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临床试验/NCT04013698
NCT04013698撤回不适用

Effects of Chest Wall and Lung Elastances on Intracranial Pressure and Brain-specific Multimodal Monitoring in Ventilated Brain Injured Patients

Piquilloud Imboden Lise2 个研究点 分布在 1 个国家开始时间: 2019年8月1日最近更新:
适应症

试验速览

阶段
不适用
状态
撤回
发起方
试验地点
2
主要终点
Correlation between Ers/Ecw and change in ICP between the two PEEP levels

研究概览

简要总结

Increase in intracranial pressure (ICP) could be associated with increase in positive end-expiratory pressure (PEEP) level. Data are however disparate and interactions between ventilation with high PEEP and intracranial circulation are still debated. Individual patient's chest wall elastance could have a key role in determining the effects of PEEP on ICP, since it dictates which proportion of the applied PEEP is transmitted to the pleural space, thus increasing central venous pressure (CVP) and reducing cerebral venous return. Measurement of esophageal pressure with a dedicated probe allows partitioning of respiratory system elastance into its lung and chest wall components, thus permitting to study this phenomenon. Multimodal intracranial monitoring permits to study the effects of PEEP on more advanced brain-specific indices such as brain tissue oxygen (PtiO2), cerebral microdialysis data, transcranial doppler ultrasound-derived flow measurements and automated pupillometry, besides ICP.

This study aims to test the association between the ratio of chest wall to respiratory system elastance and PEEP-induced variations in ICP and brain-specific multimodal monitoring indices. This study will evaluate the relative role of other selected measures of respiratory mechanics, hemodynamic variables and intracranial compliance, in order to establish the role of individual respiratory mechanics in the interplay of physiological factors affecting the effects of positive pressure ventilation on the brain.

Patients will undergo two periods of ventilation at two different levels of PEEP (5 and 15 cmH2O) in a randomized cross-over order. At the end of each period, cardiorespiratory clinical data, ICP and other advanced multimodal neuromonitoring data (brain tissue oxygen tension, cerebral microdyalisis analytes, transcranial doppler ultrasound and automated infrared pupillometry data) will be collected. Systematic respiratory mechanics assessment (including calculation of chest wall and lung elastances and estimation of the amount of recruitment versus overdistension due to PEEP by means of a single-breath derecruitment trial), echocardiography and arterial blood gas analysis will be performed.

研究设计

研究类型
Interventional
分配方式
Randomized
干预模型
Crossover
主要目的
Other
盲法
None

入排标准

年龄范围
18 Years 至 —(Adult, Older Adult)
性别
All
接受健康志愿者

入选标准

  • Acute brain injury of any etiology requiring multimodal brain monitoring (intraparenchymal intracranial pressure, brain-tissue oxygen tension and cerebral microdialysis)
  • Controlled mechanical ventilation via endotracheal tube
  • Patient needing deep sedation

排除标准

  • pregnancy
  • contraindications to nasogastric probe placement: basilar skull or significant naso-facial fractures, significant esophageal or gastric trauma or bleeding, previous esophageal surgery, significant bleeding diathesis (spontaneous aPTT > 60 sec, PT < 40%, INR > 1.8, platelets < 50000/mm3), known esophageal or gastric varices
  • decompressive craniectomy
  • intracranial pressure monitoring method other than intraparenchymal (e.g. connected to external ventricular drain)
  • severe relevant physiological instability contraindicating an increase in PEEP: severe baseline intracranial pressure elevation (> 20 mmHg), severe hemodynamic instability (defined as norepinephrine requirements > 0.5 μg/kg/min or cardiogenic shock, defined as any use of dobutamine)
  • conditions that interfere with accurate measurements of respiratory mechanics: bronchopleural fistula, pneumothorax.
  • Withhold of life-sustaining therapy for medical reasons

结局指标

主要结局

Correlation between Ers/Ecw and change in ICP between the two PEEP levels

时间窗: Recorded every minute during 10 minutes at the end of each 45-minute period (PEEP 5 and 15 cmH2O), 90 minutes

Respiratory mechanics; intracranial pressure monitoring Ers/Ecw = chest wall to respiratory system elastances ratio; ICP = intracranial pressure

