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中华心脏与心律电子杂志 ›› 2022, Vol. 10 ›› Issue (02) : 106 -109. doi: 10.3877/cma.j.issn.2095-6568.2022.02.008

所属专题: 总编推荐

无导线起搏器

无导线起搏器的应用和研究进展
戚莹波1, 郁一波2, 储慧民2,()   
  1. 1. 315211 宁波,宁波大学医学院
    2. 315000 宁波,宁波市第一医院心律失常诊疗中心
  • 收稿日期:2022-05-04 出版日期:2022-06-25
  • 通信作者: 储慧民

Advances in the application and research of leadless pacemakers

Yingbo Qi1, Yibo Yu2, Huimin Chu2,()   

  1. 1. School of Medicine,Ningbo University, Ningbo 315010, China
    2. Arrhythmia Center, Ningbo First Hospital, Ningbo 315010, China
  • Received:2022-05-04 Published:2022-06-25
  • Corresponding author: Huimin Chu
引用本文:

戚莹波, 郁一波, 储慧民. 无导线起搏器的应用和研究进展[J]. 中华心脏与心律电子杂志, 2022, 10(02): 106-109.

Yingbo Qi, Yibo Yu, Huimin Chu. Advances in the application and research of leadless pacemakers[J]. Chinese Journal of Heart and Heart Rhythm(Electronic Edition), 2022, 10(02): 106-109.

传统经静脉植入起搏器在人群中的应用越发广泛,随之是无法避免的并发症,如起搏器囊袋、导线感染等。而无导线起搏器因体积小、经股静脉植入、不留导线,一定程度上减少了并发症的发生。随着技术不断更新,针对不同适应证的无导线起搏器应用均获得了临床进展,新一代无导线起搏系统即将进入临床。本文就无导线起搏器的应用及研究进展做一综述。

表1 无导线起搏器相关临床研究
[1]
胡文瑛, 吴立群. 心血管植入型电子器械围术期抗凝治疗策略进展[J]. 中华心律失常学杂志, 2015, 19(3):238-240.
[2]
Kirkfeldt R E, Johansen J B, Nohr E A, et al. Complications after cardiac implantable electronic device implantations: an analysis of a complete, nationwide cohort in Denmark[J]. Eur Heart J, 2014, 35(18):1186-1194.
[3]
Lloyd M, Reynolds D, Sheldon T, et al. Rate adaptive pacing in an intracardiac pacemaker[J]. Heart Rhythm, 2017, 14(2):200-205.
[4]
Saleem-Talib S, van Driel VJ, Chaldoupi S M, et al. Leadless pacing: Going for the jugular[J]. Pacing Clin Electrophysiol, 2019, 42(4):395-399.
[5]
Kypta A, Blessberger H, Kammler J, et al. Leadless cardiac pacemaker implantation after lead extraction in patients with severe device infection[J]. J Cardiovasc Electrophysiol, 2016, 27(9):1067-1071.
[6]
El-Chami MF, Clementy N, Garweg C, et al. Leadless pacemaker implantation in hemodialysis patients: experience with the micra transcatheter pacemaker[J]. JACC Clin Electrophysiol, 2019, 5(2):162-170.
[7]
Reddy V Y, Exner D V, Cantillon D J, et al. Percutaneous implantation of an entirely intracardiac leadless pacemaker[J]. N Engl J Med, 2015, 373(12):1125-1135.
[8]
Reynolds D, Duray GZ, Omar R, et al. A leadless intracardiac transcatheter pacing system[J]. N Engl J Med, 2016, 374(6):533-541.
[9]
Roberts PR, Clementy N, Al Samadi F, et al. A leadless pacemaker in the real-world setting: The Micra Transcatheter Pacing System Post-Approval Registry[J]. Heart Rhythm, 2017, 14(9):1375-1379.
[10]
Greenspon AJ, Patel JD, Lau E, et al. Trends in permanent pacemaker implantation in the United States from 1993 to 2009: increasing complexity of patients and procedures[J]. J Am Coll Cardiol, 2012, 60(16):1540-1545.
[11]
Lamas GA, Ellenbogen KA. Evidence base for pacemaker mode selection: from physiology to randomized trials[J]. Circulation, 2004, 109(4):443-451.
[12]
Nielsen JC, Andersen HR, Thomsen PE, et al. Heart failure and echocardiographic changes during long-term follow-up of patients with sick sinus syndrome randomized to single-chamber atrial or ventricular pacing[J]. Circulation, 1998, 97(10):987-995.
[13]
Chinitz L, Ritter P, Khelae SK, et al. Accelerometer-based atrioventricular synchronous pacing with a ventricular leadless pacemaker: results from the Micra atrioventricular feasibility studies[J]. Heart Rhythm, 2018, 15(9):1363-1371.
[14]
Steinwender C, Khelae SK, Garweg C, et al. Atrioventricular synchronous pacing using a leadless ventricular pacemaker: results from the MARVEL 2 study[J]. JACC Clin Electrophysiol, 2020, 6(1):94-106.
[15]
Piccini JP, El-Chami M, Wherry K, et al. Contemporaneous comparison of outcomes among patients implanted with a leadless vs transvenous single-chamber ventricular pacemaker[J]. JAMA Cardiol, 2021, 6(10):1187-1195.
[16]
El-Chami MF, Bockstedt L, Longacre C, et al. Leadless vs. transvenous single-chamber ventricular pacing in the Micra CED study: 2-year follow-up[J]. Eur Heart J, 2022, 43(12):1207-1215.
[17]
Martinez-Sande JL, Garcia-Seara J, Gonzalez-Melchor L, et al. Conventional single-chamber pacemakers versus transcatheter pacing systems in a "real world" cohort of patients: a comparative prospective single-center study[J]. Indian Pacing Electrophysiol J, 2021, 21(2):89-94.
[18]
Pagan E, Gabriels J, Khodak A, et al. Safety of leadless pacemaker implantation in the very elderly[J]. Heart Rhythm, 2020, 17(12):2023-2028.
[19]
金星星, 关海旺, 马小欣. 无导线心脏起搏器和传统心脏起搏器术后并发症的荟萃分析[J]. 心电与循环, 2020, 39(3):236-241.
[20]
Lakkireddy D, Knops R, Atwater B, et al. A worldwide experience of the management of battery failures and chronic device retrieval of the Nanostim leadless pacemaker[J]. Heart Rhythm, 2017, 14(12):1756-1763.
[21]
Ng JB, Chua K, Teo WS. Simultaneous leadless pacemaker and subcutaneous implantable cardioverter-defibrillator implantation-When vascular options have run out[J]. J Arrhythm, 2019, 35(1):136-138.
[22]
Auricchio A, Delnoy PP, Butter C, et al. 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]. Europace, 2014, 16(5):681-688.
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