Cardiovascular imaging in conduction system pacing: What does the clinician need?
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Xiao-feng Hou | Chan Yu | Xueying Chen | Yang Ye | Y. Mao | Yang Ye | R. Zheng | G. Fu | Yuan Lv | Yankai Mao | Lin Li | Xueying Chen | Xiaofeng Hou | Captur Gabriella | Yuan Lv
[1] G. Captur,et al. Cardiovascular imaging in conduction system pacing: What does the clinician need? , 2022, Pacing and clinical electrophysiology : PACE.
[2] A. Cheng,et al. Computed tomography imaging‐identified location and electrocardiographic characteristics of left bundle branch area pacing in bradycardia patients , 2022, Journal of cardiovascular electrophysiology.
[3] W. Abhayaratna,et al. Computerized tomography image correlation of His bundle/deep septal pacing location and outcomes: an analysis from the Canberra HIs bundle/deep septal Pacing Study (CHIPS) , 2022, Journal of Interventional Cardiac Electrophysiology.
[4] Shengjie Wu,et al. Conduction system pacing following septal myectomy: Insights into site of conduction block , 2022, Journal of cardiovascular electrophysiology.
[5] K. Ellenbogen,et al. Case Report: Interventricular Septal Hematoma Complicating Left Bundle Branch Pacing Lead Implantation , 2021, Frontiers in Cardiovascular Medicine.
[6] W. Hua,et al. Novel Wide-Band Dielectric Imaging System Guided Lead Deployment for His Bundle Pacing: A Feasibility Study , 2021, Frontiers in Cardiovascular Medicine.
[7] Jeremiah Wasserlauf,et al. Clinical Outcomes Of Left Bundle Branch Area Pacing Compared To Right Ventricular Pacing: Results From The Geisinger-Rush Conduction System Pacing Registry. , 2021, Heart rhythm.
[8] C. Israel,et al. 2021 ESC Guidelines on cardiac pacing and cardiac resynchronization therapy. , 2021, European heart journal.
[9] Shao‐xin Zheng,et al. Mechanical Synchrony and Myocardial Work in Heart Failure Patients With Left Bundle Branch Area Pacing and Comparison With Biventricular Pacing , 2021, Frontiers in Cardiovascular Medicine.
[10] P. Vijayaraman,et al. Late dislodgement of left bundle branch pacing lead and successful extraction , 2021, Journal of cardiovascular electrophysiology.
[11] K. Ellenbogen,et al. Feasibility and Outcomes of Upgrading to Left Bundle Branch Pacing in Patients With Pacing-Induced Cardiomyopathy and Infranodal Atrioventricular Block , 2021, Frontiers in Cardiovascular Medicine.
[12] M. Gold,et al. Contrast-enhanced image guided lead deployment for left bundle branch pacing. , 2021, Heart rhythm.
[13] M. D. De Buyzere,et al. A Strain-Based Staging Classification of Left Bundle Branch Block-Induced Cardiac Remodeling. , 2021, JACC. Cardiovascular imaging.
[14] M. Gold,et al. The Relationship of Paced Left Bundle Branch Pacing Morphology with Anatomic Location and Physiologic Outcomes. , 2021, Heart rhythm.
[15] J. Ge,et al. Procedure-Related Complications of Left Bundle Branch Pacing: A Single-Center Experience , 2021, Frontiers in Cardiovascular Medicine.
[16] V. Arora,et al. Physiological pacing to improve cardiac resynchronization therapy non-responder and a tryst with calcified septum—a case report , 2021, The Egyptian Heart Journal.
[17] Fayzan F. Chaudhry,et al. Deep learning and the electrocardiogram: review of the current state-of-the-art , 2021, Europace : European pacing, arrhythmias, and cardiac electrophysiology : journal of the working groups on cardiac pacing, arrhythmias, and cardiac cellular electrophysiology of the European Society of Cardiology.
[18] Mark K. Elliott,et al. Feasibility of intraprocedural integration of cardiac CT to guide left ventricular lead implantation for CRT upgrades , 2021, Journal of cardiovascular electrophysiology.
