An algorithm for topical electrocardiographic diagnosis of ventricular arrhythmias in children
https://doi.org/10.21508/1027-4065-2017-62-1-60-68
Abstract
To develop a topical diagnostic algorithm, the authors analyzed surface ECG in 243 children, including 139 boys, with ventricular arrhythmia. The children’s age was 5 to 17 years (mean 13.4±3.1 years). The found ECG features were compared with the results of endocardial mapping and radiofrequency ablation. Based on the most informative criteria, the authors developed an algorithm for the ECG diagnosis of ventricular arrhythmias in children, which could locate the arrhythmia focus prior to interventional treatment. The most informative electrocardiographic characteristics for the topical diagnosis of ventricular arrhythmias in children were the morphology of the QRS complex in lead V1 and its duration in lead V2. The morphology of the QRS complex in lead I, its duration in lead II, the amplitude of the R wave in lead III, and the ratio of R/S wave amplitudes in lead V3 were proposed to be used as additional characteristics. The algorithm for the ECG diagnosis of ventricular arrhythmias in children makes it possible to assume the localization of the arrhythmogenic focus with an accuracy of 90% and to carry out a directed endocardial mapping, which reduces the duration of radiofrequency ablation and the radiological burden sustained by the child and the staff.
About the Authors
O. V. EliseevaRussian Federation
M. A. Shkolnikova
Russian Federation
V. V. Bereznitskaya
Russian Federation
S. A. Termosesov
Russian Federation
I. A. Kovalev
Russian Federation
References
1. Ревишвили А.Ш., Ардашев А.В., Кочович Д.З. Желудочковые аритмии. М.: МЕДПРАКТИКА-М 2002; 272. [Revishvili A. Sh., Ardashev A.V., Kocho-vich D.Z. Ventricular arrhythmias. Moscow: MEDPRAKTIKA-M 2002; 272(inRuss)]
2. Ардашев А.В. Клиническая аритмология. М: МЕДПРАКТИКА-М 2009; 157. [Ardashev A.V. Сlinical Arrhythmology. Moscow: MEDPRAKTIKA-M 2009;157(inRuss)]
3. Kamakura S., Shimizu W., Matsuo K., Taguchi A., Suyama K., Kurita T. et al. Localization of optimal ablation site of idiopathic ventricular tachycardia from and left ventricular outflow tract by body surface EGG. Circulation 1998; (98): 1525–1533.
4. Shima T., Ohnishi H., Inoue T., Yoshida A., Shimizu H., Itagaki J. et al. The relation between pacing sites in the right ventricular outflow tract and QRS morphology in the 12-lead EGG. Jpn Circ J 1998; (62): 399–404.
5. Dixit S., Gerstenfeld E.P., Callans D.J., Marchlinski F.E. Electrocardiographic patterns of superior right ventricular outflow tract tachycardia: distinguishing septal and free-wall sites of origin. J Cardiovasc Electrophisiol 2003; (14): 1–7.
6. Вайнштейн А.Б., Яшин С.М., Думпис Я. Ю., Шубик Ю.В. Электрокардиографическая топическая диагностика некоронарогенных правожелудочковых аритмий. Вестн аритмол 2003; (34): 11–17. [Vainshtein A.B., Yashin S.M., Dumpis Ya.Yu., Shubik Yu.V. Electrocardiographic topic diagnostics of non-coronarogenic right ventricular arrhythmias. Vestn Aritmol 2003; (34): 11–17. (in Russ)]
7. Ревишвили А.Ш., Рзаев Ф.Г., Снегур Р.Ю., Лабарткава Е.З. Алгоритм топической диагностики правожелудочковых аритмий. Вестн аритмол 2007; (46): 5–11. [Revishvili A.Sh., Rzaev F.G., Snegur R.Yu., Labartkava E.Z. Algorithm of topical diagnostics of right- ventricular arrhythmias. Vestn Aritmol2007; (46): 5–11. (in Russ)]
8. Ouyang F., Fotuhi P., Ho SY., Hebe J., Volkmer M., Goya M. et al. Repetitive monomorphic ventricular tachycardia originating from the aortic sinus cusp: electrocardiographic characterization for guiding catheter ablation. J Am Coll Cardiol 2002; 39: (3): 500–508.
9. Bei Ge., Kang-Ting Ji., Hai-Ge Ye., Jia Li., Yue-Chun Li., Ri-Peng Yin., Jia-Feng Lin. Electrocardiogram features of premature ventricular contractions/ventricular tachycardia originating from the left ventricular outflow tract and the treatment outcome of radiofrequency catheter ablation. Cardiovascular Dis 2012; 12: 112.
