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自戕性肺损伤的机制和防治研究进展

任志国 朱峰

任志国, 朱峰. 自戕性肺损伤的机制和防治研究进展[J]. 中华烧伤杂志, 2021, 37(8):801-804. DOI: 10.3760/cma.j.cn501120-20200610-00302.
引用本文: 任志国, 朱峰. 自戕性肺损伤的机制和防治研究进展[J]. 中华烧伤杂志, 2021, 37(8):801-804. DOI: 10.3760/cma.j.cn501120-20200610-00302.
Ren ZG,Zhu F.Research advances on the mechanisms and prevention and treatment of patient self-inflicted lung injury[J].Chin J Burns,2021,37(8):801-804.DOI: 10.3760/cma.j.cn501120-20200610-00302.
Citation: Ren ZG,Zhu F.Research advances on the mechanisms and prevention and treatment of patient self-inflicted lung injury[J].Chin J Burns,2021,37(8):801-804.DOI: 10.3760/cma.j.cn501120-20200610-00302.

自戕性肺损伤的机制和防治研究进展

doi: 10.3760/cma.j.cn501120-20200610-00302
基金项目: 

国家重点研发计划“干细胞及转化研究”重点专项 2019YFA0110601

长海医院教学研究与改革重点项目 CHJG2019002

详细信息
    通讯作者:

    朱峰,Email:alexzhujunchi@hotmail.com

Research advances on the mechanisms and prevention and treatment of patient self-inflicted lung injury

Funds: 

National Key Research and Development Program "Stem Cell and Transformation Research" Key Special Project of China 2019YFA0110601

Key Projects of Teaching Research and Reform in Changhai Hospital CHJG2019002

More Information
  • 摘要: 研究显示,因过度自主呼吸努力引起的肺损伤,即患者自戕性肺损伤(patient self-inflicted lung injury,P-SILI),是具有强烈自主呼吸的行机械通气的急性呼吸窘迫综合征(ARDS)患者发生机械通气相关性肺损伤、机械通气相关性膈肌功能障碍的重要表现形式和可能机制。本文综述了P-SILI概念、潜在发生机制、临床意义和防治等,以期为临床ARDS管理提供更多思路。

     

  • 参考文献(33)

