INFORMAZIONI SU QUESTO ARTICOLO

Cita

[1] Acar RD, Bulut M, Acar S, Izci S, Fidan S, Yesin M, et al. Evaluation of the P wave axis in patients with systemic lupus erythematosus. J Cardiovasc Thorac Res 2015;7(4):154–7.10.15171/jcvtr.2015.33468528126702344Search in Google Scholar

[2] Suppappola S, Sun Y, Chiaramida SA. Gaussian pulse decomposition: an intuitive model of electrocardiogram waveforms. Ann Biomed Eng 1997;25(2):252–60.10.1007/BF026480399084830Search in Google Scholar

[3] Herreros A, Baeyens E, Peran JR, Johansson R, Carlson J, Olsson B, editors. An algorithm for phase-space detection of the P characteristic points. 2007 29th Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE; 2007.10.1109/IEMBS.2007.435271218002378Search in Google Scholar

[4] Herreros A, Baeyens E, Johansson R, Carlson J, Perán JR, Olsson B. Analysis of changes in the beat-to-beat P-wave morphology using clustering techniques. Biomed Signal Process Control 2009;4(4):309–16.10.1016/j.bspc.2009.02.006Search in Google Scholar

[5] Furniss GO, Panagopoulos D, Kanoun S, Davies EJ, Tomlinson DR, Haywood GA. The effect of atrial fibrillation ablation techniques on P wave duration and P wave dispersion. Heart Lung Circ 2019;28(3):389–96.10.1016/j.hlc.2018.02.00329501465Search in Google Scholar

[6] Filos D, Chouvarda I, Tachmatzidis D, Vassilikos V, Maglaveras N. Beat-to-beat P-wave morphology as a predictor of paroxysmal atrial fibrillation. Comput Methods Programs Biomed 2017;151:111–21.10.1016/j.cmpb.2017.08.01628946993Search in Google Scholar

[7] Martis RJ, Chakraborty C, Ray AK. A two-stage mechanism for registration and classification of ECG using Gaussian mixture model. Pattern Recognit 2009;42(11):2979–88.10.1016/j.patcog.2009.02.008Search in Google Scholar

[8] Censi F, Calcagnini G, Ricci C, Ricci RP, Santini M, Gram-matico A, et al. P-wave morphology assessment by a Gaussian functions-based model in atrial fibrillation patients. IEEE Trans Biomed Eng 2007;54(4):663–72.10.1109/TBME.2006.89013417405373Search in Google Scholar

[9] Srinivasan N, Wong M, Krishnan S, editors. A new phase space analysis algorithm for cardiac arrhythmia detection. Proceedings of the 25th Annual International Conference of the IEEE Engineering in Medicine and Biology Society (IEEE Cat No 03CH37439). IEEE; 2003.Search in Google Scholar

[10] Diery A, Rowlands D, Cutmore TR, James D. Automated ECG diagnostic P-wave analysis using wavelets. Comput Methods Programs Biomed 2011;101(1):33–43.10.1016/j.cmpb.2010.04.01220537757Search in Google Scholar

[11] Martis RJ, Acharya UR, Adeli H. Current methods in electrocardiogram characterization. Comput Biol Med 2014;48:133–49.10.1016/j.compbiomed.2014.02.01224681634Search in Google Scholar

[12] Lyon A, Mincholé A, Martínez JP, Laguna P, Rodriguez B. Computational techniques for ECG analysis and interpretation in light of their contribution to medical advances. JRSoc Interface 2018;15(138):20170821.10.1098/rsif.2017.0821580598729321268Search in Google Scholar

[13] Schläpfer J, Wellens HJ. Computer-interpreted electrocardiograms: benefits and limitations. J Am Coll Cardiol 2017;70(9):1183–92.10.1016/j.jacc.2017.07.72328838369Search in Google Scholar

[14] Van der Vaart AW. Asymptotic statistics. Cambridge University Press; 2000.Search in Google Scholar

[15] Carlin BP, Louis TA. Bayes and empirical Bayes methods for data analysis. Chapman and Hall/CRC; 2010.Search in Google Scholar

[16] Ohlssen DI, Sharples LD, Spiegelhalter DJ. Flexible random-effects models using Bayesian semi-parametric models: applications to institutional comparisons. Stat Med 2007;26(9):2088–112.10.1002/sim.266616906554Search in Google Scholar

[17] Dunson DB, Herring AH, Engel SM. Bayesian selection and clustering of polymorphisms in functionally related genes. J Am Stat Assoc 2008;103(482):534–46.10.1198/016214507000000554Search in Google Scholar

[18] Scarpa B, Dunson DB. Bayesian hierarchical functional data analysis via contaminated informative priors. Bio-metrics 2009;65(3):772–80.10.1111/j.1541-0420.2008.01163.x19173703Search in Google Scholar

[19] Barcella W, Iorio MD, Baio G, Malone-Lee J. Variable selection in covariate dependent random partition models: an application to urinary tract infection. Stat Med 2016;35(8):1373–89.10.1002/sim.678626536840Search in Google Scholar

