Skip to main content
Top
Published in: Heart and Vessels 8/2017

01-08-2017 | Original Article

“Window Sliding” analysis combined with high-density and rapid electroanatomical mapping: its efficacy and the outcome of catheter ablation of atrial tachycardia

Authors: Kosuke Nakasuka, Koji Miyamoto, Takashi Noda, Tsukasa Kamakura, Mitsuru Wada, Ikutaro Nakajima, Kohei Ishibashi, Yuko Inoue, Hideo Okamura, Satoshi Nagase, Takeshi Aiba, Shiro Kamakura, Wataru Shimizu, Teruo Noguchi, Toshihisa Anzai, Satoshi Yasuda, Nobuyuki Ohte, Kengo Kusano

Published in: Heart and Vessels | Issue 8/2017

Login to get access

Abstract

Atrial tachycardia (AT) is a clinically challenging arrhythmia that can occur based on atrial substrates. Nowadays, a rapid construction of three-dimensional electroanatomical maps, which has an analysis function for complex arrhythmias, named ‘Window Sliding’ (WS) is available. However, little data has revealed the efficacy of this mapping strategy. The aim of this study was to investigate the efficacy of the WS analysis for AT treatments. All patients underwent electrophysiological studies during ATs and the characteristics of the ATs were analyzed using rapid high-density mapping followed by the WS analysis. RFA was then performed. Fifty-five ATs were identified in 34 patients (63 ± 17 year-old) and in 51 activation maps (cycle length, 322 ± 120 milliseconds) were successfully constructed with 644 ± 433 points per map during 5.3 ± 2.5 min. The types of detected ATs were macro-reentries around the mitral (8) and, tricuspid (12) valves, roof-dependent reentry (5), others (13), and focal patterns (13). Of those that underwent RFA, 46 (98%) were treated successfully. Two ATs were abandoned since their critical sites were close to the His bundle and sinoatrial node. During a mean follow-up period of 179 ± 176 days, 7 patients had documented recurrences of AT. This high-density mapping using the WS analysis was useful for creating the entire picture of the ATs in a short time, resulting in favorable RFA outcomes.
Appendix
Available only for authorised users
Literature
1.
go back to reference Markowitz SM, Brodman RF, Stein KM, Mittal S, Slotwiner DJ, Iwai S, Das MK, Lerman BB (2002) Lesional tachycardias related to mitral valve surgery. J Am Coll Cardiol 39:1973–1983CrossRefPubMed Markowitz SM, Brodman RF, Stein KM, Mittal S, Slotwiner DJ, Iwai S, Das MK, Lerman BB (2002) Lesional tachycardias related to mitral valve surgery. J Am Coll Cardiol 39:1973–1983CrossRefPubMed
2.
go back to reference Gerstenfeld EP, Callans DJ, Dixit S, Russo AM, Nayak H, Lin D, Pulliam W, Siddique S, Marchlinski FE (2004) Mechanisms of organized left atrial tachycardias occurring after pulmonary vein isolation. Circulation 110:1351–1357CrossRefPubMed Gerstenfeld EP, Callans DJ, Dixit S, Russo AM, Nayak H, Lin D, Pulliam W, Siddique S, Marchlinski FE (2004) Mechanisms of organized left atrial tachycardias occurring after pulmonary vein isolation. Circulation 110:1351–1357CrossRefPubMed
3.
