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Geometrical and electrical predictors of cardiac resynchronization therapy response

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References

  • Chen J, Normand SL, Wang Y, Krumholz HM. National and regional trends in heart failure hospitalization and mortality rates for Medicare beneficiaries, 1998-2008. JAMA 2011;306:1669-78
  • Cazeau S, Leclercq C, Lavergne T, et al. Effects of multisite biventricular pacing in patients with heart failure and intraventricular conduction delay. N Engl J Med 2001;344:873-80
  • Auricchio A, Stellbrink C, Sack S, et al. Long-term clinical effect of hemodynamically optimized cardiac resynchronization therapy in patients with heart failure and ventricular conduction delay. J Am Coll Cardiol 2002;39:2026-33
  • Abraham WT, Fisher WG, Smith AL, et al. Cardiac resynchronization in chronic heart failure. N Engl J Med 2002;346:1845-53
  • Young JB, Abraham WT, Smith AL, et al. Combined cardiac resynchronization and implantable cardioversion defibrillation in advanced chronic heart failure: the MIRACLE ICD Trial. JAMA 2003;289:2685-94
  • Bristow MR, Saxon LA, Boehmer J, et al. Cardiac-resynchronization therapy with or without an implantable defibrillator in advanced chronic heart failure. N Engl J Med 2004;350:2140-50
  • Cleland JG, Daubert JC, Erdmann E, et al. The effect of cardiac resynchronization on morbidity and mortality in heart failure. N Engl J Med 2005;352:1539-49
  • Dickstein K, Bogale N, Priori S, et al. The European cardiac resynchronization therapy survey. Eur Heart J 2009;30:2450-60
  • Boriani G, Berti E, Belotti LM, et al. Cardiac resynchronization therapy: implant rates, temporal trends and relationships with heart failure epidemiology. J Cardiovasc Med 2014;15:147-54
  • Chung ES, Leon AR, Tavazzi L, et al. Results of the Predictors of Response to CRT (PROSPECT) Trial. Circulation 2008;117:2608-16
  • Thibault B, Harel F, Ducharme A, et al. Cardiac resynchronization therapy in patients with heart failure and a QRS complex <120 milliseconds: the Evaluation of Resynchronization Therapy for Heart Failure (LESSER-EARTH) trial. Circulation 2013;127:873-81
  • Ruschitzka F, Abraham WT, Singh JP, et al. Cardiac-resynchronization therapy in heart failure with a narrow QRS complex. N Engl J Med 2013;369:1395-405
  • Leon AR. Practical issues in cardiac resynchronization therapy device implantation. Rev Cardiovasc Med 2004;4:142-9
  • Heist EK, Fan D, Mela T, et al. Radiographic left ventricular-right ventricular interlead distance predicts the acute hemodynamic response to cardiac resynchronization therapy. Am J Cardiol 2005;96:685-90
  • Buck S, Maass AH, Nieuwland W, et al. Impact of interventricular lead distance and the decrease in septal-to-lateral delay on response to cardiac resynchronization therapy. Europace 2008;10:1313-19
  • Merchant FM, Heist EK, Nandigam KV, et al. Interlead distance and left ventricular lead electrical delay predict reverse remodeling during cardiac resynchronization therapy. Pacing Clin Electrophysiol 2010;33:575-82
  • Wang J, Su Y, Cui J, et al. Impact of interlead distance on immediate and mid-term response to cardiac resynchronization therapy. Scand Cardiovasc J 2013;47:263-70
  • Covino G, Volpicelli M, Belli P, et al. A novel fluoroscopic method of measuring right-to-left interlead distance as a predictor of reverse left ventricular remodeling after cardiac resynchronization therapy. J Interv Card Electrophysiol 2014;39(2):153-9
  • Zareba W, Klein H, Cygankiewicz I, et al. Effectiveness of Cardiac Resynchronization Therapy by QRS Morphology in the Multicenter Automatic Defibrillator Implantation Trial-Cardiac Resynchronization Therapy (MADIT-CRT). Circulation 2011;123:1061-72
  • Gold MR, Thébault C, Linde C, et al. Effect of QRS duration and morphology on cardiac resynchronization therapy outcomes in mild heart failure: results from the Resynchronization Reverses Remodeling in Systolic Left Ventricular Dysfunction (REVERSE) study. Circulation 2012;126:822-9
  • Dupont M, Rickard J, Baranowski B, et al. Differential response to cardiac resynchronization therapy and clinical outcomes according to QRS morphology and QRS duration. J Am Coll Cardiol 2012;60:592-8
  • Adelstein EC, Saba S. Usefulness of baseline electrocardiographic QRS complex pattern to predict response to cardiac resynchronization. Am J Cardiol 2009;103:238-42
  • Mollema SA, Bleeker GB, van der Wall EE, et al. Usefulness of QRS duration to predict response to cardiac resynchronization therapy in patients with end-stage heart failure. Am J Cardiol 2007;100:1665-70
  • Gervais R, Leclercq C, Shankar A, et al. Surface electrocardiogram to predict outcome in candidates for cardiac resynchronization therapy: a sub-analysis of the CARE-HF trial. Eur J Heart Fail 2009;11:699-705
  • Stavrakis S, Lazzara R, Thadani U. The benefit of cardiac resynchronization therapy and QRS duration: a meta-analysis. J Cardiovasc Electrophysiol 2012;23:163-8
