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临床试验/NCT03877198
NCT03877198终止不适用

A Randomized Cross-over Trial in the Effect of Automated Oxygen Control Devices on the Distribution of Oxygen Saturation in Preterm Infants

Leiden University Medical Center2 个研究点 分布在 1 个国家目标入组 15 人开始时间: 2019年2月19日最近更新:
适应症

试验速览

阶段
不适用
状态
终止
发起方
入组人数
15
试验地点
2
主要终点
Proportion of time with SpO2 spent within set target range

研究概览

简要总结

Premature infants often receive respiratory support and supplemental oxygen for a prolonged period of time during their admission in the NICU. While maintaining the oxygen saturation within a narrow target range is important to prevent morbidity, manual oxygen titration can be very challenging. Automatic titration by a controller has been proven to be more effective. However, to date the performance of different controllers has not been compared. The proposed randomized crossover trial Comparing Oxygen Controllers in Preterm InfanTs (COCkPIT) is designed to compare the effect on time spent within target range. The results of this trial will help determining which algorithm is most successful in controlling oxygen, improve future developments in automated oxygen control and ultimately reduce the morbidity associated with hypoxemia and hyperoxemia.

详细描述

Both hypoxemia as hyperoxemia can potentially be harmful to premature infants. Oxygen titration during respiratory support is vital to prevent these conditions but is very challenging. In the investigator's neonatal intensive care unit preterm infants routinely receive automatic oxygen titration performed by a controller. The currently used controllers are both proven to be more effective than manual titration, however which of the two controllers is most effective in keeping oxygen saturation within target range remains unclear.

This randomized crossover trial tests tests both controllers within every study patient to determine which controller is most effective and thereby would hopefully reduce morbidity associated with hypoxemia and hyperoxemia the most. The primary outcome measure is the proportion of time spent within target range, each controller will be tested for 24 hours within the same study subject. This is excluding a 1-hour wash-out period after a change in ventilator.

Eligible infants are randomized to start with either the Oxygenie algorithm or CLiO2 algorithm and will switch to the other study arm after 24 hours of measurement.

研究设计

研究类型
Interventional
分配方式
Randomized
干预模型
Crossover
主要目的
Treatment
盲法
Single (Outcomes Assessor)

盲法说明

The outcome assessor/investigator will be blinded for treatment allocation

入排标准

年龄范围
— 至 8 Weeks(Child)
性别
All
接受健康志愿者

入选标准

  • Preterm infants with a gestational age (GA) at birth of 24 - 29+6/7 weeks
  • Receiving invasive mechanical ventilation or non-invasive respiratory support (NCPAP or NIPPV)
  • Receiving supplemental oxygen (defined as FiO2 ≥ 0.25) at the time of enrollment and for at least 18 hours during the previous 24 hours; Or a coefficient of variation in supplemental oxygen of ≥ 0.1 in the previous 24 hours.
  • Expected to complete the 49-hour or 50-hour study period in the current form of respiratory support, i.e. invasive mechanical ventilation or non-invasive respiratory support
  • Written informed parental consent must be present.

排除标准

  • Major congenital anomalies
  • Arterial hypotension requiring vasopressor therapy within 48 hours prior to enrollment.
  • If the attending physician considers the infant not stable enough for a switch to another ventilator.

结局指标

主要结局

Proportion of time with SpO2 spent within set target range

时间窗: Continuously from randomization until study completion. (maximum of 50 hours) Measurements during wash-out periods (up to 1 hour after ventilator switch) will be excluded.

Total time SpO2 is within the set target range (91-95%) including time spent above target range when in room air (set FiO2 \< 0.22)

次要结局

  • Proportion of time with SpO2 spent above target range (SpO2 > 95%)(Continuously from randomization until study completion. (maximum of 50 hours) Measurements during wash-out periods (up to 1 hour after ventilator switch) will be excluded.)
  • Proportion of time with SpO2 spent below target range (SpO2 < 91%)(Continuously from randomization until study completion. (maximum of 50 hours) Measurements during wash-out periods (up to 1 hour after ventilator switch) will be excluded.)
  • Coefficient of SpO2 variation(Continuously from randomization until study completion. (maximum of 50 hours) Measurements during wash-out periods (up to 1 hour after ventilator switch) will be excluded.)
  • Time in hypoxemic SpO2 ranges(Continuously from randomization until study completion. (maximum of 50 hours) Measurements during wash-out periods (up to 1 hour after ventilator switch) will be excluded.)
  • Time in hyperoxemic SpO2 ranges(Continuously from randomization until study completion. (maximum of 50 hours) Measurements during wash-out periods (up to 1 hour after ventilator switch) will be excluded.)
  • Frequency of episodes of hypoxemia(Continuously from randomization until study completion. (maximum of 50 hours) Measurements during wash-out periods (up to 1 hour after ventilator switch) will be excluded.)
  • Frequency of episodes of hyperoxemia(Continuously from randomization until study completion. (maximum of 50 hours) Measurements during wash-out periods (up to 1 hour after ventilator switch) will be excluded.)
  • Frequency of episodes of bradycardia(Continuously from randomization until study completion. (maximum of 50 hours) Measurements during wash-out periods (up to 1 hour after ventilator switch) will be excluded.)
  • Frequency of FiO2 adjustments during automated control(Continuously from randomization until study completion. (maximum of 50 hours) Measurements during wash-out periods (up to 1 hour after ventilator switch) will be excluded.)
  • Average oxygen exposure(Continuously from randomization until study completion. (maximum of 50 hours) Measurements during wash-out periods (up to 1 hour after ventilator switch) will be excluded.)
  • Coefficient of variation of FiO2(Continuously from randomization until study completion. (maximum of 50 hours) Measurements during wash-out periods (up to 1 hour after ventilator switch) will be excluded.)
  • Effects on nursing workload in relation to FiO2 adjustment(From randomization until study completion. (maximum of 50 hours) Manual adjustments during wash-out periods will be excluded.)
  • Confidence of the bedside staff in the automated control system(From randomization until study completion. (maximum of 50 hours))

研究者

发起方
Leiden University Medical Center
申办方类型
Other
责任方
Principal Investigator
主要研究者

PasABte

Clinical Professor in Pediatrics

Leiden University Medical Center

研究点 (2)

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