[19] Shengjie Wu,et al. Novel left ventricular cardiac synchronization: left ventricular septal pacing or left bundle branch pacing? , 2020, Europace : European pacing, arrhythmias, and cardiac electrophysiology : journal of the working groups on cardiac pacing, arrhythmias, and cardiac cellular electrophysiology of the European Society of Cardiology.
[20] W. Hua,et al. Electrical characteristics of pacing different portions of the His bundle in bradycardia patients. , 2020, Europace : European pacing, arrhythmias, and cardiac electrophysiology : journal of the working groups on cardiac pacing, arrhythmias, and cardiac cellular electrophysiology of the European Society of Cardiology.
[21] P. Sharma,et al. His bundle pacing: Tips and tricks , 2020, Pacing and clinical electrophysiology : PACE.
[22] Jens Kristensen,et al. Electroanatomical mapping– and CT scan image integration–guided pacing lead implantation: A case series and review of the recent literature , 2020, Heart rhythm O2.
[23] Hui Peng,et al. Assessment of ventricular mechanical synchronization after left bundle branch pacing using 2‐D speckle tracking echocardiography , 2020, Clinical cardiology.
[24] K. Ellenbogen,et al. Imaging-Based Localization of His Bundle Pacing Electrodes: Results From the Prospective IMAGE-HBP Study. , 2020, JACC. Clinical electrophysiology.
[25] D. Mele,et al. Current Role of Echocardiography in Cardiac Resynchronization Therapy: from Cardiac Mechanics to Flow Dynamics Analysis , 2020, Current Heart Failure Reports.
[26] Yi‐Gang Li,et al. Permanent left bundle branch area pacing utilizing intracardiac echocardiogram , 2020, BMC Cardiovascular Disorders.
[27] Shulin Wu,et al. Left bundle branch pacing in a patient with mirror image dextrocardia and persistent right superior vena cava. , 2020, Europace : European pacing, arrhythmias, and cardiac electrophysiology : journal of the working groups on cardiac pacing, arrhythmias, and cardiac cellular electrophysiology of the European Society of Cardiology.
[28] J. Knuuti,et al. 18F-FDG positron emission tomography/computed tomography of cardiac implantable electronic device infections , 2020, Journal of Nuclear Cardiology.
[29] M. Gold,et al. Permanent His Bundle Pacing Implantation Facilitated by Visualization of the Tricuspid Valve Annulus , 2020, Circulation. Arrhythmia and electrophysiology.
[30] K. Ellenbogen,et al. Cardiac Resynchronization Therapy in Patients With Nonischemic Cardiomyopathy Using Left Bundle Branch Pacing. , 2020, JACC. Clinical electrophysiology.
[31] Taha Ahmed,et al. Left Bundle Branch Pacing in Transthyretin Cardiac Amyloidosis and Alternating Bundle Branch Block , 2020, JACC. Case reports.
[32] Yao Wang,et al. A novel nine-partition method using fluoroscopic images for guiding left bundle branch pacing. , 2020, Heart rhythm.
[33] Lubomir M. Hadjiiski,et al. Computer-aided diagnosis in the era of deep learning. , 2020, Medical physics.
[34] Xiao-qi Deng,et al. Transthoracic echocardiography‐guided left bundle branch pacing without fluoroscopic guidance: A case report , 2020, Journal of clinical ultrasound : JCU.
[35] D. Andreini,et al. CMR for Identifying the Substrate of Ventricular Arrhythmia in Patients With Normal Echocardiography. , 2020, JACC. Cardiovascular imaging.
[36] M. Zuin,et al. Electrogram‐only guided approach to His bundle pacing with minimal fluoroscopy: A single‐center experience , 2020, Journal of cardiovascular electrophysiology.
[37] Maolong Su,et al. Evaluation of cardiac synchrony in left bundle branch pacing: Insights from echocardiographic research , 2020, Journal of cardiovascular electrophysiology.
