Advances in electrical and mechanical cardiac mapping
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Robert A Malkin | Nicolle Kramer | Benjamin Schnitz | Meera Gopalakrishnan | Amy L Curry | Benjamin A. Schnitz | R. Malkin | N. Kramer | M. Gopalakrishnan | Amy L Curry
[1] A. S. Harris. THE SPREAD OF EXCITATION IN TURTLE, DOG, CAT AND MONKEY VENTRICLES , 1941 .
[2] A. C. Young,et al. Spread of Electrical Activity Through the Wall of the Ventricle , 1953, Circulation research.
[3] D. Durrer,et al. Spread of activation in the left ventricular wall of the dog. I. , 1953, American heart journal.
[4] M. Cotten. Circulatory changes affecting measurement of heart force in situ with strain gauge arches. , 1953, The American journal of physiology.
[5] K. Boniface,et al. Resistance Strain Gauge Arches for Direct Measurement of Heart Contractile Force in Animals.∗ , 1953, Proceedings of the Society for Experimental Biology and Medicine. Society for Experimental Biology and Medicine.
[6] S. Twomey,et al. On the Numerical Solution of Fredholm Integral Equations of the First Kind by the Inversion of the Linear System Produced by Quadrature , 1963, JACM.
[7] R. Barr,et al. Comparing methods of generating surface potentials. , 1966, IEEE transactions on bio-medical engineering.
[8] B. Taccardi. An Official Journal of the American Heart Association Body Surface Distribution of Equipotential Lines during Atrial Depolarization and Ventricular Repolarization , 2022 .
[9] D. L. Fry,et al. Auxotonic and isometric cardiac force transducers. , 1967, Journal of applied physiology.
[10] R. Helfant,et al. A catheterization technique for His bundle stimulation and recording in the intact dog , 1968 .
[11] B. Lewartowski,et al. Direct measurement of tension within left ventricular wall of the dog heart. , 1972, Cardiovascular research.
[12] G. S. Herman-Giddens,et al. Isopotential Body Surface Maps and Their Relationship to Atrial Potentials in the Dog , 1972, Circulation research.
[13] L. Horan,et al. Comparative surface potential patterns in obstructive and nonobstructive cardiomyopathy. , 1973, American heart journal.
[14] E. Moore,et al. Epicardial mapping in Wolff-Parkinson-White syndrome. , 1978, Archives of internal medicine.
[15] R. Barr,et al. Ventricular Intramural and Epicardial Potential Distributions during Ventricular Activation and Repolarization in the Intact Dog , 1975, Circulation research.
[16] G. Salama,et al. Merocyanine 540 as an optical probe of transmembrane electrical activity in the heart , 1976, Science.
[17] R. Barr,et al. Origin of Body Surface QRS and T Wave Potentials from Epicardial Potential Distributions in the Intact Chimpanzee , 1977, Circulation.
[18] J. Gallagher,et al. Cryoablation of drug-resistant ventricular tachycardia in a patient with a variant of scleroderma. , 1978, Circulation.
[19] L. Horowitz,et al. The Limitations of Epicardial Mapping as a Guide to the Surgical Therapy of Ventricular Tachycardia , 1978, Circulation.
[20] J. Covell,et al. Comparison of left ventricular free wall and septal diastolic compliance in the dog. , 1978, The American journal of physiology.
[21] L. Horowitz,et al. Recurrent Sustained Ventricular Tachycardia: 2. Endocardial Mapping , 1978, Circulation.
[22] G. Salama,et al. Optical probes of membrane potential in heart muscle. , 1979, The Journal of physiology.
[23] J. .. Abildskov,et al. Detailed activation sequence in the region of electrically induced ventricular fibrillation in dogs. , 1980, Japanese heart journal.
[24] R. Kinicki,et al. A computer system for the intraoperative mapping of ventricular arrhythmias. , 1980, Computers and biomedical research, an international journal.
[25] R. Ideker,et al. Computer techniques for epicardial and endocardial mapping. , 1983, Progress in cardiovascular diseases.
[26] D. Durrer,et al. Endocardial mapping by simultaneous recording of endocardial electrograms during cardiac surgery for ventricular aneurysm. , 1983, Journal of the American College of Cardiology.