go back to reference Deisenhofer I, Estner H, Zrenner B, Schreieck J, Weyerbrock S, Hessling G, Scharf K, Karch MR, Schmitt C (2006) Left atrial tachycardia after circumferential pulmonary vein ablation for atrial fibrillation: incidence, electrophysiological characteristics, and results of radiofrequency ablation. Europace 8:573–582CrossRefPubMed Deisenhofer I, Estner H, Zrenner B, Schreieck J, Weyerbrock S, Hessling G, Scharf K, Karch MR, Schmitt C (2006) Left atrial tachycardia after circumferential pulmonary vein ablation for atrial fibrillation: incidence, electrophysiological characteristics, and results of radiofrequency ablation. Europace 8:573–582CrossRefPubMed
4.
go back to reference Chugh A, Oral H, Lemola K, Hall B, Cheung P, Good E, Tamirisa K, Han J, Bogun F, Pelosi F Jr, Morady F (2005) Prevalence, mechanisms, and clinical significance of macroreentrant atrial tachycardia during and following left atrial ablation for atrial fibrillation. Heart Rhythm 2:464–471CrossRefPubMed Chugh A, Oral H, Lemola K, Hall B, Cheung P, Good E, Tamirisa K, Han J, Bogun F, Pelosi F Jr, Morady F (2005) Prevalence, mechanisms, and clinical significance of macroreentrant atrial tachycardia during and following left atrial ablation for atrial fibrillation. Heart Rhythm 2:464–471CrossRefPubMed
5.
go back to reference Rostagno C, Gelsomino S, Capecchi I, Rossi A, Montesi GF, Stefano PL (2016) Factors related to sinus rhythm at discharge after radiofrequency ablation of permanent atrial fibrillation in patients undergoing mitral valve surgery. Heart Vessels 31:593–598CrossRefPubMed Rostagno C, Gelsomino S, Capecchi I, Rossi A, Montesi GF, Stefano PL (2016) Factors related to sinus rhythm at discharge after radiofrequency ablation of permanent atrial fibrillation in patients undergoing mitral valve surgery. Heart Vessels 31:593–598CrossRefPubMed
6.
go back to reference Gerstenfeld EP, Callans DJ, Sauer W, Jacobson J, Marchlinski FE (2005) Reentrant and nonreentrant focal left atrial tachycardias occur after pulmonary vein isolation. Heart Rhythm 2:1195–1202CrossRefPubMed Gerstenfeld EP, Callans DJ, Sauer W, Jacobson J, Marchlinski FE (2005) Reentrant and nonreentrant focal left atrial tachycardias occur after pulmonary vein isolation. Heart Rhythm 2:1195–1202CrossRefPubMed
7.
go back to reference Patel AM, d’Avila A, Neuzil P, Kim SJ, Mela T, Singh JP, Ruskin JN, Reddy VY (2008) Atrial tachycardia after ablation of persistent atrial fibrillation: identification of the critical isthmus with a combination of multielectrode activation mapping and targeted entrainment mapping. Circ Arrhythm Electrophysiol 1:14–22CrossRefPubMed Patel AM, d’Avila A, Neuzil P, Kim SJ, Mela T, Singh JP, Ruskin JN, Reddy VY (2008) Atrial tachycardia after ablation of persistent atrial fibrillation: identification of the critical isthmus with a combination of multielectrode activation mapping and targeted entrainment mapping. Circ Arrhythm Electrophysiol 1:14–22CrossRefPubMed
8.
go back to reference Maeda S, Sasaki T, Shirai Y, Ihara K, Kawabata M, Yokoyama Y, Nazarian S, Zimmerman SL, Hirao K (2015) Association of intramural fat deposition in the interatrial septum with focal atrial tachyarrhythmias originating near the atrioventricular node. Heart Vessels 30:143–145CrossRefPubMed Maeda S, Sasaki T, Shirai Y, Ihara K, Kawabata M, Yokoyama Y, Nazarian S, Zimmerman SL, Hirao K (2015) Association of intramural fat deposition in the interatrial septum with focal atrial tachyarrhythmias originating near the atrioventricular node. Heart Vessels 30:143–145CrossRefPubMed