  • Cleland JG, Abraham WT, Linde C, et al. An individual patient meta-analysis of five randomized trials assessing the effects of cardiac resynchronization therapy on morbidity and mortality in patients with symptomatic heart failure. Eur Heart J 2013;34:3547-56
  • Strauss DG, Selvester RH, Wagner GS. Defining left bundle branch block in the era of cardiac resynchronization therapy. Am Heart J 2011;107:927-34
  • Mascioli G, Padeletti L, Sassone B, et al. Electrocardiographic criteria of true left bundle branch block: a simple sign to predict a better clinical and instrumental response to CRT. Pacing Clin Electrophysiol 2012;35:927-34
  • Brenyo A, Rao M, Barsheshet A, et al. QRS axis and the benefit of cardiac resynchronization therapy in patients with mildly symptomatic heart failure enrolled in MADIT-CRT. J Cardiovasc Electrophysiol 2013;24:442-8
  • Mollo R, Cosenza A, Coviello I, et al. A novel electrocardiographic predictor of clinical response to cardiac resynchronization therapy. Europace 2013;15:1615-21
  • Del Carpio Munoz F, Powell BD, Cha YM, et al. Delayed intrinsicoid deflection onset in surface ECG lateral leads predicts left ventricular reverse remodeling after cardiac resynchronization therapy. Heart Rhythm 2013;10:979-87
  • Iler MA, Hu T, Ayyagari A, et al. Prognostic Value of Electrocardiographic Measurements Before and After Cardiac Resynchronization Device Implantation in Patients With Heart Failure due to Ischemic or Nonischemic Cardiomyopathy. Am J Cardiol 2008;101:359-63
  • Lecoq G, Leclercq C, Leray E, et al. Clinical and electrocardiographic predictors of a positive response to cardiac resynchronization therapy in advanced heart failure. Eur Heart J 2005;26:1094-100
  • Yeim S, Bordachar P, Reuter S, et al. Predictors of a Positive Response to Biventricular Pacing in Patients with Severe Heart Failure and Ventricular Conduction Delay. Pacing Clin Electrophysiol 2007;30:970-5
  • Kronborg MB, Nielsen JC, Mortensen PT. Electrocardiographic patterns and long-term clinical outcome in cardiac resynchronization therapy. Europace 2010;12:216-22
  • Rickard J, Popovic Z, Verhaert D, et al. The QRS narrowing index predicts reverse left ventricular remodeling following cardiac resynchronization therapy. Pacing Clin Electrophysiol 2011;34:604-11
  • Rickard J, Cheng A, Spragg D, et al. QRS narrowing is associated with reverse remodeling in patients with chronic right ventricular pacing upgraded to cardiac resynchronization therapy. Heart Rhythm 2013;10:55-60
  • Takaya Y, Noda T, Nakajima I, et al. Electrocardiographic predictors of response to cardiac resynchronization therapy in patients with intraventricular conduction delay. Circ J 2014;78:71-7
  • Sweeney MO, van Bommel RJ, Schalij MJ, et al. Analysis of ventricular activation using surface electrocardiography to predict left ventricular reverse volumetric remodeling during cardiac resynchronization therapy. Circulation 2010;121:626-34
  • Hsing JM, Selzman KA, Leclercq C, et al. Paced left ventricular QRS width and ECG parameters predict outcomes after cardiac resynchronization therapy: PROSPECT-ECG substudy. Circ Arrhythm Electrophysiol 2011;4:851-7
  • Köbe J, Dechering DG, Rath B, et al. Prospective evaluation of electrocardiographic parameters in cardiac resynchronization therapy: detecting nonresponders by left ventricular pacing. Heart Rhythm 2012;9(499):504
  • Sebag FA, Martins RP, Defaye P, et al. Reverse electrical remodeling by cardiac resynchronization therapy: prevalence and clinical impact. J Cardiovasc Electrophysiol 2012;23:1219-27
  • Rickard J, Jackson G, Spragg DD, et al. QRS prolongation induced by cardiac resynchronization therapy correlates with deterioration in left ventricular function. Heart Rhythm 2012;9:1674-8
  • Auricchio A, Fantoni C, Regoli F, et al. Characterization of left ventricular activation in patients with heart failure and left bundle-branch block. Circulation 2004;109:1133-9
  • Varma N. Left ventricular conduction delays and relation to QRS configuration in patients with left ventricular dysfunction. Am J Cardiol 2009;103:1578-85
  • Singh JP, Fan D, Heist EK, et al. Left ventricular lead electrical delay predicts response to cardiac resynchronization therapy. Heart Rhythm 2006;3:1285-92
  • Gold MR, Birgersdotter-Green U, Singh JP, et al. The relationship between ventricular electrical delay and left ventricular remodelling with cardiac resynchronization therapy. Eur Heart J 2011;32:2516-24
  • D’Onofrio A, Botto GL, Mantica M, et al. The interventricular conduction time is associated with response to cardiac resynchronization. Int J Cardiol 2013;168:5067-8
  • Sassone B, Gabrieli L, Sacca S, et al. Value of right ventricular–left ventricular interlead electrical delay to predict reverse remodelling in cardiac resynchronization therapy: the INTER-V pilot study. Europace 2010;12:78-83
  • Stabile G, D’Onofrio A, Reggiani A, et al. Geometrical characteristics of interventricular electrical delay. Int J Cardiol 2014;172(2):e271-2
  • Stabile G, Bertaglia E, Botto GL, et al. Cardiac Resynchronization Therapy MOdular REgistry (CRT MORE): ECG and Rx predictors of response to CRT. J Cardiovasc Med 2013;14:886-93

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