[27] M. Josephson,et al. Endocardial mapping in humans in sinus rhythm with normal left ventricles: activation patterns and characteristics of electrograms. , 1984, Circulation.
[28] W. Webb,et al. Optical imaging of cell membrane potential changes induced by applied electric fields. , 1986, Biophysical journal.
[29] E. R. Smith,et al. Vulnerability to ventricular arrhythmia: assessment by mapping of body surface potential. , 1986, Circulation.
[30] W. Tobocman. Iterative inverse scattering method employing Gram-Schmidt orthogonalization , 1986 .
[31] E. Downar,et al. Activation sequence of ventricular tachycardia: endocardial and epicardial mapping studies in the human ventricle. , 1987, Journal of the American College of Cardiology.
[32] B. Taccardi,et al. A new intracavitary probe for detecting the site of origin of ectopic ventricular beats during one cardiac cycle. , 1987, Circulation.
[33] R. Selvester,et al. Ventricular excitation during percutaneous transluminal angioplasty of the left anterior descending coronary artery. , 1988, The American journal of cardiology.
[34] L. Waldman,et al. Technique for Measuring Regional Two‐Dimensional Finite Strains in Canine Left Ventricle , 1988, Circulation research.
[35] E. Downar,et al. Endocardial mapping of ventricular tachycardia in the intact human ventricle: evidence for reentrant mechanisms. , 1988, Journal of the American College of Cardiology.
[36] P. Savard,et al. PQRST isoarea maps from patients with the Wolff-Parkinson-White syndrome: an index for global alterations of ventricular repolarization. , 1988, Circulation.
[37] J. Boineau,et al. Potential distribution mapping. New method for precise localization of intramural septal origin of ventricular tachycardia. , 1988, Circulation.
[38] Y Rudy,et al. The inverse problem in electrocardiography: solutions in terms of epicardial potentials. , 1988, Critical reviews in biomedical engineering.
[39] M. Hirai,et al. Diagnostic value of QRST isointegral maps in detecting myocardial infarction complicated by bundle branch block. , 1989, Circulation.
[40] M. Yamaki,et al. Improved diagnostic performance on the severity of left ventricular hypertrophy with body surface mapping. , 1989, Circulation.
[41] E. V. Simpson,et al. The Assumptions of Isochronal Cardiac Mapping , 1989, Pacing and clinical electrophysiology : PACE.
[42] P. Wolf,et al. Cardiac mapping at Duke Medical Center. , 1989, The American journal of cardiology.
[43] P. Savard,et al. Spatial domain analysis of late ventricular potentials. Intraoperative and thoracic correlations. , 1990, Circulation research.
[44] C F Pieper,et al. Design and implementation of a new computerized system for intraoperative cardiac mapping. , 1991, Journal of applied physiology.
[45] D. T. Kaplan,et al. Repolarization Inhomogeneities in Ventricular Myocardium Change Dynamically With Abrupt Cycle Length Shortening , 1991, Circulation.
[46] M. Hirai,et al. Body Surface Distribution of Abnormally Low QRST Areas in Patients With Left Ventricular Hypertrophy: An Index of Repolarization Abnormalities , 1991, Circulation.
[47] M. Weiner,et al. Suppression of motion artifacts in fluorescence spectroscopy of perfused hearts. , 1992, The American journal of physiology.
[48] T C Palmer,et al. Visualization of bioelectric phenomena. , 1992, Critical reviews in biomedical engineering.
[49] Y Rudy,et al. The electrocardiographic inverse problem. , 1992, Critical reviews in biomedical engineering.
[50] E. R. Smith,et al. Electrocardiographic Body Surface Mapping in Patients With Ventricular Tachycardia: Assessment of Utility in the Identification of Effective Pharmacological Therapy , 1992, Circulation.
[51] E. Downar,et al. Endocardial mapping of ventricular tachycardia in the intact human heart. II. Evidence for multiuse reentry in a functional sheet of surviving myocardium. , 1992, Journal of the American College of Cardiology.
[52] P Lander,et al. Ambiguities of epicardial mapping. , 1992, Journal of electrocardiology.
