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中华卫生应急电子杂志 ›› 2020, Vol. 06 ›› Issue (02) : 109 -111. doi: 10.3877/cma.j.issn.2095-9133.2020.02.010

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综述

重症患者的液体治疗:藏器待时而动
李文哲1, 肖雅文1, 于湘友1,()   
  1. 1. 830054 新疆乌鲁木齐,新疆医科大学第一附属医院重症医学科
  • 收稿日期:2019-12-17 出版日期:2020-04-18
  • 通信作者: 于湘友

Liquid therapy for severe patients: ready for emergency use

Wenzhe Li1, Yawen Xiao1, Xiangyou Yu1()   

  • Received:2019-12-17 Published:2020-04-18
  • Corresponding author: Xiangyou Yu
引用本文:

李文哲, 肖雅文, 于湘友. 重症患者的液体治疗:藏器待时而动[J]. 中华卫生应急电子杂志, 2020, 06(02): 109-111.

Wenzhe Li, Yawen Xiao, Xiangyou Yu. Liquid therapy for severe patients: ready for emergency use[J]. Chinese Journal of Hygiene Rescue(Electronic Edition), 2020, 06(02): 109-111.

[1]
Barsoum N,Kleeman C.Now and then, the history of parenteral fluid administration[J].Am J Nephrol,2002,22(2-3):284-289.
[2]
Dychter SS,Gold DA,Carson D,et al. Intravenous therapy:a review of complications and economic considerations of peripheral access[J].J Infus Nurs,2012,35(2):84-91.
[3]
Rhodes A,Evans LE,Alhazzani W,et al.Surviving Sepsis Campaign:International Guidelines for Management of Sepsis and Septic Shock:2016[J].Crit Care Med,2017,45(3):486-552.
[4]
Vincent J-L,Finfer SR,Vincent J-L,et al.Circulatory Shock[J].N Engl J Med,2013,369(18):1726-1734.
[5]
Seymour CW,Gesten F,Prescott HC,et al.Time to Treatment and Mortality during Mandated Emergency Care for Sepsis[J].N Engl J Med,2017,376(23):2235-2244.
[6]
Chappell D,Jacob M.Role of the glycocalyx in fluid management: Small things matter[J].Best Pract Res Clin Anaesthesiol,2014,28(3):227-234.
[7]
Kozek-Langenecker SA,Ahmed AB,Afshari A,et al. Management of severe perioperative bleeding:guidelines from the European Society of Anaesthesiology:First update 2016[J].Eur J Anaesthesiol,2017,34(6):332-395.
[8]
Ince C.Hemodynamic coherence and the rationale for monitoring the microcirculation[J].Crit Care,2015,19:S8.
[9]
Sen A,Keener CM,Sileanu FE,et al.Chloride content of fluids used for large-volume resuscitation is associated with reduced survival[J].Crit Care Med,2017,45(2):e146-e153.
[10]
Sakr Y,Rubatto Birri PN,Kotfis K,et al.Higher fluid balance increases the risk of death from sepsis:results from a large international audit[J].Crit Care Med,2017,45(3):386-394.
[11]
Tsui AK,Dattani ND,Marsden PA,et al.Reassessing the risk of hemodilutional anemia:some new pieces to an old puzzle[J].Can J Anaesth,2010,57(8):779-791.
[12]
Bentzer P,Griesdale DE,Boyd J,et al.Will this hemodynamically unstable patient respond to a bolus of intravenous fluids?[J].JAMA,2016,316(12):1298-1309.
[13]
Boulain T,Cecconi M.Can one size fit all? The fine line between fluid overload and hypovolemia[J].Intensive Care Med,2015,41(3):544-546.
[14]
Weil MH,Henning RJ.New concepts in the diagnosis and fluid treatment of circulatory shock. Thirteenth annual Becton,Dickinson and Company Oscar Schwidetsky Memorial Lecture[J].Anesth Analg,1979,58(2):124-132.
[15]
Michard F,Teboul JL. Predicting fluid responsiveness in ICU patients:a critical analysis of the evidence[J].Chest,2002,121(6):2000-2008.
[16]
Vincent JL,Weil MH. Fluid challenge revisited[J].Crit Care Med,2006,34(5):1333-1337.
[17]
Cecconi M,Hofer C,Teboul JL,et al.Fluid challenges in intensive care:the FENICE study: A global inception cohort study[J].Intensive Care Med,2015,41(9):1529-1537.
[18]
Heenen S,De Backer D,Vincent JL.How can the response to volume expansion in patients with spontaneous respiratory movements be predicted?[J].Crit Care,2006,10(4):R102.
[19]
Eskesen TG,Wetterslev M,Perner A.Systematic review including re-analyses of 1148 individual data sets of central venous pressure as a predictor of fluid responsiveness[J].Intensive Care Med,2016,42(3):324-332.