9.
go back to reference Rostock T, Drewitz I, Steven D, Hoffmann BA, Salukhe TV, Bock K, Servatius H, Aydin MA, Meinertz T, Willems S (2010) Characterization, mapping, and catheter ablation of recurrent atrial tachycardias after stepwise ablation of long-lasting persistent atrial fibrillation. Circ Arrhythm Electrophysiol 3:160–169CrossRefPubMed Rostock T, Drewitz I, Steven D, Hoffmann BA, Salukhe TV, Bock K, Servatius H, Aydin MA, Meinertz T, Willems S (2010) Characterization, mapping, and catheter ablation of recurrent atrial tachycardias after stepwise ablation of long-lasting persistent atrial fibrillation. Circ Arrhythm Electrophysiol 3:160–169CrossRefPubMed
10.
go back to reference Irtel TA, Delacretaz E (2005) Intra-atrial reentrant tachycardia with ambiguous data from activation mapping: what to do next? Heart Rhythm 2:780–781CrossRefPubMed Irtel TA, Delacretaz E (2005) Intra-atrial reentrant tachycardia with ambiguous data from activation mapping: what to do next? Heart Rhythm 2:780–781CrossRefPubMed
11.
go back to reference Castrejon-Castrejon S, Ortega M, Perez-Silva A, Doiny D, Estrada A, Filgueiras D, Lopez-Sendon JL, Merino JL (2011) Organized atrial tachycardias after atrial fibrillation ablation. Cardiology research and practice 2011: 957538 Castrejon-Castrejon S, Ortega M, Perez-Silva A, Doiny D, Estrada A, Filgueiras D, Lopez-Sendon JL, Merino JL (2011) Organized atrial tachycardias after atrial fibrillation ablation. Cardiology research and practice 2011: 957538
12.
go back to reference Eitel C, Hindricks G, Dagres N, Sommer P, Piorkowski C (2010) EnSite Velocity cardiac mapping system: a new platform for 3D mapping of cardiac arrhythmias. Expert Rev Med Devices 7:185–192CrossRefPubMed Eitel C, Hindricks G, Dagres N, Sommer P, Piorkowski C (2010) EnSite Velocity cardiac mapping system: a new platform for 3D mapping of cardiac arrhythmias. Expert Rev Med Devices 7:185–192CrossRefPubMed
13.
go back to reference Ventura R, Rostock T, Klemm HU, Lutomsky B, Demir C, Weiss C, Meinertz T, Willems S (2004) Catheter ablation of common-type atrial flutter guided by three-dimensional right atrial geometry reconstruction and catheter tracking using cutaneous patches: a randomized prospective study. J Cardiovasc Electrophysiol 15:1157–1161CrossRefPubMed Ventura R, Rostock T, Klemm HU, Lutomsky B, Demir C, Weiss C, Meinertz T, Willems S (2004) Catheter ablation of common-type atrial flutter guided by three-dimensional right atrial geometry reconstruction and catheter tracking using cutaneous patches: a randomized prospective study. J Cardiovasc Electrophysiol 15:1157–1161CrossRefPubMed
14.
go back to reference Miyamoto K, Tsuchiya T, Narita S, Yamaguchi T, Nagamoto Y, Ando S, Hayashida K, Tanioka Y, Takahashi N (2009) Bipolar electrogram amplitudes in the left atrium are related to local conduction velocity in patients with atrial fibrillation. Europace 11:1597–1605CrossRefPubMed Miyamoto K, Tsuchiya T, Narita S, Yamaguchi T, Nagamoto Y, Ando S, Hayashida K, Tanioka Y, Takahashi N (2009) Bipolar electrogram amplitudes in the left atrium are related to local conduction velocity in patients with atrial fibrillation. Europace 11:1597–1605CrossRefPubMed
15.