次要结局

  • Correlation between Ecw/Ers and the following neuromonitoring indices at the two PEEP levels: PtiO2, LPR, NPI; MFV, DFV and PI.(Recorded every minute during 10 minutes at the end of each 45-minute period (PEEP 5 and 15 cmH2O), 90 minutes)
  • Effect of the two different levels of PEEP on PtiO2.(Recorded every minute during 10 minutes at the end of each 45-minute period (PEEP 5 and 15 cmH2O), 90 minutes)
  • Effect of the two different levels of PEEP on the following intravascular pressures: CVP, MAP, CPP.(Recorded every minute during 10 minutes at the end of each 45-minute period (PEEP 5 and 15 cmH2O), 90 minutes)
  • Correlation between Rec/PEEPvol and the following parameters at the two PEEP levels: ICP, PtiO2, LPR, NPI, MFV, DFV, PI; CVP, MAP, CPP, LVOT VTI, CO, dose of vasopressors/inotropes and volume of fluid boluses administered.(Recorded every minute during 10 minutes at the end of each 45-minute period (PEEP 5 and 15 cmH2O), 90 minutes)
  • Correlation between doppler indices (MFV, DFV and PI) and the following parameters at the two PEEP levels: ICP, MAP, dose of vasopressors/inotropes and volume of fluid boluses administered.(Recorded every minute during 10 minutes at the end of each 45-minute period (PEEP 5 and 15 cmH2O), 90 minutes)
  • Effect of the two different levels of PEEP on NPI.(Recorded every minute during 10 minutes at the end of each 45-minute period (PEEP 5 and 15 cmH2O), 90 minutes)
  • Effect of the two different levels of PEEP on the following echocardiographic measurements: LVOT VTI, CO.(Recorded every minute during 10 minutes at the end of each 45-minute period (PEEP 5 and 15 cmH2O), 90 minutes)
  • Correlation between Vd/Vt and the following parameters at the two PEEP levels: ICP, PtiO2, LPR, NPI, MFV, DFV, PI; CPP(Recorded every minute during 10 minutes at the end of each 45-minute period (PEEP 5 and 15 cmH2O), 90 minutes)
  • Correlation between LVOT VTI and the following parameters at the two PEEP levels: PtiO2, LPR, NPI, MFV, DFV, PI; MAP, CPP, dose of vasopressors/inotropes and volume of fluid boluses administered.(Recorded every minute during 10 minutes at the end of each 45-minute period (PEEP 5 and 15 cmH2O), 90 minutes)
  • Effect of the two different levels of PEEP on the following transcranial doppler ultrasound variables: MFV, DFV and PI.(Recorded every minute during 10 minutes at the end of each 45-minute period (PEEP 5 and 15 cmH2O), 90 minutes)
  • Effect of the two different levels of PEEP on LPR.(Recorded every minute during 10 minutes at the end of each 45-minute period (PEEP 5 and 15 cmH2O), 90 minutes)
  • Effect of the two different levels of PEEP on the dose of vasopressors/inotropes and volume of fluid boluses administered.(Recorded every minute during 10 minutes at the end of each 45-minute period (PEEP 5 and 15 cmH2O), 90 minutes)
  • Correlation between PtiO2 and the following parameters at the two PEEP levels: ICP, MAP, dose of vasopressors/inotropes and volume of fluid boluses administered.(Recorded every minute during 10 minutes at the end of each 45-minute period (PEEP 5 and 15 cmH2O), 90 minutes)
  • Correlation between Ers/Ecw and the following parameters at the two PEEP levels: LVOT VTI, CO; CVP, MAP, CPP; dose of vasopressors/inotropes and volume of fluid boluses administered.(Recorded every minute during 10 minutes at the end of each 45-minute period (PEEP 5 and 15 cmH2O), 90 minutes)
  • Correlation between LPR and the following parameters at the two PEEP levels: ICP, MAP, dose of vasopressors/inotropes and volume of fluid boluses administered.(Recorded every minute during 10 minutes at the end of each 45-minute period (PEEP 5 and 15 cmH2O), 90 minutes)
  • Correlation between NPI and the following parameters at the two PEEP levels: ICP, MAP, dose of vasopressors/inotropes and volume of fluid boluses administered.(Recorded every minute during 10 minutes at the end of each 45-minute period (PEEP 5 and 15 cmH2O), 90 minutes)
  • Correlation between Pes_end-exp and the following parameters at the two PEEP levels: ICP, PtiO2, LPR, NPI, MFV, DFV, PI; CVP, MAP, CPP, LVOT VTI, CO, dose of vasopressors/inotropes and volume of fluid boluses administered.(Recorded every minute during 10 minutes at the end of each 45-minute period (PEEP 5 and 15 cmH2O), 90 minutes)
  • Correlation between baseline PI at transcranial doppler ultrasound and the following parameters at the two PEEP levels: ICP, PtiO2, LPR, NPI, MFV, DFV, PI; LVOT VTI, CO, MAP, CPP.(Recorded every minute during 10 minutes at the end of each 45-minute period (PEEP 5 and 15 cmH2O), 90 minutes)
  • Correlation between CVP and the following parameters at the two PEEP levels : ICP, PtiO2, LPR, NPI, MFV, DFV, PI; LVOT VTI, CO, MAP, CPP, dose of vasopressors/inotropes and volume of fluid boluses administered.(Recorded every minute during 10 minutes at the end of each 45-minute period (PEEP 5 and 15 cmH2O), 90 minutes)

研究者

发起方
Piquilloud Imboden Lise
申办方类型
Other
责任方
Sponsor Investigator
主要研究者

Piquilloud Imboden Lise

Sponsor-Investigator

University of Lausanne Hospitals

研究点 (2)

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