[20] Canale A, Lijoi A, Nipoti B, Prünster I. On the Pitman– Yor process with spike and slab base measure. Biometrika 2017;104(3):681–97.10.1093/biomet/asx041Search in Google Scholar

[21] Paulon G, De Iorio M, Guglielmi A, Ieva F. Joint modeling of recurrent events and survival: a Bayesian non-parametric approach. Biostatistics (Oxford, England). 2018.10.1093/biostatistics/kxy02629985982Search in Google Scholar

[22] Magnani JW, Williamson MA, Ellinor PT, Monahan KM, Benjamin EJ. P wave indices: current status and future directions in epidemiology, clinical, and research applications. Circ Arrhythm Electrophysiol 2009;2(1):72–9.10.1161/CIRCEP.108.806828276083719808445Search in Google Scholar

[23] Laucevicius A. Non-invasive diagnosis of cardiac arrhythmias. In: Lip GY, Godtfredsen J. Cardiac arrhythmias: a clinical approach. Mosby; 2003. p. 189–214.Search in Google Scholar

[24] Laucevičius A, Aidietis A,Černiauskas R, Marinskis G, Aganauskienė J, Jokšas V. The signal averaged P wave electrocardiogram – methodological problems and perspective. Kardiologijos seminarai 1998;4(2):114–9.Search in Google Scholar

[25] He J, Tse G, Korantzopoulos P, Letsas KP, Ali-Hasan-Al-Saegh S, Kamel H, et al. P-wave indices and risk of ischemic stroke: a systematic review and meta-analysis. Stroke 2017;48(8):2066–72.10.1161/STROKEAHA.117.01729328679858Search in Google Scholar

[26] Platonov PG. P-wave morphology: underlying mechanisms and clinical implications. Ann Noninvasive Electro-cardiol 2012;17(3):161–9.10.1111/j.1542-474X.2012.00534.x693258722816534Search in Google Scholar

[27] Chandy J, Nakai T, Lee RJ, Bellows WH, Dzankic S, Leung JM. Increases in P-wave dispersion predict postoperative atrial fibrillation after coronary artery bypass graft surgery. Anesth Analg 2004;98(2):303–10.10.1213/01.ANE.0000096195.47734.2F14742359Search in Google Scholar

[28] Dilaveris PE, Andrikopoulos GK, Metaxas G, Richter DJ, Avgeropoulou CK, Androulakis AM, et al. Effects of ischemia on P wave dispersion and maximum P wave duration during spontaneous anginal episodes. Pacing Clin Electrophysiol 1999;22(11):1640–7.10.1111/j.1540-8159.1999.tb00384.x10598968Search in Google Scholar

[29] Budeus M, Hennersdorf M, Perings C, Wieneke H, Erbel R, Sack S. Prediction of the recurrence of atrial fibrillation after successful cardioversion with P wave signal-averaged ECG. Ann Noninvasive Electrocardiol 2005;10(4):414–9.10.1111/j.1542-474X.2005.00059.x693234116255751Search in Google Scholar

[30] Aytemir K, Amasyali B, Kose S, Kilic A, Abali G, Oto A, et al. Maximum P-wave duration and P-wave dispersion predict recurrence of paroxysmal atrial fibrillation in patients with Wolff–Parkinson–White syndrome after successful radiofrequency catheter ablation. J Interv Card Electrophysiol 2004;11(1):21–7.10.1023/B:JICE.0000035925.90831.80Search in Google Scholar

[31] Lazzeroni D, Parati G, Bini M, Piazza P, Ugolotti PT, Camaiora U, et al. P-wave dispersion predicts atrial fibrillation following cardiac surgery. Int J Cardiol 2016;203:131–3.10.1016/j.ijcard.2015.10.14326512825Search in Google Scholar

[32] Ren Y, Qiu J, Li Z, Li C. P-wave terminal force in lead V1 is a predictive indicator for the diagnosis of tuberculous constrictive pericarditis. Heart Lung 2019;48(2):155–8.10.1016/j.hrtlng.2018.09.00730391075Search in Google Scholar

[33] Akdemir R, Ozhan H, Gunduz H, Tamer A, Yazici M, Erbilen E, et al. Effect of reperfusion on P-wave duration and P-wave dispersion in acute myocardial infarction: primary angioplasty versus thrombolytic therapy. Ann Noninvasive Electrocardiol 2005;10(1):35–40.10.1111/j.1542-474X.2005.00595.x693246015649235Search in Google Scholar

[34] Baykan M, Çelik Ş, Erdöl C, Durmuş İ, Örem C, Küçükosmanoğlu M, et al. Effects of P-wave dispersion on atrial fibrillation in patients with acute anterior wall myocardial infarction. Ann Noninvasive Electrocardiol 2003;8(2):101–6.10.1046/j.1542-474X.2003.08202.xSearch in Google Scholar