go back to reference Sanders P, Morton JB, Davidson NC, Spence SJ, Vohra JK, Sparks PB, Kalman JM (2003) Electrical remodeling of the atria in congestive heart failure: electrophysiological and electroanatomic mapping in humans. Circulation 108:1461–1468CrossRefPubMed Sanders P, Morton JB, Davidson NC, Spence SJ, Vohra JK, Sparks PB, Kalman JM (2003) Electrical remodeling of the atria in congestive heart failure: electrophysiological and electroanatomic mapping in humans. Circulation 108:1461–1468CrossRefPubMed
16.
go back to reference Lo LW, Tai CT, Lin YJ, Chang SL, Wongcharoen W, Chang SH, Hsieh MH, Tuan TC, Udyavar AR, Chen YJ, Tsao HM, Chen SA (2007) Progressive remodeling of the atrial substrate–a novel finding from consecutive voltage mapping in patients with recurrence of atrial fibrillation after catheter ablation. J Cardiovasc Electrophysiol 18:258–265CrossRefPubMed Lo LW, Tai CT, Lin YJ, Chang SL, Wongcharoen W, Chang SH, Hsieh MH, Tuan TC, Udyavar AR, Chen YJ, Tsao HM, Chen SA (2007) Progressive remodeling of the atrial substrate–a novel finding from consecutive voltage mapping in patients with recurrence of atrial fibrillation after catheter ablation. J Cardiovasc Electrophysiol 18:258–265CrossRefPubMed
17.
go back to reference De Ponti R, Marazzi R, Zoli L, Caravati F, Ghiringhelli S, Salerno-Uriarte JA (2010) Electroanatomic mapping and ablation of macroreentrant atrial tachycardia: comparison between successfully and unsuccessfully treated cases. J Cardiovasc Electrophysiol 21:155–162CrossRefPubMed De Ponti R, Marazzi R, Zoli L, Caravati F, Ghiringhelli S, Salerno-Uriarte JA (2010) Electroanatomic mapping and ablation of macroreentrant atrial tachycardia: comparison between successfully and unsuccessfully treated cases. J Cardiovasc Electrophysiol 21:155–162CrossRefPubMed
18.
go back to reference Ju W, Yang B, Chen H, Zhang F, Gu K, Yu J, Li M, Yang G, Cao K, Chen M (2014) Mapping of focal atrial tachycardia with an uninterpretable activation map after extensive atrial ablation: tricks and tips. Circ Arrhythm Electrophysiol 7:598–604CrossRefPubMed Ju W, Yang B, Chen H, Zhang F, Gu K, Yu J, Li M, Yang G, Cao K, Chen M (2014) Mapping of focal atrial tachycardia with an uninterpretable activation map after extensive atrial ablation: tricks and tips. Circ Arrhythm Electrophysiol 7:598–604CrossRefPubMed
19.
go back to reference Anter E, Tschabrunn CM, Josephson ME (2015) High-resolution mapping of scar-related atrial arrhythmias using smaller electrodes with closer interelectrode spacing. Circ Arrhythm Electrophysiol 8:537–545CrossRefPubMed Anter E, Tschabrunn CM, Josephson ME (2015) High-resolution mapping of scar-related atrial arrhythmias using smaller electrodes with closer interelectrode spacing. Circ Arrhythm Electrophysiol 8:537–545CrossRefPubMed
20.
go back to reference Wo HT, Wen MS, Chang PC, Chou CC, Wang CC, Yeh SJ, Wu D (2014) Successful treatment of macroreentrant atrial tachycardia by radiofrequency ablation targeting channels with continuous activation. Pacing Clin Electrophysiol 37:927–937CrossRefPubMed Wo HT, Wen MS, Chang PC, Chou CC, Wang CC, Yeh SJ, Wu D (2014) Successful treatment of macroreentrant atrial tachycardia by radiofrequency ablation targeting channels with continuous activation. Pacing Clin Electrophysiol 37:927–937CrossRefPubMed
