Leadless cardiac pacing systems: current status and future prospects

被引:21
作者
Beurskens, Niek E. G. [1 ]
Breeman, Karel T. N. [1 ]
Dasselaar, Kosse J. [1 ]
Meijer, A. Chris [1 ]
Quast, Anne-Floor B. E. [1 ]
Tjong, Fleur V. Y. [1 ]
Knops, Reinoud E. [1 ]
机构
[1] Univ Amsterdam, Ctr Heart, Dept Clin & Expt Cardiol, Amsterdam Cardiovasc Sci,Amsterdam UMC, Amsterdam, Netherlands
关键词
Leadless pacing; Bradyarrhythmias; pacemaker; Nanostim Leadless Cardiac Pacemaker; Micra Transcatheter Pacing System; extracardiac pacing; CHRONIC PERFORMANCE; PACEMAKER; RESYNCHRONIZATION; COMPLICATIONS; IMPLANTATION; FEASIBILITY; BATTERYLESS; EXTRACTION; EXPERIENCE; MANAGEMENT;
D O I
10.1080/17434440.2019.1685870
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Introduction: Permanent transvenous pacemaker therapy is an essential management option in patients with symptomatic bradyarrhythmias, but harbors a concomitant risk of serious complications. As most complications are lead- or pocket-related, intracardiac leadless pacemaker therapy has the potential to positively impact patient outcome. Since the first leadless pacemaker implant in 2012, many studies have been conducted to evaluate the effectiveness, safety, and applicability of this novel pacing approach. Areas covered: This review will cover the current status of leadless pacemaker technology. Available safety and efficacy outcomes, current area of indication, and end-of-life management will be evaluated. Furthermore, future perspectives for clinical practice and new pacing modalities are discussed. Expert opinion: The first-generation leadless pacemakers are a promising innovation that provide safe and efficient single-chamber pacing therapy without the use of transvenous pacemaker leads. Yet, broad implementation of this technology is hampered by limitations of the current leadless devices, such as end-of-life management and its single-chamber pacing indication. Further innovations such as leadless dual-chamber pacing therapy, leadless cardiac synchronization therapy, energy-harvesting leadless pacemakers, communicating leadless pacemakers with subcutaneous implantable cardiac defibrillators, and minimally invasive completely extracardiac pacemakers are currently being developed that have the potential to become major game changers in pacing therapy.
引用
收藏
页码:923 / 930
页数:8
相关论文
共 55 条
[1]   Techniques for successful early retrieval of the Micra transcatheter pacing system: A worldwide experience [J].
Afzal, Muhammad R. ;
Daoud, Emile G. ;
Cunnane, Ryan ;
Mulpuru, Shiva K. ;
Koay, Alan ;
Hussain, Azlan ;
Omar, Razali ;
Wei, Koh Kok ;
Amin, Anish ;
Kidwell, Gregory ;
Patel, Nirav ;
Love, Charles ;
Lloyd, Michael ;
Sterlinski, Maciej ;
Goldbarg, Seth ;
Leal, Miguel A. ;
Gabriels, James ;
Patel, Apoor ;
Jadonath, Ram ;
Grubman, Eric ;
Crossley, George ;
Pepper, Chris ;
Lakkireddy, Dhanunjaya ;
Okabe, Toshimasa ;
Hummel, John D. ;
Augostini, Ralph S. .
HEART RHYTHM, 2018, 15 (06) :841-846
[2]   Feasibility, safety, and short-term outcome of leadless ultrasound-based endocardial left ventricular resynchronization in heart failure patients: results of the Wireless Stimulation Endocardially for CRT (WiSE-CRT) study [J].
Auricchio, Angelo ;
Delnoy, Peter-Paul ;
Butter, Christian ;
Brachmann, Johannes ;
Van Erven, Lieselot ;
Spitzer, Stefan ;
Moccetti, Tiziano ;
Seifert, Martin ;
Markou, Thanasie ;
Laszo, Karolyi ;
Regoli, Francois .
EUROPACE, 2014, 16 (05) :681-688
[3]   Leadless Dual-Chamber Pacing A Novel Communication Method for Wireless Pacemaker Synchronization [J].
Bereuter, Lukas ;
Gysin, Mirco ;
Kueffer, Thomas ;
Kucera, Martin ;
Niederhauser, Thomas ;
Fuhrer, Juerg ;
Heinisch, Paul ;
Zurbuchen, Adrian ;
Obrist, Dominik ;
Tanner, Hildegard ;
Haeberlin, Andreas .
JACC-BASIC TO TRANSLATIONAL SCIENCE, 2018, 3 (06) :813-823
[4]   Leadless pacemaker implantation after explantation of infected conventional pacemaker systems: A viable solution? [J].
Beurskens, Niek E. G. ;
Tjong, Fleur V. Y. ;
Dasselaar, Kosse J. ;
Kuijt, Wichert J. ;
Wilde, Arthur A. M. ;
Knops, Reinoud E. .
HEART RHYTHM, 2019, 16 (01) :66-71
[5]   Percutaneous leadless pacemaker implantation in a patient with bilateral venous thoracic outlet syndrome [J].
Beurskens, Niek E. G. ;
Tjong, Fleur V. Y. ;
Knops, Reinoud E. ;
Peters, Ron J. G. .
JOURNAL OF VASCULAR ACCESS, 2019, 20 (01) :105-106
[6]   Successful replacement of the longest worldwide in situ Nanostim leadless cardiac pacemaker for a Micra Transcatheter Pacing System [J].
Beurskens, Niek E. G. ;
Tjong, Fleur V. Y. ;
Quast, Anne-Floor B. E. ;
Knops, Reinoud E. .
JOURNAL OF INTERVENTIONAL CARDIAC ELECTROPHYSIOLOGY, 2018, 51 (02) :161-162
[7]  
Beurskens NEG, 2017, ARRHYTH ELECTROPHYSI, V6, P129, DOI 10.15420/aer.2017:16:1
[8]   Monocenter Investigation Micra® MRI study (MIMICRY): feasibility study of the magnetic resonance imaging compatibility of a leadless pacemaker system [J].
Blessberger, Hermann ;
Kiblboeck, Daniel ;
Reiter, Christian ;
Lambert, Thomas ;
Kellermair, Joerg ;
Schmit, Pierre ;
Fellner, Franz ;
Lichtenauer, Michael ;
Kypta, Alexander ;
Steinwender, Clemens ;
Kammler, Juergen .
EUROPACE, 2019, 21 (01) :137-141
[9]  
Bonner MD, 2014, HEART RHYTHM, V11, pS19
[10]   Trends in the incidence and prevalence of cardiac pacemaker insertions in an ageing population [J].
Bradshaw, Pamela J. ;
Stobie, Paul ;
Knuiman, Matthew W. ;
Briffa, Thomas G. ;
Hobbs, Michael S. T. .
OPEN HEART, 2014, 1 (01)