[35] Ho TF, Chia E, Yip W, Chan K. Analysis of P wave and P dispersion in children with secundum atrial septal defect. Ann Noninvasive Electrocardiol 2001;6(4):305–9.10.1111/j.1542-474X.2001.tb00123.xSearch in Google Scholar

[36] Deveci OS, Aytemir K, Okutucu S, Tulumen E, Aksoy H, Kaya EB, et al. Evaluation of the relationship between atrial septal aneurysm and cardiac arrhythmias via P-wave dispersion and signal-averaged P-wave duration. Ann Noninvasive Electrocardiol 2010;15(2):157–64.10.1111/j.1542-474X.2010.00357.x693224720522057Search in Google Scholar

[37] Turhan H, Yetkin E, Atak R, Altinok T, Senen K, Ileri M, et al. Increased P-wave duration and P-wave dispersion in patients with aortic stenosis. Ann Noninvasive Electrocardiol 2003;8(1):18–21.10.1046/j.1542-474X.2003.08104.xSearch in Google Scholar

[38] Ozmen N, Cebeci BS, Kardesoglu E, Celik T, Dincturk M, Demiralp E. P wave dispersion is increased in pulmonary stenosis. Indian Pacing Electrophysiol J 2006;6(1):25.Search in Google Scholar

[39] Guntekin U, Gunes Y, Tuncer M, Gunes A, Sahin M, Simsek H. Long-term follow-up of P-wave duration and dispersion in patients with mitral stenosis. Pacing Clin Electrophysiol 2008;31(12):1620–4.10.1111/j.1540-8159.2008.01235.x19067816Search in Google Scholar

[40] Holmqvist F, Platonov PG, Solomon SD, Petersson R, Mc-Nitt S, Carlson J, et al. P-wave morphology is associated with echocardiographic response to cardiac resynchronization therapy in MADIT-CRT Patients. Ann Noninvasive Electrocardiol 2013;18(6):510–8.10.1111/anec.12121693233924303967Search in Google Scholar

[41] Liu G, Tamura A, Torigoe K, Kawano Y, Shinozaki K, Kotoku M, et al. Abnormal P-wave terminal force in lead V 1 is associated with cardiac death or hospitalization for heart failure in prior myocardial infarction. Heart Vessels 2013;28(6):690–5.10.1007/s00380-012-0307-923160859Search in Google Scholar

[42] Kamel H, Soliman EZ, Heckbert SR, Kronmal RA, Longstreth Jr W, Nazarian S, et al. P-wave morphology and the risk of incident ischemic stroke in the Multi-Ethnic Study of Atherosclerosis. Stroke 2014;45(9):2786–8.10.1161/STROKEAHA.114.006364414662425052322Search in Google Scholar

[43] Şap F, Karataş Z, Altin H, Alp H, Oran B, Baysal T, et al. Dispersion durations of P-wave and QT interval in children with congenital heart disease and pulmonary arterial hypertension. Pediatr Cardiol 2013;34(3):591–6.10.1007/s00246-012-0503-522972516Search in Google Scholar

[44] Bandorski D, Bogossian H, Ecke A, Wiedenroth C, Gruenig E, Benjamin N, et al. Evaluation of the prognostic value of electrocardiography parameters and heart rhythm in patients with pulmonary hypertension. Cardiol J 2016;23(4):465–72.10.5603/CJ.a2016.004427367480Search in Google Scholar

[45] Guler H, Seyfeli E, Sahin G, Duru M, Akgul F, Saglam H, et al. P wave dispersion in patients with rheumatoid arthritis: its relation with clinical and echocardiographic parameters. Rheumatol Int 2007;27(9):813–8.10.1007/s00296-007-0307-817431630Search in Google Scholar

[46] Razazian N, Hedayati N, Moradian N, Bostani A, Af-shari D, Asgari N. P wave duration and dispersion and QT interval in multiple sclerosis. Mult Scler Relat Disord 2014;3(5):662–5.10.1016/j.msard.2014.05.00126265278Search in Google Scholar

[47] Aksoy H, Okutucu S, Sayin B, Ercan E, Kaya E, Ozdemir O, et al. Assessment of cardiac arrhythmias in patients with ankylosing spondylitis by signal-averaged P wave duration and P wave dispersion. Eur Rev Med Pharmacol Sci 2016;20(6):1123–9.10.1016/j.amjcard.2016.04.246Search in Google Scholar

[48] R Development Core Team. R: A language and environment for statistical computing. 2013.Search in Google Scholar

[49] Borchers HW. pracma: Practical Numerical Math Functions. 2018. https://cran.r-project.org/web/packages/pracma/index.html.Search in Google Scholar

[50] Charles J. Geyer LTJ. mcmc: Markov Chain Monte Carlo. 2019. https://cran.r-project.org/web/packages/mcmc/index.html.Search in Google Scholar

eISSN:
1822-7767
Lingua:
Inglese
Frequenza di pubblicazione:
Volume Open
Argomenti della rivista:
Medicine, Clinical Medicine, Internal Medicine, other, Cardiology