21.
go back to reference Del Carpio Munoz F, Buescher TL, Asirvatham SJ (2010) Three-dimensional mapping of cardiac arrhythmias: what do the colors really mean? Circ Arrhythm Electrophysiol 3:e6–e11CrossRefPubMed Del Carpio Munoz F, Buescher TL, Asirvatham SJ (2010) Three-dimensional mapping of cardiac arrhythmias: what do the colors really mean? Circ Arrhythm Electrophysiol 3:e6–e11CrossRefPubMed
22.
go back to reference Nakagawa H, Ikeda A, Sharma T, Lazzara R, Jackman WM (2012) Rapid high resolution electroanatomical mapping: evaluation of a new system in a canine atrial linear lesion model. Circ Arrhythm Electrophysiol 5:417–424CrossRefPubMed Nakagawa H, Ikeda A, Sharma T, Lazzara R, Jackman WM (2012) Rapid high resolution electroanatomical mapping: evaluation of a new system in a canine atrial linear lesion model. Circ Arrhythm Electrophysiol 5:417–424CrossRefPubMed
23.
go back to reference Anter E, Tschabrunn CM, Contreras-Valdes FM, Li J, Josephson ME (2015) Pulmonary vein isolation using the Rhythmia mapping system: verification of intracardiac signals using the Orion mini-basket catheter. Heart Rhythm 12:1927–1934CrossRefPubMed Anter E, Tschabrunn CM, Contreras-Valdes FM, Li J, Josephson ME (2015) Pulmonary vein isolation using the Rhythmia mapping system: verification of intracardiac signals using the Orion mini-basket catheter. Heart Rhythm 12:1927–1934CrossRefPubMed
24.
go back to reference Luther V, Linton NW, Koa-Wing M, Lim PB, Jamil-Copley S, Qureshi N, Ng FS, Hayat S, Whinnett Z, Davies DW, Peters NS, Kanagaratnam P (2016) A Prospective Study of Ripple Mapping in Atrial Tachycardias: A Novel Approach to Interpreting Activation in Low-Voltage Areas. Circ Arrhythm Electrophysiol 9:e003582CrossRefPubMed Luther V, Linton NW, Koa-Wing M, Lim PB, Jamil-Copley S, Qureshi N, Ng FS, Hayat S, Whinnett Z, Davies DW, Peters NS, Kanagaratnam P (2016) A Prospective Study of Ripple Mapping in Atrial Tachycardias: A Novel Approach to Interpreting Activation in Low-Voltage Areas. Circ Arrhythm Electrophysiol 9:e003582CrossRefPubMed
25.
go back to reference Coffey JO, d’Avila A, Dukkipati S, Danik SB, Gangireddy SR, Koruth JS, Miller MA, Sager SJ, Eggert CA, Reddy VY (2013) Catheter ablation of scar-related atypical atrial flutter. Europace 15:414–419CrossRefPubMed Coffey JO, d’Avila A, Dukkipati S, Danik SB, Gangireddy SR, Koruth JS, Miller MA, Sager SJ, Eggert CA, Reddy VY (2013) Catheter ablation of scar-related atypical atrial flutter. Europace 15:414–419CrossRefPubMed
Metadata
Title
“Window Sliding” analysis combined with high-density and rapid electroanatomical mapping: its efficacy and the outcome of catheter ablation of atrial tachycardia
Authors
Kosuke Nakasuka
Koji Miyamoto
Takashi Noda
Tsukasa Kamakura
Mitsuru Wada
Ikutaro Nakajima
Kohei Ishibashi
Yuko Inoue
Hideo Okamura
Satoshi Nagase
Takeshi Aiba
Shiro Kamakura
Wataru Shimizu
Teruo Noguchi
Toshihisa Anzai
Satoshi Yasuda
Nobuyuki Ohte
Kengo Kusano
Publication date
01-08-2017
Publisher
Springer Japan
Published in
Heart and Vessels / Issue 8/2017
Print ISSN: 0910-8327
Electronic ISSN: 1615-2573
DOI
https://doi.org/10.1007/s00380-017-0959-6

Other articles of this Issue 8/2017

Heart and Vessels 8/2017 Go to the issue