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临床试验/NCT05380687
NCT05380687已完成不适用

Time Course of Neuro-ventilatory Efficiency During a Spontaneous Breathing Training

University Hospital, Antwerp2 个研究点 分布在 1 个国家目标入组 1 人开始时间: 2022年6月15日最近更新:
适应症

试验速览

阶段
不适用
状态
已完成
入组人数
1
试验地点
2
主要终点
Neuroventilatory efficiency (NVE) during a zero-assist breath in neural pressure support mode with a pressure support level of 7cmH2O and a PEEP of 10 cmH2O

研究概览

简要总结

The TONES trial aims to evaluate the neuroventilatory efficiency (NVE = tidal volume / peak voltage of diaphragm contraction) measured during a zero-assist manoeuvre (ZAM, i.e. with PEEP but without pressure support). This novel parameter, NVE-ZAM, will be studied in a blocked, crossover, repeated measures design.

Possible confounders, such as activity of respiratory muscles other than the diaphragm, are included.

The investigators hypothesized that

  • the NVE during a zero-assist maneuver has a low variability and high repeatability at the same level of PEEP (within subjects, within blocks)
  • NVE-ZAM trends differ between participants (between subjects, within blocks) and between PEEP levels (within subjects, between blocks)

The primary aim is to study the variability and repeatability of the NVE-ZAM within subjects and within blocks.

Additionally, the effect of PEEP, muscle fatigue and recruitment of the accessory and expiratory muscles of respiration on the NVE-ZAM will be studied in an exploratory analysis (in multiple combinations of within and between subjects and/or blocks).

研究设计

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

入排标准

年龄范围
18 Years 至 80 Years(Adult, Older Adult)
性别
All
接受健康志愿者

入选标准

  • 未提供

排除标准

  • 未提供

结局指标

主要结局

Neuroventilatory efficiency (NVE) during a zero-assist breath in neural pressure support mode with a pressure support level of 7cmH2O and a PEEP of 10 cmH2O

时间窗: Measured each 3 mintues during blocks A1 and B1: initial 30 minutes of training in both trainings A and B (cumulative: 2x 30 minutes)

Measured using an Edi catheter (Maquet, Solna, Sweden) each 3 minutes as tidal volume / delta Edi. Zero assist is defined as a pressure support of 0 cmH2O during a single breath.

Neuroventilatory efficiency (NVE) during a zero-assist breath in neural pressure support mode with a pressure support level of 7cmH2O and a PEEP of 0 cmH2O

时间窗: Measured each 3 mintues during block B3: third next 30 minutes of training in training B (cumulative: 1x 30 minutes)

Measured using an Edi catheter (Maquet, Solna, Sweden) each 3 minutes as tidal volume / delta Edi. Zero assist is defined as a pressure support of 0 cmH2O during a single breath.

Neuroventilatory efficiency (NVE) during a zero-assist breath in neural pressure support mode with a pressure support level of 7cmH2O and a PEEP of 5 cmH2O

时间窗: Measured each 3 mintues during blocks A4 and B4: fourth next 30 minutes of training in both trainings A and B (cumulative: 2x 30 minutes)

Measured using an Edi catheter (Maquet, Solna, Sweden) each 3 minutes as tidal volume / delta Edi. Zero assist is defined as a pressure support of 0 cmH2O during a single breath.

次要结局

  • Change in MEP (cmH2O)(Measured during an inspiratory hold of ≤ 30 seconds between each training block (AH0-4 & BH0-4; cumulative ≤ 5 minutes))
  • Change in NVE (ml/µv)(Measured at each breath during 30 minutes for each training block (A1-4 & B1-4; cumulative 4hours))
  • Change in ICTF(Measured for 5 breaths in the 30 minutes for each training block (A1-4 & B1-4; cumulative 4hours))
  • Change in RSBI (ml*min)(Measured at each breath during 30 minutes in block B3 (at zero PEEP; cumulative 30 minutes))
  • Change in P0.1 (cmH2O)(Measured at each breath during 30 minutes for each training block (A1-4 & B1-4; cumulative 4hours))
  • Change in IOTF(Measured for 5 breaths in the 30 minutes for each training block (A1-4 & B1-4; cumulative 4hours))
  • Change in ∆Pocc (cmH2O)(Measured during an expiratory hold of ≤ 30 seconds between each training block (AH0-4 & BH0-4; cumulative ≤ 5 minutes))
  • Change in static PEEP (cmH2O)(Measured during an expiratory hold of ≤ 30 seconds between each training block (AH0-4 & BH0-4; cumulative ≤ 5 minutes))
  • Change in Cdyn (ml / cmH2O)(Measured at each breath during 30 minutes for each training block (A1-4 & B1-4; cumulative 4hours))
  • Change in PIP (cmH2O)(Measured at each breath during 30 minutes for each training block (A1-4 & B1-4; cumulative 4hours))
  • Change in MIP (cmH2O)(Measured during an expiratory hold of ≤ 30 seconds between each training block (AH0-4 & BH0-4; cumulative ≤ 5 minutes))
  • Change in ∆Edi (µV)(Measured at each breath during 30 minutes for each training block (A1-4 & B1-4; cumulative 4hours))
  • Change in Pplat (cmH2O)(Measured at each breath during 30 minutes for each training block (A1-4 & B1-4; cumulative 4hours))
  • Change in Raw (cmH2O * L / s)(Measured at each breath during 30 minutes for each training block (A1-4 & B1-4; cumulative 4hours))
  • Change in DTF(Measured for 5 breaths in the 30 minutes for each training block (A1-4 & B1-4; cumulative 4hours))
  • Change in TV (ml)(Measured at each breath during 30 minutes for each training block (A1-4 & B1-4; cumulative 4hours))

研究者

申办方类型
Other
责任方
Sponsor

研究点 (2)

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