[20]
Kearns MJ,Walley KR. Tamponade:hemodynamic and echocardiographic diagnosis[J].Chest,2018,153(5):1266-1275.
[21]
Cheatham ML.Abdominal compartment syndrome:pathophysiology and definitions[J].Scand J Trauma Resusc Emerg Med,2009,17:10.
[22]
Rudolph AM,Yuan S.Response of the pulmonary vasculature to hypoxia and H+ ion concentration changes[J].J Clin Invest,1966,45(3):399-411.
[23]
De Backer D,Vincent JL.Should we measure the central venous pressure to guide fluid management?Ten answers to 10 questions[J].Crit Care,2018,22(1):43.
[24]
Jozwiak M,Silva S,Persichini R,et al.Extravascular lung water is an independent prognostic factor in patients with acute respiratory distress syndrome[J].Crit Care Med,2013,41(2):472-480.
[25]
Wu Y,Zhou S,Zhou Z,et al.A 10-second fluid challenge guided by transthoracic echocardiography can predict fluid responsiveness[J].Crit Care,2014,18(3):R108.
[26]
Muller L,Toumi M,Bousquet PJ,et al.An increase in aortic blood flow after an infusion of 100 ml colloid over 1 minute can predict fluid responsiveness:the mini-fluid challenge study[J].Anesthesiology,2011,115(3):541-547.
[27]
Aya HD,Rhodes A,Chis Ster I,et al.Hemodynamic Effect of Different Doses of Fluids for a Fluid Challenge:A Quasi-Randomized Controlled Study[J].Crit Care Med,2017,45(2):e161-e168.
[28]
Toscani L,Aya HD,Antonakaki D,et al.What is the impact of the fluid challenge technique on diagnosis of fluid responsiveness? A systematic review and meta-analysis[J].Crit Care,2017,21(1):207.
[29]
王小亭,刘大为,于凯江,等.中国重症超声专家共识[J].临床荟萃,2017,32(5):369-383.
[30]
Mercado P,Maizel J,Beyls C,et al.Transthoracic echocardiography:an accurate and precise method for estimating cardiac output in the critically ill patient[J].Crit Care,2017,21(1):136.
[31]
Depret F,Jozwiak M,Teboul JL,et al.Esophageal doppler can predict fluid responsiveness through end-expiratory and end-inspiratory occlusion tests[J].Crit Care Med,2019,47(2):e96-e102.
[32]
Jozwiak M,Mercado P,Teboul JL,et al.What is the lowest change in cardiac output that transthoracic echocardiography can detect?[J].Crit Care,2019,23(1):116.
[33]
Monnet X,Teboul JL.Assessment of fluid responsiveness: recent advances[J].Curr Opin Crit Care,2018,24(3):190-195.
[34]
Monnet X,Teboul JL.Passive leg raising:five rules,not a drop of fluid![J].Crit Care,2015,19(1):18.
[35]
Michard F.Toward Precision Hemodynamic Management[J].Crit Care Med,2017,45(8):1421-1423.
[36]
Yang X,Du B.Does pulse pressure variation predict fluid responsiveness in critically ill patients? A systematic review and meta-analysis[J].Crit Care,2014,18(6):650.
[37]
Myatra SN,Prabu NR,Divatia JV,et al.The Changes in Pulse Pressure Variation or Stroke Volume Variation After a "Tidal Volume Challenge" Reliably Predict Fluid Responsiveness During Low Tidal Volume Ventilation[J].Crit Care Med,2017,45(3):415-421.
[38]
Long E,Oakley E,Duke T,et al.Does respiratory variation in inferior vena cava diameter predict fluid responsiveness:a systematic review and meta-analysis[J].Shock,2017,47(5):550-559.
[39]
Monnet X,Osman D,Ridel C,et al.Predicting volume responsiveness by using the end-expiratory occlusion in mechanically ventilated intensive care unit patients[J].Crit Care Med,2009,37(3):951-956.
[40]
Jozwiak M,Depret F,Teboul JL,et al.Predicting Fluid Responsiveness in Critically Ill Patients by Using Combined End-Expiratory and End-Inspiratory Occlusions With Echocardiography[J].Crit Care Med,2017,45(11):e1131-e1138.
[41]
Biais M,Lanchon R,Sesay M,et al.Changes in stroke volume induced by lung recruitment maneuver predict fluid responsiveness in mechanically ventilated patients in the operating room[J].Anesthesiology,2017,126(2):260-267.
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