Standard cardiopulmonary resuscitation versus active compression-decompression cardiopulmonary resuscitation with augmentation of negative intrathoracic pressure for out-of-hospital cardiac arrest: a randomised trial

被引:203
作者
Aufderheide, Tom P. [1 ]
Frascone, Ralph J. [2 ]
Wayne, Marvin A. [3 ]
Mahoney, Brian D. [4 ]
Swor, Robert A. [5 ]
Domeier, Robert M. [6 ]
Olinger, Michael L. [7 ]
Holcomb, Richard G. [8 ]
Tupper, David E. [9 ,10 ]
Yannopoulos, Demetris [9 ,10 ]
Lurie, Keith G. [4 ,9 ,10 ]
机构
[1] Med Coll Wisconsin, Dept Emergency Med, Milwaukee, WI 53226 USA
[2] Reg Hosp, Dept Emergency Med, St Paul, MN USA
[3] St Joseph Med Ctr, Dept Emergency Med, Whatcom Cty Emergency Med Serv, Bellingham, WA USA
[4] Hennepin Cty Med Ctr, Dept Emergency Med, Minneapolis, MN 55415 USA
[5] William Beaumont Hosp, Dept Emergency Med, Royal Oak, MI 48072 USA
[6] St Joseph Mercy Hosp, Dept Emergency Med, Ann Arbor, MI 48104 USA
[7] Indiana Univ Sch Med, Dept Emergency Med, Indianapolis, IN USA
[8] Quintiles Consulting, Rockville, MD USA
[9] Univ Minnesota, Med Ctr, Div Cardiovasc, Dept Neurol, Minneapolis, MN 55455 USA
[10] Univ Minnesota, Med Ctr, Div Cardiovasc, Dept Med, Minneapolis, MN 55455 USA
基金
美国国家卫生研究院;
关键词
IMPEDANCE THRESHOLD DEVICE; CHEST-WALL DECOMPRESSION; INSPIRATORY IMPEDANCE; PORCINE MODEL; VALVE; INSTRUCTOR; SURVIVAL; STUDENT; CPR;
D O I
10.1016/S0140-6736(10)62103-4
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Background Active compression-decompression cardiopulmonary resuscitation (CPR) with decreased intrathoracic pressure in the decompression phase can lead to improved haemodynamics compared with standard CPR. We aimed to assess effectiveness and safety of this intervention on survival with favourable neurological function after out-of-hospital cardiac arrest. Methods In our randomised trial of 46 emergency medical service agencies (serving 2.3 million people) in urban, suburban, and rural areas of the USA, we assessed outcomes for patients with out-of-hospital cardiac arrest according to Utstein guidelines. We provisionally enrolled patients to receive standard CPR or active compression-decompression CPR with augmented negative intrathoracic pressure (via an impedance-threshold device) with a computer-generated block randomisation weekly schedule in a one-to-one ratio. Adults (presumed age or age a:18 years) who had a nontraumatic arrest of presumed cardiac cause and met initial and final selection criteria received designated CPR and were included in the final analyses. The primary endpoint was survival to hospital discharge with favourable neurological function (modified Rankin scale score of <= 3). All investigators apart from initial rescuers were masked to treatment group assignment. This trial is registered with ClinicalTrials.gov, number NCT00189423. Findings 2470 provisionally enrolled patients were randomly allocated to treatment groups. 813 (68%) of 1201 patients assigned to the standard CPR group (controls) and 840 (66%) of 1269 assigned to intervention CPR received designated CPR and were included in the final analyses. 47 (6%) of 813 controls survived to hospital discharge with favourable neurological function compared with 75 (9%) of 840 patients in the intervention group (odds ratio 1.58, 95% CI 1.07-2.36; p=0.019]. 74 (9%) of 840 patients survived to 1 year in the intervention group compared with 48 (6%) of 813 controls (p=0.03), with equivalent cognitive skills, disability ratings, and emotional-psychological statuses in both groups. The overall major adverse event rate did not differ between groups, but more patients had pulmonary oedema in the intervention group (94 [11%] of 840) than did controls (62 [7%] of 813; p=0.015). Interpretation On the basis of our findings showing increased effectiveness and generalisability of the study intervention, active compression-decompression CPR with augmentation of negative intrathoracic pressure should be considered as an alternative to standard CPR to increase long-term survival after cardiac arrest.
引用
收藏
页码:301 / 311
页数:11
相关论文
共 32 条
[11]   Inspiratory impedance threshold valve during CPR [J].
Langhelle, A ;
Stromme, T ;
Sunde, K ;
Wik, L ;
Nicolaysen, G ;
Steen, PA .
RESUSCITATION, 2002, 52 (01) :39-48
[12]   Use of an inspiratory impedance threshold valve during cardiopulmonary resuscitation: a progress report [J].
Lurie, K ;
Voelckel, W ;
Plaisance, P ;
Zielinski, T ;
McKnite, S ;
Kor, D ;
Sugiyama, A ;
Sukhum, P .
RESUSCITATION, 2000, 44 (03) :219-230
[13]   IMPROVING ACTIVE COMPRESSION-DECOMPRESSION CARDIOPULMONARY-RESUSCITATION WITH AN INSPIRATORY IMPEDANCE VALVE [J].
LURIE, KG ;
COFFEEN, P ;
SHULTZ, J ;
MCKNITE, S ;
DETLOFF, B ;
MULLIGAN, K .
CIRCULATION, 1995, 91 (06) :1629-1632
[14]   Recent advances in cardiopulmonary resuscitation [J].
Lurie, KG ;
Lindner, KH .
JOURNAL OF CARDIOVASCULAR ELECTROPHYSIOLOGY, 1997, 8 (05) :584-600
[15]  
McCurry SM, 1999, INT J GERIATR PSYCH, V14, P882, DOI 10.1002/(SICI)1099-1166(199910)14:10<882::AID-GPS42>3.3.CO
[16]  
2-4
[17]   Regional variation in out-of-hospital cardiac arrest incidence and outcome [J].
Nichol, Graham ;
Thomas, Elizabeth ;
Callaway, Clifton W. ;
Hedges, Jerris ;
Powell, Judy L. ;
Aufderheide, Tom P. ;
Rea, Tom ;
Lowe, Robert ;
Brown, Todd ;
Dreyer, John ;
Davis, Dan ;
Idris, Ahamed ;
Stiell, Ian .
JAMA-JOURNAL OF THE AMERICAN MEDICAL ASSOCIATION, 2008, 300 (12) :1423-1431
[18]   MULTIPLE TESTING PROCEDURE FOR CLINICAL-TRIALS [J].
OBRIEN, PC ;
FLEMING, TR .
BIOMETRICS, 1979, 35 (03) :549-556
[19]   Inspiratory impedance during active compression-decompression cardiopulmonary resuscitation - A randomized evaluation in patients in cardiac arrest [J].
Plaisance, P ;
Lurie, KG ;
Payen, D .
CIRCULATION, 2000, 101 (09) :989-994
[20]   Use of an inspiratory impedance threshold device on a facemask and endotracheal tube to reduce intrathoracic pressures during the decompression phase of active compression-decompression cardiopulmonary resuscitation [J].
Plaisance, P ;
Soleil, C ;
Lurie, KG ;
Vicaut, E ;
Ducros, L ;
Payen, D .
CRITICAL CARE MEDICINE, 2005, 33 (05) :990-994