登录 | 注册
心脏骤停复苏后急诊冠脉介入时机及血流动力学管理
Timing of emergency coronary intervention in patients with cardiac arrest causedby acute coronary syndrome and hemodynamic management
ES评分 0 浏览量:578 下载量:0
天津医科大学总医院心血管内科 天津 ;
[1] Girotra S, Chan P S, Bradley S M. Post-resuscitation care following out-of-hospital and in-hospital cardiac arrest[J]. Heart, 2015, 101(24): 1943–1949.
[2] Zheng J, Lv C, Zheng W, et al. Incidence, process of care, and outcomes of out-of-hospital cardiac arrest in China: a prospective study of the BASIC-OHCA registry[J]. The Lancet Public Health, 2023, 8(12): e923–e932.
[3] Chen N, Callaway C W, Guyette F X, et al. Arrest etiology among patients resuscitated from cardiac arrest[J]. Resuscitation, 2018, 130: 33–40.
[4] Zheng J, Lv C, Zheng W, et al. Incidence, process of care, and outcomes of out-of-hospital cardiac arrest in China: a prospective study of the BASIC-OHCA registry[J]. The Lancet Public Health, 2023, 8(12): e923–e932.
[5] 心脏骤停复苏后血流动力学管理的专家共识 - 中华急诊医学杂志[J]. Chinese Journal of Emergency Medicine, 2019, 28(11): 1343–1349.
[6] Sinning C, Ahrens I, Cariou A, et al. The cardiac arrest centre for the treatment of sudden cardiac arrest due to presumed cardiac cause – aims, function and structure: Position paper of the Association for Acute CardioVascular Care of the European Society of Cardiology (AVCV), European Association of Percutaneous Coronary Interventions (EAPCI), European Heart Rhythm Association (EHRA), European Resuscitation Council (ERC), European Society for Emergency Medicine (EUSEM) and European Society of Intensive Care Medicine (ESICM)[J]. European Heart Journal. Acute Cardiovascular Care, 2020, 9(4_suppl): S193–S202.
[7] Schober A, Sterz F, Laggner A N, et al. Admission of out-of-hospital cardiac arrest victims to a high volume cardiac arrest center is linked to improved outcome[J]. Resuscitation, 2016, 106: 42–48.
[8] Sinning C, Ahrens I, Cariou A, et al. The cardiac arrest centre for the treatment of sudden cardiac arrest due to presumed cardiac cause – aims, function and structure: Position paper of the Association for Acute CardioVascular Care of the European Society of Cardiology (AVCV), European Association of Percutaneous Coronary Interventions (EAPCI), European Heart Rhythm Association (EHRA), European Resuscitation Council (ERC), European Society for Emergency Medicine (EUSEM) and European Society of Intensive Care Medicine (ESICM)[J]. European Heart Journal. Acute Cardiovascular Care, 2020, 9(4_suppl): S193–S202.
[9] Nolan J P, Sandroni C, Böttiger B W, et al. European Resuscitation Council and European Society of Intensive Care Medicine guidelines 2021: post-resuscitation care[J]. Intensive Care Medicine, 2021, 47(4): 369–421.
[10] 中华医学会急诊医学分会, 中国医药教育协会急诊专业委员会. 中国心脏骤停中心建设专家共识[J]. 中华急诊医学杂志, 2023, 32(10): 1296–1303.
[11] Association C S of C of C M, Cardiology E B of C J Of. 2019 Chinese Society of Cardiology (CSC) guidelines for the diagnosis and management of patients with ST-segment elevation myocardial infarction[J]. Chinese Journal of Cardiology, 2019, 47(10): 766–783.
[12] Byrne R A, Rossello X, Coughlan J J, et al. 2023 ESC Guidelines for the management of acute coronary syndromes[J]. European Heart Journal, 2023, 44(38): 3720–3826.
[13] Ibanez B, James S, Agewall S, et al. 2017 ESC Guidelines for the management of acute myocardial infarction in patients presenting with ST-segment elevation[J]. European Heart Journal, 2018, 39(2): 119–177.
[14] Faha J S L. 2021 ACC/AHA/SCAI Guideline for Coronary Artery Revascularization[J]. 2021.
[15] Guy A, Golby R, Stenstrom R. Coronary angiography after cardiac arrest without ST-segment elevation (COACT)[J]. CJEM, 2020, 22(2): 163–164.
[16] Nakaya Y, Akamatsu M, Ogimoto A, et al. Early cardiac rehabilitation for acute decompensated heart failure safely improves physical function (PEARL study): a randomized controlled trial[J]. European Journal of Physical and Rehabilitation Medicine, 2021, 57(6): 985–993.
