参考文献/References:
[1] Reynolds D,Duray GZ,Omar R,et al. A leadless intracardiac transcatheter pacing system[J]. N Engl J Med,2016,374(6):533-541.
[2] El-Chami MF,Al-Samadi F,Clementy N,et al. Updated performance of the Micra transcatheter pacemaker in the real-world setting:A comparison to the investigational study and a transvenous historical control[J]. Heart Rhythm,2018,15(12):1800-1807.
[3] Glikson M,Nielsen JC,Kronborg MB,et al. 2021 ESC Guidelines on cardiac pacing and cardiac resynchronization therapy[J]. Eur Heart J,2021,42(35):3427-3520.
[4] 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.
[5] Arps K,Piccini JP,Yapejian R,et al. Optimizing mechanically sensed atrial tracking in patients with atrioventricular-synchronous leadless pacemakers:a single-center experience[J]. Heart Rhythm O2,2021,2(5):455-462.
[6] Briongos-Figuero S,Estevez-Paniagua A,Sanchez Hernandez A,et al. Optimizing atrial sensing parameters in leadless pacemakers:Atrioventricular synchrony achievement in the real world[J]. Heart Rhythm,2022,19(12):2011-2018.
[7] Chinitz LA,El-Chami MF,Sagi V,et al. Ambulatory atrioventricular synchronous pacing over time using a leadless ventricular pacemaker:Primary results from the AccelAV study[J]. Heart Rhythm,2023,20(1):46-54.
[8] Garweg C,Piccini JP,Epstein LM,et al. Correlation between AV synchrony and device collected AM-VP sequence counter in atrioventricular synchronous leadless pacemakers:a real-world assessment[J]. J Cardiovasc Electrophysiol,2023,34(1):197-206.
[9] Neugebauer F,Noti F,van Gool S,et al. Leadless atrioventricular synchronous pacing in an outpatient setting:Early lessons learned on factors affecting atrioventricular synchrony[J]. Heart Rhythm,2022,19(5):748-756.
[10] Garweg C,Chinitz JS,Marijon E,et al. A leadless ventricular pacemaker providing atrioventricular synchronous pacing in the real-world setting:12-Month results from the Micra AV post-approval registry[J]. Heart Rhythm,2024,21(10):1939-1947.
[11] Boersma LV,El-Chami M,Steinwender C,et al. Practical considerations,indications,and future perspectives for leadless and extravascular cardiac implantable electronic devices:a position paper by EHRA/HRS/LAHRS/APHRS[J]. Europace,2022,24(10):1691-1708.
[12] Garweg C,Breitenstein A,Clementy N,et al. Strategies to improve atrioventricular synchrony in patients with a Micra AV leadless pacemaker[J]. Europace,2024,26(3):1-10.
[13] Garweg C,Khelae SK,Steinwender C,et al. Predictors of atrial mechanical sensing and atrioventricular synchrony with a leadless ventricular pacemaker: Results from the MARVEL 2 Study[J]. Heart Rhythm,2020,17(12):2037-2045.
[14] Pujol-Lopez M,Garcia-Ribas C,Doltra A,et al. Pulsed Doppler A-wave as an aid in patient selection for atrioventricular synchrony through a leadless ventricular pacemaker[J]. J Interv Card Electrophysiol,2023,66(2):261-263.
[15] Lenormand T,Abou Khalil K,Bodin A,et al. Comparison of first- and second-generation leadless pacemakers in patients with sinus rhythm and complete atrioventricular block[J]. J Cardiovasc Electrophysiol,2023,34(8):1730-1737.
[16] Lee XW,Mahmoodi E,Haqqani HM,et al. AV conduction mode switch in a leadless pacemaker potentially contributing to ventricular fibrillation[J]. HeartRhythm Case Rep,2024,10(4):255-258.
相似文献/References:
[1]马娟 范洁.无导线起搏器与传统起搏器并发症比较[J].心血管病学进展,2022,(9):819.[doi:10.16806/j.cnki.issn.1004-3934.2022.09.013]
MA Juan,FAN Jie.Comparison of Complications Between Leadless Cardiac Pacemaker and Traditional Pacemaker[J].Advances in Cardiovascular Diseases,2022,(11):819.[doi:10.16806/j.cnki.issn.1004-3934.2022.09.013]
[2]牟秦娇 张玥 王楠.无导线起搏器在特殊人群中植入的研究进展[J].心血管病学进展,2023,(8):694.[doi:10.16806/j.cnki.issn.1004-3934.2023.08.006]
MOU QinjiaoZHANG YueWANG Nan.Analysis of Implantation of Leadless Pacemakers in Special Populations[J].Advances in Cardiovascular Diseases,2023,(11):694.[doi:10.16806/j.cnki.issn.1004-3934.2023.08.006]
[3]刘晨 牛国栋 郭涛 付明鹏 乔宇 郭雨龙.无导线起搏器单中心临床应用研究[J].心血管病学进展,2025,(1):93.[doi:10.16806/j.cnki.issn.1004-3934.2025.01.019]
LIU Chen,NIU Guodong,GUO Tao,et al.Clinical Application of Leadless Pacemakers in Single Center[J].Advances in Cardiovascular Diseases,2025,(11):93.[doi:10.16806/j.cnki.issn.1004-3934.2025.01.019]
[4]张能 邢强 汤宝鹏.无导线起搏器植入术后阈值变化的研究进展[J].心血管病学进展,2025,(2):97.[doi:10.16806/j.cnki.issn.1004-3934.2025.02.001]
ZHANG Neng,XING Qiang,TANG Baopeng.Threshold Changes after Leadless Pacemaker Implantation[J].Advances in Cardiovascular Diseases,2025,(11):97.[doi:10.16806/j.cnki.issn.1004-3934.2025.02.001]
[5]王晓芳 魏飞宇 范洁.无导线起搏器植入右心室不同部位的研究[J].心血管病学进展,2025,(4):298.[doi:10.16806/j.cnki.issn.1004-3934.2025.04.003]
WANG Xiaofang,WEI Feiyu,FAN Jie.Study on The Implantation of L eadless P acemaker in Different Parts of R ight Ventricle[J].Advances in Cardiovascular Diseases,2025,(11):298.[doi:10.16806/j.cnki.issn.1004-3934.2025.04.003]
[6]张昕 刘兴斌.无导线起搏器相关并发症研究进展[J].心血管病学进展,2025,(6):481.[doi:10.16806/j.cnki.issn.1004-3934.2025.06.001]
ZHANG Xin,LIU Xingbin.Leadless Pacemaker-Related Complications[J].Advances in Cardiovascular Diseases,2025,(11):481.[doi:10.16806/j.cnki.issn.1004-3934.2025.06.001]