[38] T. Bauch,et al. Left bundle branch pacing utilizing three dimensional mapping , 2019, Journal of cardiovascular electrophysiology.
[39] Weihua Zhou,et al. Feasibility and cardiac synchrony of permanent left bundle branch pacing through the interventricular septum. , 2019, Europace : European pacing, arrhythmias, and cardiac electrophysiology : journal of the working groups on cardiac pacing, arrhythmias, and cardiac cellular electrophysiology of the European Society of Cardiology.
[40] Ragesh Panikkath,et al. Intracardiac echocardiography‐guided left bundle branch pacing in a patient with tricuspid valve replacement , 2019, Journal of cardiovascular electrophysiology.
[41] W. Hua,et al. Permanent left bundle branch area pacing for atrioventricular block: Feasibility, safety, and acute effect. , 2019, Heart rhythm.
[42] S. Mittal,et al. Outcomes of His-bundle pacing upgrade after long-term right ventricular pacing and/or pacing-induced cardiomyopathy: Insights into disease progression. , 2019, Heart rhythm.
[43] J. Lumens,et al. Systolic Stretch Characterizes the Electromechanical Substrate Responsive to Cardiac Resynchronization Therapy. , 2019, JACC. Cardiovascular imaging.
[44] I. Komuro,et al. Impacts of Left Bundle/Peri-Left Bundle Pacing on Left Ventricular Contraction. , 2019, Circulation journal : official journal of the Japanese Circulation Society.
[45] Shengjie Wu,et al. The characteristics of the electrocardiogram and the intracardiac electrogram in left bundle branch pacing , 2019, Journal of cardiovascular electrophysiology.
[46] Shengjie Wu,et al. A beginner's guide to permanent left bundle branch pacing. , 2019, Heart rhythm.
[47] B. Yan,et al. Non-invasive electrocardiographic imaging of His-bundle and peri-left bundle pacing in left bundle branch block. , 2019, Europace : European pacing, arrhythmias, and cardiac electrophysiology : journal of the working groups on cardiac pacing, arrhythmias, and cardiac cellular electrophysiology of the European Society of Cardiology.
[48] J. Nuyts,et al. Left Ventricular Remodeling Results in Homogenization of Myocardial Work Distribution. , 2019, Circulation. Arrhythmia and electrophysiology.
[49] Kipp W. Johnson,et al. Deep learning for cardiovascular medicine: a practical primer. , 2019, European heart journal.
[50] K. Ellenbogen,et al. Long-term outcomes of His bundle pacing in patients with heart failure with left bundle branch block , 2018, Heart.
[51] Yi Luan,et al. Upgrade to his bundle pacing in pacing-dependent patients referred for pulse generator change: Feasibility and intermediate term follow up. , 2018, International journal of cardiology.
[52] K. Ellenbogen,et al. Beneficial effects of upgrading to His bundle pacing in chronically paced patients with left ventricular ejection fraction <50. , 2017, Heart rhythm.
[53] E. McVeigh,et al. Comprehensive use of cardiac computed tomography to guide left ventricular lead placement in cardiac resynchronization therapy , 2017, Heart rhythm.
[54] G. Filippatos,et al. EACVI appropriateness criteria for the use of cardiovascular imaging in heart failure derived from European National Imaging Societies voting. , 2016, European heart journal cardiovascular Imaging.
[55] J. Kluger,et al. Late Gadolinium Enhancement in Patients with Nonischemic Dilated Cardiomyopathy , 2016, Pacing and clinical electrophysiology : PACE.
[56] Jens-Uwe Voigt,et al. Relationship of visually assessed apical rocking and septal flash to response and long-term survival following cardiac resynchronization therapy (PREDICT-CRT). , 2016, European heart journal cardiovascular Imaging.
[57] D. Spragg,et al. Pre-Implant Assessment For Optimal LV Lead Placement In CRT: ECG, ECHO, or MRI? , 2015, Journal of atrial fibrillation.