[17] Hauw-Berlemont C, Lamhaut L, Diehl J-L, et al. Emergency vs Delayed Coronary Angiogram in Survivors of Out-of-Hospital Cardiac Arrest[J]. JAMA Cardiology, 2022, 7(7): 700.
[18] Desch S, Freund A, Akin I, et al. Angiography after Out-of-Hospital Cardiac Arrest without ST-Segment Elevation[J]. New England Journal of Medicine, 2021, 385(27): 2544–2553.
[19] Hauw-Berlemont C, Lamhaut L, Diehl J-L, et al. Emergency vs Delayed Coronary Angiogram in Survivors of Out-of-Hospital Cardiac Arrest[J]. JAMA Cardiology, 2022, 7(7): 700.
[20] Alves N, Mota M, Cunha M, et al. Impact of emergent coronary angiography after out-of-the-hospital cardiac arrest without ST-segment elevation – A systematic review and meta-analysis[J]. International Journal of Cardiology, 2022, 364: 1–8.
[21] Ameloot K, De Deyne C, Eertmans W, et al. Early goal-directed haemodynamic optimization of cerebral oxygenation in comatose survivors after cardiac arrest: the Neuroprotect post-cardiac arrest trial[J]. European Heart Journal, 2019, 40(22): 1804–1814.
[22] Adler C, Reuter H, Seck C, et al. Fluid therapy and acute kidney injury in cardiogenic shock after cardiac arrest[J]. Resuscitation, 2013, 84(2): 194–199.
[23] Nolan J P, Sandroni C, Böttiger B W, et al. European Resuscitation Council and European Society of Intensive Care Medicine guidelines 2021: post-resuscitation care[J]. Intensive Care Medicine, 2021, 47(4): 369–421.
[24] Gamper G, Havel C, Arrich J, et al. Vasopressors for hypotensive shock[J]. Cochrane Database of Systematic Reviews, 2016, 2(2): CD003709.
[25] Levy B, Clere-Jehl R, Legras A, et al. Epinephrine Versus Norepinephrine for Cardiogenic Shock After Acute Myocardial Infarction[J]. Journal of the American College of Cardiology, 2018, 72(2): 173–182.
[26] Jakkula P, Pettilä V, Skrifvars M B, et al. Targeting low-normal or high-normal mean arterial pressure after cardiac arrest and resuscitation: a randomised pilot trial[J]. Intensive Care Medicine, 2018, 44(12): 2091–2101.
[27] Pellis T, Sanfilippo F, Ristagno G. The optimal hemodynamics management of post-cardiac arrest shock[J]. Best Practice & Research Clinical Anaesthesiology, 2015, 29(4): 485–495.
[28] Dragancea I, Rundgren M, Englund E, et al. The influence of induced hypothermia and delayed prognostication on the mode of death after cardiac arrest[J]. Resuscitation, 2013, 84(3): 337–342.
[29] Atkinson T M, Ohman E M, O’Neill W W, et al. A Practical Approach to Mechanical Circulatory Support in Patients Undergoing Percutaneous Coronary Intervention[J]. JACC: Cardiovascular Interventions, 2016, 9(9): 871–883.
[30] Manzo-Silberman S, Fichet J, Mathonnet A, et al. Percutaneous left ventricular assistance in post cardiac arrest shock: Comparison of intra aortic blood pump and IMPELLA Recover LP2.5[J]. Resuscitation, 2013, 84(5): 609–615.
[31] Thiele H, Zeymer U, Neumann F-J, et al. Intraaortic Balloon Support for Myocardial Infarction with Cardiogenic Shock[J]. New England Journal of Medicine, 2012, 367(14): 1287–1296.
[32] O’Neill W W, Kleiman N S, Moses J, et al. A Prospective, Randomized Clinical Trial of Hemodynamic Support With Impella 2.5 Versus Intra-Aortic Balloon Pump in Patients Undergoing High-Risk Percutaneous Coronary Intervention[J]. Circulation, 2012, 126(14): 1717–1727.
[33] Rao P, Khalpey Z, Smith R, et al. Venoarterial Extracorporeal Membrane Oxygenation for Cardiogenic Shock and Cardiac Arrest[J]. Circulation: Heart Failure, 2018, 11(9): e004905.
裴崇哲*. 心脏骤停复苏后急诊冠脉介入时机及血流动力学管理 [J]. 国际临床研究杂志. 2024; 8; (1). 17 - 21.
Copyright © 2023 CSCIED科技核心评价数据库 版权所有 京ICP备
Email:info@cscied.com网址:www.cscied.com
互联网出版许可证违法和不良信息举报中心举报邮箱:jubao@cscied.com