    [1] 唐雨莹, 邱海波, 孙骎. 保留自主呼吸对轻中度急性呼吸窘迫综合征治疗的益处[J]. 中华医学杂志, 2018, 98(29): 2374-2376. DOI: 10.3760/cma.j.issn.0376-2491.2018.29.022.
    [2] YoshidaT, AmatoMBP, KavanaghBP, et al. Impact of spontaneous breathing during mechanical ventilation in acute respiratory distress syndrome[J]. Curr Opin Crit Care, 2019, 25(2): 192-198. DOI: 10.1097/MCC.0000000000000597.
    [3] RussottoV, BellaniG, FotiG. Respiratory mechanics in patients with acute respiratory distress syndrome[J]. Ann Transl Med, 2018, 6(19): 382. DOI: 10.21037/atm.2018.08.32.
    [4] BrochardL, SlutskyA, PesentiA. Mechanical ventilation to minimize progression of lung injury in acute respiratory failure[J]. Am J Respir Crit Care Med, 2017, 195(4): 438-442. DOI: 10.1164/rccm.201605-1081CP.
    [5] YoshidaT, GriecoDL, BrochardL, et al. Patient self-inflicted lung injury and positive end-expiratory pressure for safe spontaneous breathing[J]. Curr Opin Crit Care, 2020, 26(1): 59-65. DOI: 10.1097/MCC.0000000000000691.
    [6] YoshidaT, RoldanR, BeraldoMA, et al. Spontaneous effort during mechanical ventilation: maximal injury with less positive end-expiratory pressure[J]. Crit Care Med, 2016, 44(8): e678-688. DOI: 10.1097/CCM.0000000000001649.
    [7] YoshidaT, NakahashiS, NakamuraMAM, et al. Volume-controlled ventilation does not prevent injurious inflation during spontaneous effort[J]. Am J Respir Crit Care Med, 2017, 196(5): 590-601. DOI: 10.1164/rccm.201610-1972OC.
    [8] YoshidaT, UchiyamaA, MatsuuraN, et al. Spontaneous breathing during lung-protective ventilation in an experimental acute lung injury model: high transpulmonary pressure associated with strong spontaneous breathing effort may worsen lung injury[J]. Crit Care Med, 2012, 40(5): 1578-1585. DOI: 10.1097/CCM.0b013e3182451c40.
    [9] YoshidaT, TorsaniV, GomesS, et al. Spontaneous effort causes occult pendelluft during mechanical ventilation[J]. Am J Respir Crit Care Med, 2013, 188(12): 1420-1427. DOI: 10.1164/rccm.201303-0539OC.
    [10] KalletRH, AlonsoJA, LuceJM, et al. Exacerbation of acute pulmonary edema during assisted mechanical ventilation using a low-tidal volume, lung protective-ventilator strategy[J]. Chest, 1999, 116(6): 1826-1832. DOI: 10.1378/chest.116.6.1826.
    [11] KantorDB, HirshbergEL, McDonaldMC, et al. Fluid balance is associated with clinical outcomes and extravascular lung water in children with acute asthma exacerbation[J]. Am J Respir Crit Care Med, 2018, 197(9):1128-1135. DOI: 10.1164/rccm.201709-1860OC.
    [12] MariniJJ. Microvasculature in ventilator-induced lung injury: target or cause?[J]. Minerva Anestesiol, 2004, 70(4): 167-173.
    [13] WestJB. Invited review: pulmonary capillary stress failure[J]. J Appl Physiol (1985), 2000, 89(6): 2483-2489; discussion 2497. DOI: 10.1152/jappl.2000.89.6.2483.
    [14] 刘晓彬, 朱峰. 从机械能视角再理解呼吸机相关性肺损伤[J]. 中华烧伤杂志, 2021, 37(3): 292-295. DOI: 10.3760/cma.j.cn501120-20200203-00039.
    [15] DaiYL, WuCP, YangGG, et al. Adaptive support ventilation attenuates ventilator induced lung injury: human and animal study[J]. Int J Mol Sci, 2019, 20(23): 5848. DOI: 10.3390/ijms20235848.
    [16] HotchkissJRJr, BlanchL, MuriasG, et al. Effects of decreased respiratory frequency on ventilator-induced lung injury[J]. Am J Respir Crit Care Med, 2000, 161(2 Pt 1): 463-468. DOI: 10.1164/ajrccm.161.2.9811008.
    [17] 张瑞, 隆云. 跨肺血管机械能的提出与内涵[J/OL]. 中华重症医学电子杂志, 2020, 6(4): 361-364[2021-07-18]. https://icu.cma-cmc.com.cn/CN/ 10.3877/cma.j.issn.2096-1537.2020.04.002. DOI: 10.3877/cma.j.issn.2096-1537.2020.04.002.
    [18] BlanchL, VillagraA, SalesB, et al. Asynchronies during mechanical ventilation are associated with mortality[J]. Intensive Care Med, 2015, 41(4): 633-641. DOI: 10.1007/s00134-015-3692-6.
    [19] PohlmanMC, McCallisterKE, SchweickertWD, et al. Excessive tidal volume from breath stacking during lung-protective ventilation for acute lung injury[J]. Crit Care Med, 2008, 36(11): 3019-3023. DOI: 10.1097/CCM.0b013e31818b308b.
    [20] MauriT, LangerT, ZanellaA, et al. Extremely high transpulmonary pressure in a spontaneously breathing patient with early severe ARDS on ECMO[J]. Intensive Care Med, 2016, 42(12):2101-2103. DOI: 10.1007/s00134-016-4470-9.
    [21] VaporidiK, AkoumianakiE, TeliasI, et al. Respiratory drive in critically ill patients: pathophysiology and clinical implications[J]. Am J Respir Crit Care Med, 2020, 201(1): 20-32. DOI: 10.1164/rccm.201903-0596SO.
    [22] SpinelliE, MauriT, BeitlerJR, et al. Respiratory drive in the acute respiratory distress syndrome: pathophysiology, monitoring, and therapeutic interventions[J]. Intensive Care Med, 2020, 46(4): 606-618. DOI: 10.1007/s00134-020-05942-6.
    [23] CarteauxG, ParfaitM, CombetM, et al. Patient-self inflicted lung injury: a practical review[J]. J Clin Med, 2021, 10(12): 2738. DOI: 10.3390/jcm10122738.
    [24] ArnalJM, ChatburnR. Paying attention to patient self-inflicted lung injury[J]. Minerva Anestesiol, 2019, 85(9): 940-942. DOI: 10.23736/S0375-9393.19.13778-9.
    [25] GriecoDL, MengaLS, EleuteriD, et al. Patient self-inflicted lung injury: implications for acute hypoxemic respiratory failure and ARDS patients on non-invasive support[J]. Minerva Anestesiol, 2019, 85(9): 1014-1023. DOI: 10.23736/S0375-9393.19.13418-9.
    [26] YoshidaT, AmatoMBP, GriecoDL, et al. Esophageal manometry and regional transpulmonary pressure in lung injury[J]. Am J Respir Crit Care Med, 2018, 197(8): 1018-1026. DOI: 10.1164/rccm.201709-1806OC.
    [27] PatelBK, WolfeKS, HallJB, et al. A word of caution regarding patient self-inflicted lung injury and prophylactic intubation[J]. Am J Respir Crit Care Med, 2017, 196(7): 936. DOI: 10.1164/rccm.201702-0410LE.
    [28] MoraisCCA, KoyamaY, YoshidaT, et al. High positive end-expiratory pressure renders spontaneous effort noninjurious[J]. Am J Respir Crit Care Med, 2018, 197(10):1285-1296. DOI: 10.1164/rccm.201706-1244OC.
    [29] YoshidaT, AmatoMBP, KavanaghBP. Understanding spontaneous vs ventilator breaths: impact and monitoring[J]. Intensive Care Med, 2018, 44(12): 2235-2238. DOI: 10.1007/s00134-018-5145-5.
    [30] SomhorstP, GrootMW, GommersD. Partial neuromuscular blockage to promote weaning from mechanical ventilation in severe ARDS: a case report[J]. Respir Med Case Rep, 2018, 25: 225-227. DOI: 10.1016/j.rmcr.2018.09.008.
    [31] KeenanJC, FormentiP, MariniJJ. Lung recruitment in acute respiratory distress syndrome: what is the best strategy?[J]. Curr Opin Crit Care, 2014, 20(1): 63-68. DOI: 10.1097/MCC.0000000000000054.
    [32] ForelJM, RochA, MarinV, et al. Neuromuscular blocking agents decrease inflammatory response in patients presenting with acute respiratory distress syndrome[J]. Crit Care Med, 2006, 34(11): 2749-2757. DOI: 10.1097/01.CCM.0000239435.87433.0D.
    [33] PapazianL, ForelJM, GacouinA, et al. Neuromuscular blockers in early acute respiratory distress syndrome[J]. N Engl J Med, 2010, 363(12): 1107-1116. DOI: 10.1056/NEJMoa1005372.
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  • 收稿日期:  2020-06-10

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