10. Ito S., Tada H., Naito S., Kurosaki K., Ueda M., Hosizaki H. et al. Development and validation of an ECG algorithm for identifying the optimal ablation site for idiopathic ventricular outflow tract tachycardia. J Cardiovasc Electrophysiol 2003; 14: 1280.
11. Чернышов А.А. Идиопатические желудочковые аритмии у детей и подростков: клинико-функциональная характеристика и результаты лечения: Автореф. дисс.… к.м.н. Томск, 2011; 13. [Chernishov A.A. Idiopathic ventricular arrhythmias in children and adolescents: clinical characteristics and treatment results. Avtoref. diss. k.m.n. Tomsk, 2011; 13. (in Russ)]
12. Школьникова М.А., Березницкая В.В. Диагностика и медикаментозное лечение желудочковых экстрасистолий у детей. Рос вестн перинатол и педиатр 2008; (2): 60–67. [Shkolnikova M.A., Bereznitskaya V.V. Diagnosis and treatment of ventricular arrhythmias in the child. Ros Vestn Perinatol i Pediatr 2008; (2): 60–67. (In Russ.)]
13. Rosenbaum M.B. Classification of ventricular extrasystoles according to form. J Electrocardiol 1969; (2): 289–297.
14. Josephson M.E., Horowitz L.N., Waxman H.L., Cain M.E., Spielman S.R., Greenspan A.M. et al. Sustained ventricular tachycardia: role of the 12-lead electrocardiogram in localizing site of origin. Circulation 1981; (64): 257–272.
15. Kuchar D.L., Ruskin J.N., Geran H. Electrocardiographic localization of the site of origin of ventricular tachycardia in patients with prior myocardial infarction. Int J Am Coll Cardiol 1989; (13): 893–903.
16. Jadonath R.L., Schwartzman D., Preminger M.W., Gottlieb C.D., Marchlinski F.E. Utility of the 12-lead electrocardiogram in localizing the origin of right ventricular outflow tract tachycardia. Am Heart J 1995; (130): 1107–1113.
17. Ревишвили А.Ш., Носкова М.В., Рзаев Ф.Г., Артюхина Е.А. Неинвазивная топическая диагностика некоронарогенных желудочковых аритмий. Вестник аритмологии 2004; (35): 5–15. [Revishvili A.Sh., Noskova M.V., Rzaev F.G., Artyukhina E.A. Non-invasive topical diagnostics of non-coronarogenic ventricular arrhythmias. Vestnik Aritmologii 2004; (35): 5–15. (in Russ)]
18. Hachiya H., Aonuma K., Yamauchi Y., Harada T., Igawa M., Nogami A. et al. Electrocardiographic characteristics of left ventricular outflow tract tachycardia. Pacing Clin Electrophysiol 2000; (23): 1930–1934.
19. Yamada T. Electrocardiographic Algorithms to Localize the Origins of Idiopathic Ventricular Arrhythmias. Pacing and Clinical Electrophysiology 2012; (35): 1514–1515.
20. Callans D.J., Menz V., Schwartzman D., Gottlieb C.D., Marchlinski F.E. Repetitive monomorphic tachycardia from the left ventricular outflow tract: Electrocardiographic patterns consistent with a left ventricular site of origin. J Am Coil Cardiol 1997; (29): 1023– 1027.
21. Shimoike E., Ohnishi Y., Ueda N., Maruyama T., Kaji Y. Radiofrequency Catheter Ablation of Left Ventricular Outflow Tract Tachycardia from the Coronary Cusp: A new approach to the tachycardia focus. J Cardiovascul Electrophysiol 1999; 10: (7): 1005–1009.
22. Bala R., Garcia F.C., Hutchinson M.D., Gerstenfeld E.P., Dhruvakumar S., Dixit S. et al. Electrocardiographic and electrophysiologic features of ventricular arrhythmias originating from the right/left coronary cusp commissure. Heart Rhythm 2010; (7): 312–322.
Review
For citations:
Eliseeva O.V., Shkolnikova M.A., Bereznitskaya V.V., Termosesov S.A., Kovalev I.A. An algorithm for topical electrocardiographic diagnosis of ventricular arrhythmias in children. Rossiyskiy Vestnik Perinatologii i Pediatrii (Russian Bulletin of Perinatology and Pediatrics). 2017;62(1):60-68. (In Russ.) https://doi.org/10.21508/1027-4065-2017-62-1-60-68