[53] P. Wolf,et al. A Quantitative Measurement of Spatial Orderin Ventricular Fibrillation , 1993, Journal of cardiovascular electrophysiology.
[54] S. Colan,et al. Multipolar endocardial mapping of the right atrium during cardiac catheterization: description of a new technique. , 1993, Journal of the American College of Cardiology.
[55] W. Baxter,et al. Spiral waves of excitation underlie reentrant activity in isolated cardiac muscle. , 1993, Circulation research.
[56] A. McCulloch,et al. Measurement of strain and analysis of stress in resting rat left ventricular myocardium. , 1993, Journal of biomechanics.
[57] L. Davis,et al. Simultaneous 60-electrode mapping of ventricular tachycardia using percutaneous catheters. , 1994, Journal of the American College of Cardiology.
[58] G. Salama,et al. Optical Mapping of Repolarization and Refractoriness From Intact Hearts , 1994, Circulation.
[59] G. Salama,et al. Optical mapping reveals that repolarization spreads anisotropically and is guided by fiber orientation in guinea pig hearts. , 1995, Circulation research.
[60] A. Panfilov,et al. Nonstationary vortexlike reentrant activity as a mechanism of polymorphic ventricular tachycardia in the isolated rabbit heart. , 1995, Circulation.
[61] Y. Rudy,et al. Reconstruction of endocardial potentials and activation sequences from intracavitary probe measurements. Localization of pacing sites and effects of myocardial structure. , 1995, Circulation.
[62] A. McCulloch,et al. Comparison of two techniques for measuring two-dimensional strain in rat left ventricles. , 1996, The American journal of physiology.
[63] M. Eldar,et al. Percutaneous multielectrode endocardial mapping during ventricular tachycardia in the swine model. , 1996, Circulation.
[64] R. E. Palmer,et al. Mechanical measurements from isolated cardiac myocytes using a pipette attachment system. , 1996, The American journal of physiology.
[65] R. Gray,et al. Incomplete reentry and epicardial breakthrough patterns during atrial fibrillation in the sheep heart. , 1996, Circulation.
[66] D. Rosenbaum,et al. Unique Properties of Cardiac Action Potentials Recorded with Voltage‐Sensitive Dyes , 1996, Journal of cardiovascular electrophysiology.
[67] F. B. Davis,et al. Potentiation by thyroxine of interferon-gamma-induced antiviral state requires PKA and PKC activities. , 1996, The American journal of physiology.
[68] Y. Rudy,et al. Noncontact Endocardial Mapping: Reconstruction of Electrograms and Isochrones From Intracavitary Probe Potentials , 1997, Journal of cardiovascular electrophysiology.
[69] J. Wang,et al. Novel design of a regional myocardial force transducer. , 1997, Biomedical instrumentation & technology.
[70] L. Gepstein,et al. A novel method for nonfluoroscopic catheter-based electroanatomical mapping of the heart. In vitro and in vivo accuracy results. , 1997, Circulation.
[71] S A Ben-Haim,et al. 3D cardiac imaging of electromechanical coupling. , 1997, Advances in experimental medicine and biology.
[72] R. Gray,et al. Video imaging of atrial defibrillation in the sheep heart. , 1997, Circulation.
[73] J. Jalife,et al. A Fungal Metabolite That Eliminates Motion Artifacts , 1998, Journal of cardiovascular electrophysiology.
[74] K. Nademanee,et al. A Nonfluoroscopic Catheter‐Based Mapping Technique to Ablate Focal Ventricular Tachycardia , 1998, Pacing and clinical electrophysiology : PACE.
[75] E. O. Velipasaoglu,et al. Electrophysiological Imaging of the Right Atrium Using a Noncontact Multielectrode Cavitary Probe: Study of Normal and Abnormal Rhythms , 1998, Pacing and clinical electrophysiology : PACE.
[76] N. Peters,et al. Simultaneous endocardial mapping in the human left ventricle using a noncontact catheter: comparison of contact and reconstructed electrograms during sinus rhythm. , 1998, Circulation.
[77] H. Craighead,et al. Microfabricated cantilevers for measurement of subcellular and molecular forces , 1998, IEEE Transactions on Biomedical Engineering.
