Body Surface Potential Mapping
"Body Surface Potential Mapping" is a descriptor in the National Library of Medicine's controlled vocabulary thesaurus,
MeSH (Medical Subject Headings). Descriptors are arranged in a hierarchical structure,
which enables searching at various levels of specificity.
Recording of regional electrophysiological information by analysis of surface potentials to give a complete picture of the effects of the currents from the heart on the body surface. It has been applied to the diagnosis of old inferior myocardial infarction, localization of the bypass pathway in Wolff-Parkinson-White syndrome, recognition of ventricular hypertrophy, estimation of the size of a myocardial infarct, and the effects of different interventions designed to reduce infarct size. The limiting factor at present is the complexity of the recording and analysis, which requires 100 or more electrodes, sophisticated instrumentation, and dedicated personnel. (Braunwald, Heart Disease, 4th ed)
Descriptor ID |
D018780
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MeSH Number(s) |
E01.370.370.380.240.850.100 E01.370.405.240.850.100
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Concept/Terms |
Body Surface Potential Mapping- Body Surface Potential Mapping
- Body Surface Mapping
- Body Surface Mappings
- Mapping, Body Surface
- Mappings, Body Surface
- Surface Mapping, Body
- Surface Mappings, Body
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Below are MeSH descriptors whose meaning is more general than "Body Surface Potential Mapping".
Below are MeSH descriptors whose meaning is more specific than "Body Surface Potential Mapping".
This graph shows the total number of publications written about "Body Surface Potential Mapping" by people in this website by year, and whether "Body Surface Potential Mapping" was a major or minor topic of these publications.
To see the data from this visualization as text, click here.
Year | Major Topic | Minor Topic | Total |
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2002 | 0 | 1 | 1 | 2010 | 0 | 1 | 1 | 2012 | 0 | 1 | 1 | 2013 | 0 | 1 | 1 | 2015 | 0 | 1 | 1 | 2019 | 0 | 1 | 1 | 2021 | 1 | 0 | 1 |
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Below are the most recent publications written about "Body Surface Potential Mapping" by people in Profiles.
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Pothineni NVK, Garg L, Guandalini G, Lin D, Supple GE, Garcia FC. A novel approach to mapping and ablation of septal outflow tract ventricular arrhythmias: Insights from multipolar intraseptal recordings. Heart Rhythm. 2021 08; 18(8):1445-1451.
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Tzou WS, Tschabrunn CM. Looking Near and Far: Utility of Multielectrode Mapping in Redefining Voltage?Standards. JACC Clin Electrophysiol. 2019 10; 5(10):1141-1143.
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Sauer WH. Mapping repetitive activation in atrial fibrillation: Active drivers or passengers along for the ride? J Cardiovasc Electrophysiol. 2018 05; 29(5):696-698.
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Zaman JAB, Sauer WH, Alhusseini MI, Baykaner T, Borne RT, Kowalewski CAB, Busch S, Zei PC, Park S, Viswanathan MN, Wang PJ, Brachmann J, Krummen DE, Miller JM, Rappel WJ, Narayan SM, Peters NS. Identification and Characterization of Sites Where Persistent Atrial Fibrillation Is Terminated by Localized Ablation. Circ Arrhythm Electrophysiol. 2018 01; 11(1):e005258.
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Baykaner T, Zaman JAB, Rogers AJ, Navara R, AlHusseini M, Borne RT, Park S, Wang PJ, Krummen DE, Sauer WH, Narayan SM. Spatial relationship of sites for atrial fibrillation drivers and atrial tachycardia in patients with both arrhythmias. Int J Cardiol. 2017 Dec 01; 248:188-195.
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Tung R, Vaseghi M, Frankel DS, Vergara P, Di Biase L, Nagashima K, Yu R, Vangala S, Tseng CH, Choi EK, Khurshid S, Patel M, Mathuria N, Nakahara S, Tzou WS, Sauer WH, Vakil K, Tedrow U, Burkhardt JD, Tholakanahalli VN, Saliaris A, Dickfeld T, Weiss JP, Bunch TJ, Reddy M, Kanmanthareddy A, Callans DJ, Lakkireddy D, Natale A, Marchlinski F, Stevenson WG, Della Bella P, Shivkumar K. Freedom from recurrent ventricular tachycardia after catheter ablation is associated with improved survival in patients with structural heart disease: An International VT Ablation Center Collaborative Group study. Heart Rhythm. 2015 Sep; 12(9):1997-2007.
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Aldhoon B, Tzou WS, Riley MP, Lin D, Callans DJ, Hutchinson MD, Dixit S, Garcia FC, Zado ES, Marchlinski FE. Nonischemic cardiomyopathy substrate and ventricular tachycardia in the setting of coronary artery disease. Heart Rhythm. 2013 Nov; 10(11):1622-7.
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Campos B, Jauregui ME, Park KM, Mountantonakis SE, Gerstenfeld EP, Haqqani H, Garcia FC, Hutchinson MD, Callans DJ, Dixit S, Lin D, Riley MP, Tzou W, Cooper JM, Bala R, Zado ES, Marchlinski FE. New unipolar electrogram criteria to identify irreversibility of nonischemic left ventricular cardiomyopathy. J Am Coll Cardiol. 2012 Nov 20; 60(21):2194-204.
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Hutchinson MD, Gerstenfeld EP, Desjardins B, Bala R, Riley MP, Garcia FC, Dixit S, Lin D, Tzou WS, Cooper JM, Verdino RJ, Callans DJ, Marchlinski FE. Endocardial unipolar voltage mapping to detect epicardial ventricular tachycardia substrate in patients with nonischemic left ventricular cardiomyopathy. Circ Arrhythm Electrophysiol. 2011 Feb; 4(1):49-55.
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Gist K, Tigges C, Smith G, Clark J. Learning curve for zero-fluoroscopy catheter ablation of AVNRT: early versus late experience. Pacing Clin Electrophysiol. 2011 Mar; 34(3):264-8.
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