/j.jacc.2008.11.052
Codreanu, 2008, Electroanatomic characterization of post-infarct scars comparison with 3-dimensional myocardial scar reconstruction based on magnetic resonance imaging, J Am Coll Cardiol, 52, 839, 10.1016/j.jacc.2008.05.038
Sasaki, 2013, Impact of nonischemic scar features on local ventricular electrograms and scar-related ventricular tachycardia circuits in patients with nonischemic cardiomyopathy, Circ Arrhythm Electrophysiol, 6, 1139, 10.1161/CIRCEP.113.000159
Grosse-Wortmann, 2008, Late gadolinium enhancement of the right ventricular myocardium: is it really different from the left?, J Cardiovasc Magn Reson, 10, 20, 10.1186/1532-429X-10-20
Marra, 2012, Imaging study of ventricular scar in arrhythmogenic right ventricular cardiomyopathy: comparison of 3D standard electroanatomical voltage mapping and contrast-enhanced cardiac magnetic resonance, Circ Arrhythm Electrophysiol, 5, 91, 10.1161/CIRCEP.111.964635
Santangeli, 2011, Imaging of scar in patients with ventricular arrhythmias of right ventricular origin: cardiac magnetic resonance versus electroanatomic mapping, J Cardiovasc Electrophysiol, 22, 1359, 10.1111/j.1540-8167.2011.02127.x
Wijffels, 1995, Atrial fibrillation begets atrial fibrillation. A study in awake chronically instrumented goats, Circulation, 92, 1954, 10.1161/01.CIR.92.7.1954
Boldt, 2004, Fibrosis in left atrial tissue of patients with atrial fibrillation with and without underlying mitral valve disease, Heart, 90, 400, 10.1136/hrt.2003.015347
Jalife, 2014, Mechanisms of persistent atrial fibrillation, Curr Opin Cardiol, 29, 20, 10.1097/HCO.0000000000000027
Frustaci, 1997, Histological substrate of atrial biopsies in patients with lone atrial fibrillation, Circulation, 96, 1180, 10.1161/01.CIR.96.4.1180
Swartz, 2009, Left versus right atrial difference in dominant frequency, K(+) channel transcripts, and fibrosis in patients developing atrial fibrillation after cardiac surgery, Heart Rhythm, 6, 1415, 10.1016/j.hrthm.2009.06.018
Platonov, 2011, Structural abnormalities in atrial walls are associated with presence and persistency of atrial fibrillation but not with age, J Am Coll Cardiol, 58, 2225, 10.1016/j.jacc.2011.05.061
Mahnkopf, 2010, Evaluation of the left atrial substrate in patients with lone atrial fibrillation using delayed-enhanced MRI: implications for disease progression and response to catheter ablation, Heart Rhythm, 7, 1475, 10.1016/j.hrthm.2010.06.030
Spragg, 2012, Initial experience with magnetic resonance imaging of atrial scar and co-registration with electroanatomic voltage mapping during atrial fibrillation: success and limitations, Heart Rhythm, 9, 2003, 10.1016/j.hrthm.2012.08.039
Khurram, 2014, Magnetic resonance image intensity ratio, a normalized measure to enable interpatient comparability of left atrial fibrosis, Heart Rhythm, 11, 85, 10.1016/j.hrthm.2013.10.007
Peters, 2007, Detection of pulmonary vein and left atrial scar after catheter ablation with three-dimensional navigator-gated delayed enhancemnt MR imaging: initial experience, Radiology, 243, 690, 10.1148/radiol.2433060417
Oakes, 2009, Detection and quantification of left atrial structural remodeling with delayed-enhancement magnetic resonance imaging in patients with atrial fibrillation, Circulation, 119, 1758, 10.1161/CIRCULATIONAHA.108.811877
McGann, 2014, Atrial fibrillation ablation outcome is predicted by left atrial remodeling on MRI, Circ Arrhythm Electrophysiol, 7, 23, 10.1161/CIRCEP.113.000689
Marrouche, 2014, Association of atrial tissue fibrosis identified by delayed enhancement MRI and atrial fibrillation catheter ablation: the DECAAF study, J Am Med Assoc, 311, 498, 10.1001/jama.2014.3
Bisbal, 2014, CMR-guided approach to localize and ablate gaps in repeat AF ablation procedure, JACC Cardiovasc Imaging, 7, 653, 10.1016/j.jcmg.2014.01.014
Vergara, 2011, Real-time magnetic resonance imaging-guided radiofrequency atrial ablation and visualization of lesion formation at 3 Tesla, Heart Rhythm, 8, 295, 10.1016/j.hrthm.2010.10.032
Peters, 2009, Recurrence of atrial fibrillation correlates with the extent of post-procedural late gadolinium enhancement: a pilot study, JACC Cardiovasc Imaging, 2, 308, 10.1016/j.jcmg.2008.10.016
Badger, 2010, Evaluation of left atrial lesions after initial and repeat atrial fibrillation ablation: lessons learned from delayed-enhancement MRI in repeat ablation procedures, Circ Arrhythm Electrophysiol, 3, 249, 10.1161/CIRCEP.109.868356
McGann, 2011, Dark regions of no-reflow on late gadolinium enhancement magnetic resonance imaging result in scar formation after atrial fibrillation ablation, J Am Coll Cardiol, 58, 177, 10.1016/j.jacc.2011.04.008
Taclas, 2010, Relationship between intended sites of RF ablation and post-procedural scar in AF patients, using late gadolinium enhancement cardiovascular magnetic resonance, Heart Rhythm, 7, 489, 10.1016/j.hrthm.2009.12.007
Hunter, 2013, Diagnostic accuracy of cardiac magnetic resonance imaging in the detection and characterization of left atrial catheter ablation lesions: a multicenter experience, J Cardiovasc Electrophysiol, 24, 396, 10.1111/jce.12063
Harrison, 2015, Repeat left atrial catheter ablation: cardiac magnetic resonance prediction of endocardial voltage and gaps in ablation lesion sets, Circ Arrhythm Electrophysiol
Karim, 2013, Evaluation of current algorithms for segmentation of scar tissue from late gadolinium enhancement cardiovascular magnetic resonance of the left atrium: an open-access grand challenge, J Cardiovasc Magn Reson, 15, 105, 10.1186/1532-429X-15-105
Harrison, 2014, Cardiac magnetic resonance and electroanatomical mapping of acute and chronic atrial ablation injury: a histological validation study, Eur Heart J, 35, 1484, 10.1093/eurheartj/eht560
Knowles, 2008, Pharmacokinetic modeling of delayed gadolinium enhancement in the myocardium, Magn Reson Med, 60, 1524, 10.1002/mrm.21767