[78] M. Leon,et al. Preliminary animal and clinical experiences using an electromechanical endocardial mapping procedure to distinguish infarcted from healthy myocardium. , 1998, Circulation.
[79] D. Khoury,et al. Three-dimensional electrophysiological imaging of the intact canine left ventricle using a noncontact multielectrode cavitary probe: study of sinus, paced, and spontaneous premature beats. , 1998, Circulation.
[80] M. Leon,et al. Comparison between left ventricular electromechanical mapping and radionuclide perfusion imaging for detection of myocardial viability. , 1998, Circulation.
[81] D. Zipes,et al. Cytochalasin D as Excitation‐Contraction Uncoupler for Optically Mapping Action Potentials in Wedges of Ventricular Myocardium , 1998, Journal of cardiovascular electrophysiology.
[82] A. Støylen,et al. Real-time strain rate imaging of the left ventricle by ultrasound. , 1998, Journal of the American Society of Echocardiography : official publication of the American Society of Echocardiography.
[83] M. Leon,et al. Electromechanical characterization of acute experimental myocardial infarction. , 1999, The Journal of invasive cardiology.
[84] C. Gornick,et al. Validation of a new noncontact catheter system for electroanatomic mapping of left ventricular endocardium. , 1999, Circulation.
[85] E. McVeigh,et al. Mapping propagation of mechanical activation in the paced heart with MRI tagging. , 1999, American journal of physiology. Heart and circulatory physiology.
[86] C. Tasche,et al. A force transducer for measuring mechanical properties of single cardiac myocytes. , 1999, American journal of physiology. Heart and circulatory physiology.
[87] R. Hauer,et al. Catheter Ablation of Incisional Atrial Tachycardia Using a Novel Mapping System: LocaLisa , 2000, Pacing and clinical electrophysiology : PACE.
[88] E. McVeigh,et al. Imaging myocardial strain , 2001, IEEE Signal Process. Mag..
[89] Kristofer S. J. Pister,et al. Miniature heart cell force transducer system implemented in MEMS technology , 2001, IEEE Transactions on Biomedical Engineering.
[90] G. Sutherland,et al. New Ultrasound Methods to Quantify Regional Myocardial Function in Children with Heart Disease , 2002, Pediatric Cardiology.
[91] L. G. Ullate,et al. 64 elements two-dimensional piezoelectric array for 3D imaging. , 2002, Ultrasonics.
[92] Nicolle Kramer,et al. Design of an integrated sensor for in-vivo simultaneous electrocontractile cardiac mapping , 2002, Proceedings of the Second Joint 24th Annual Conference and the Annual Fall Meeting of the Biomedical Engineering Society] [Engineering in Medicine and Biology.
[93] A. Waller. A Demonstration on Man of Electromotive Changes accompanying the Heart's Beat , 1887, Annals of noninvasive electrocardiology : the official journal of the International Society for Holter and Noninvasive Electrocardiology, Inc.
[94] D. Khoury,et al. Global Comparisons Between Contact and Noncontact Mapping Techniques in the Right Atrium: Role of Cavitary Probe Size , 2001, Annals of Biomedical Engineering.
[95] José A. Sobrino,et al. [Ventricular tachycardia ablation guided by LocaLisa system in patients with structural heart disease]. , 2004, Revista espanola de cardiologia.
[96] M. Abello,et al. AblaciÓn de taquicardias ventriculares guiada mediante sistema LocaLisa en pacientes con cardiopatía estructural , 2004 .
[97] K. Ellenbogen,et al. Use of a Non-Fluoroscopic Catheter Navigation System for Pulmonary Vein Isolation , 2004, Journal of Interventional Cardiac Electrophysiology.
[98] W. Einthoven. Ueber die Form des menschlichen Electrocardiogramms , 1895, Archiv für die gesamte Physiologie des Menschen und der Tiere.
[99] N. Westerhof,et al. Comparison of models used to calculate left ventricular wall force , 1980, Medical and Biological Engineering and Computing.
[100] K. Maekawa,et al. Effects of intraaortic balloon pumping on the angiographic no-reflow phenomenon after percutaneous coronary intervention in patients with anterior myocardial infarction. , 2006, Circulation journal : official journal of the Japanese Circulation Society.