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中华危重症医学杂志(电子版) ›› 2018, Vol. 11 ›› Issue (02) : 139 -142. doi: 10.3877/cma.j.issn.1674-6880.2018.02.015

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特定血清标志物在机械通气脱机拔管中的预测价值
张斌1, 曹薇1, 吴秀1, 王胜昱1,()   
  1. 1. 710077 西安,西安医学院第一附属医院呼吸与危重症医学科
  • 收稿日期:2017-07-01 出版日期:2018-04-01
  • 通信作者: 王胜昱
  • 基金资助:
    陕西省呼吸病预防与诊治工程研究中心开放基金项目(2016HXKF09)
  • Received:2017-07-01 Published:2018-04-01
引用本文:

张斌, 曹薇, 吴秀, 王胜昱. 特定血清标志物在机械通气脱机拔管中的预测价值[J]. 中华危重症医学杂志(电子版), 2018, 11(02): 139-142.

[1]
Pettenuzzo T, Fan E. 2016 year in review: mechanical ventilation[J]. Respir Care, 2017, 62 (5): 629-635.
[2]
Coplin WM, Pierson DJ, Cooley KD, et al. Implicati-ons of extubation delay in brain-injured patients meeting standard weaning criteria[J]. Am J Respir Crit Care Med, 2000, 161 (5): 1530-1536.
[3]
杨娜,李维琴. 慢重症新诊断标准及治疗进展[J/CD]. 中华危重症医学杂志(电子版),2016,9(3):197-200.
[4]
Jong AD, Chanques G, Jaber S. Mechanical ventilat-ion in obese ICU patients: from intubation to extubation[J]. Crit Care, 2017, 21 (1): 63.
[5]
Lima EJ. Respiratory rate as a predictor of weaning f-ailure from mechanical ventilation[J]. Braz J Anesthesiol, 2013, 63 (1): 1-12.
[6]
Li ZB, Gao XJ, Wang DH, et al. A multicenter study of respiratory multiple index in predicting weaning from mechanical ventilation in patients with acute exacerbation of chronic obstructive pulmonary disease[J]. Zhonghua Wei Zhong Bing Ji Jiu Yi Xue, 2013, 25 (6): 339-342.
[7]
Delisle S, Francoeur M, Albert M, et al. Preliminary evaluation of a new index to predict the outcome of a spontaneous breathing trial[J]. Respir Care, 2011, 56 (10): 1500-1505.
[8]
Berg KM, Lang GR, Salciccioli JD, et al. The rapid shallow breathing index as a predictor of failure of noninvasive ventilation for patients with acute respiratory failure[J]. Respir Care, 2012, 57 (10): 1548-1554.
[9]
Takaki S, Kadiman SB, Tahir SS, et al. Modified ra-pid shallow breathing index adjusted with anthropometric parameters increases predictive power for extubation failure compared with the unmodified index in postcardiac surgery patients[J]. J Cardiothorac Vasc Anesth, 2015, 29 (1): 64-68.
[10]
Boniatti VM, Boniatti MM, Andrade CF, et al. The modified integrative weaning index as a predictor of extubation failure[J]. Respir Care, 2014, 59 (7): 1042-1047.
[11]
Arcentales A, Caminal P, Diaz I, et al. Classification of patients undergoing weaning from mechanical ventilation using the coherence between heart rate variability and respiratory flow signal[J]. Physiol Meas, 2015, 36 (7): 1439-1452.
[12]
Deab SA, Bellani G. Extubation failure after succ-essful spontaneous breathing trial: prediction is still a challenge![J]. Respir Care, 2014, 59 (2): 301-302.
[13]
Gros A, Holzapfel L, Marque S, et al. Intra-indi-vidual variation of the cuff-leak test as a predictor of post-extubation stridor[J]. Respir Care, 2012, 57 (12): 2026-2031.
[14]
Cottereau G, Dres M, Avenel A, et al. Handgrip s-trength predicts difficult weaning but not extubation failure in mechanically ventilated subjects[J]. Respir Care, 2015, 60 (8): 1097-1104.
[15]
Thille AW, Richard JC, Brochard L. The decision to extubate in the intensive care unit[J]. Am J Respir Crit Care Med, 2013, 187 (12): 1294-1302.
[16]
Kara A, Kizilarslanoglu MC, Bolayir B, et al. Effect of hypophosphatemia on weaning success from mechanical ventilation[J]. Tuberk Toraks, 2015, 63 (2): 102-108.
[17]
Wan YF, Zheng YL, Du YP, et al. Utility of uric acid as a risk marker of extubation success in chronic obstructive pulmonary disease[J]. Clin Lab, 2015, 61 (3-4): 337-344.
[18]
Farghaly S, Galal M, Hasan AA, et al. Brain na-triuretic peptide as a predictor of weaning from mechanical ventilation in patients with respiratory illness[J]. Aust Crit Care, 2015, 28 (3): 116-121.
[19]