[58] Maria Drangova,et al. Prediction of Arrhythmic Events in Ischemic and Dilated Cardiomyopathy Patients Referred for Implantable Cardiac Defibrillator: Evaluation of Multiple Scar Quantification Measures for Late Gadolinium Enhancement Magnetic Resonance Imaging , 2012, Circulation. Cardiovascular imaging.
[59] T. Naqvi. Echocardiography-guided biventricular pacemaker optimization. , 2010, JACC. Cardiovascular imaging.
[60] Piet Claus,et al. Toward understanding response to cardiac resynchronization therapy: left ventricular dyssynchrony is only one of multiple mechanisms. , 2009, European heart journal.
[61] Katherine C. Wu,et al. Late gadolinium enhancement by cardiovascular magnetic resonance heralds an adverse prognosis in nonischemic cardiomyopathy. , 2008, Journal of the American College of Cardiology.
[62] Nael F Osman,et al. Real‐time fast strain‐encoded magnetic resonance imaging to evaluate regional myocardial function at 3.0 Tesla: Comparison to conventional tagging , 2008, Journal of magnetic resonance imaging : JMRI.
[63] Yi Zheng,et al. Intracardiac Echocardiography‐Guided His Bundle Pacing and Atrioventricular Nodal Ablation , 2008, Pacing and clinical electrophysiology : PACE.
[64] F. Leyva,et al. Intraventricular dyssynchrony predicts mortality and morbidity after cardiac resynchronization therapy: a study using cardiovascular magnetic resonance tissue synchronization imaging. , 2007, Journal of the American College of Cardiology.
[65] Maria Drangova,et al. Delayed enhancement magnetic resonance imaging predicts response to cardiac resynchronization therapy in patients with intraventricular dyssynchrony. , 2006, Journal of the American College of Cardiology.
[66] S. Adler,et al. Cardiac resynchronization therapy: Role of patient selection , 2006, Current cardiology reports.
[67] Jeroen J. Bax,et al. Assessment of left ventricular dyssynchrony in patients with conduction delay and idiopathic dilated cardiomyopathy: head-to-head comparison between tissue doppler imaging and velocity-encoded magnetic resonance imaging. , 2006, Journal of the American College of Cardiology.
[68] Jeroen J. Bax,et al. Effect of Posterolateral Scar Tissue on Clinical and Echocardiographic Improvement After Cardiac Resynchronization Therapy , 2006, Circulation.
[69] Jeroen J. Bax,et al. Noninvasive visualization of the cardiac venous system using multislice computed tomography. , 2005, Journal of the American College of Cardiology.
[70] Jeroen J. Bax,et al. Left ventricular dyssynchrony predicts response and prognosis after cardiac resynchronization therapy. , 2004, Journal of the American College of Cardiology.
[71] M. Frenneaux,et al. Electrical and Mechanical Components of Dyssynchrony in Heart Failure Patients With Normal QRS Duration and Left Bundle-Branch Block: Impact of Left and Biventricular Pacing , 2004, Circulation.
[72] Chu-Pak Lau,et al. Tissue Doppler Echocardiographic Evidence of Reverse Remodeling and Improved Synchronicity by Simultaneously Delaying Regional Contraction After Biventricular Pacing Therapy in Heart Failure , 2002, Circulation.
[73] Jerry L Prince,et al. Cardiac motion tracking using CINE harmonic phase (HARP) magnetic resonance imaging , 1999, Magnetic resonance in medicine.
[74] H. Wen,et al. DENSE: displacement encoding with stimulated echoes in cardiac functional MRI. , 1999, Journal of magnetic resonance.
[75] E. Zerhouni,et al. Human heart: tagging with MR imaging--a method for noninvasive assessment of myocardial motion. , 1988, Radiology.
[76] Jingjuan Huang,et al. Cardiac resynchronization therapy by left bundle branch area pacing in patients with heart failure and left bundle branch block , 2019 .
[77] J. Nielsen,et al. ESC Guidelines on cardiac pacing and cardiac resynchronization therapy , 2014 .