Alladina JW, Levy SD, Hibbert KA, et al. Plasma concentrations of soluble suppression of tumorigenicity-2 and interleukin-6 are predictive of successful liberation from mechanical ventilation in patients with the acute respiratory distress syndrome[J]. Crit Care Med, 2016, 44 (9): 1735-1743.
[20]
Geerse DA, Bindels AJ, Kuiper MA, et al. Treatment of hypophosphatemia in the intensive care unit: a review[J]. Crit Care, 2010, 14 (4): R147.
[21]
Sedlacek M, Schoolwerth AC, Remillard BD. Electrol-yte disturbances in the intensive care unit[J]. Semin Dial, 2006, 19 (6): 496-501.
[22]
Baliarsingh S, Sharma N. Serum uric acid level is an indicator of total cholesterol and low density lipoprotein cholesterol in men below 45 years in age but not older males[J]. Clin Lab, 2012, 58 (5-6): 545-550.
[23]
Wan YF, Zheng YL, Niu HY, et al. Uric acid levels in obstructive sleep apnea patients with atrial fibrillation[J]. Arch Med Res, 2014, 45 (2): 132-137.
[24]
Zharikov SI, Swenson ER, Lanaspa M, et al. Could u-ric acid be a modifiable risk factor in subjects with pulmonary hypertension?[J]. Med Hypotheses, 2010, 74 (6): 1069-1074.
[25]
周玥,傅永平. 血浆B型利钠肽在不同左心功能肺心病患者中的临床价值探讨[J/CD]. 中华危重症医学杂志(电子版),2016,9(3):184-186.
[26]
左祥荣,曹权,付煜. 血浆氨基末端脑钠肽前体对老年重症肺部感染患者的预测价值[J/CD]. 中华危重症医学杂志(电子版),2011,4(3):144-149.
[27]
Lai LR, Wang Z, Tong ZH. B-type natriuretic peptide and weaning from mechanical ventilation[J]. Zhonghua Jie He He Hu Xi Za Zhi, 2013, 36 (2): 113-115.
[28]
Cheng L, Jiang L, Wang M, et al. The value of cha-nges in plasma B-type natriuretic peptide before and after spontaneous breathing trial in predicting weaning outcome in mechanically ventilated patients[J]. Zhonghua Nei Ke Za Zhi, 2015, 54 (6): 486-490.
[29]
Mekontso DA, Roche-Campo F, Kouatchet A, et al. Natriuretic peptide-driven fluid management during ventilator weaning: a randomized controlled trial[J]. Am J Respir Crit Care Med, 2012, 186 (12): 1256-1263.
[30]
Schmitz J, Owyang A, Oldham E, et al. IL-33, an i-nterleukin-1-like cytokine that signals via the IL-1 receptor-related protein ST2 and induces T helper type 2-associated cytokines[J]. Immunity, 2005, 23 (5): 479-490.
[31]
Pascual-Figal DA, Manzano-Fernandez S, Boronat M, et al. Soluble ST2, high-sensitivity troponin T- and N-terminal pro-B-type natriuretic peptide: complementary role for risk stratification in acutely decompensated heart failure[J]. Eur J Heart Fail, 2011, 13 (7): 718-725.
[32]
Tajima S, Oshikawa K, Tominaga S, et al. The inc-rease in serum soluble ST2 protein upon acute exacerbation of idiopathic pulmonary fibrosis[J]. Chest, 2003, 124 (4): 1206-1214.
[33]
Reisinger MW, Moss M, Clark BJ, et al. Brief versus full alcohol use disorders identification test in National Heart, Lung, and Blood Institute acute respiratory distress syndrome network clinical trials[J]. Crit Care Med, 2015, 43 (9): e382-e385.
[34]
Jawa RS, Anillo S, Huntoon K, et al. Analytic review: interleukin-6 in surgery, trauma, and critical care: part Ⅰ: basic science[J]. J Intensive Care Med, 2011, 26 (1): 3-12.
[35]
Goldman JL, Sammani S, Kempf C, et al. Pleiotropic effects of interleukin-6 in a "two-hit" murine model of acute respiratory distress syndrome[J]. Pulm Circ, 2014, 4 (2): 280-288.
[36]
Laffey JG, Pham T, Bellani G. Continued under-recognition of acute respiratory distress syndrome after the Berlin definition: what is the solution?[J]. Curr Opin Crit Care, 2017, 23 (1): 10-17.
[37]
Jabaudon M, Perbet S, Pereira B, et al. Plasma levels of sRAGE, loss of aeration and weaning failure in ICU patients: a prospective observational multicenter study[J]. PLoS One, 2013, 8 (5): e64083.
[38]
Chiumello D. Bedside ultrasound assessment of positive end expiratory pressure-induced lung recruitment[J]. Am J Respir Crit Care Med, 2012, 185 (4): 457.
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