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临床试验/NCT04699942
NCT04699942已完成不适用

Pilot Study to Evaluate the Revoxa™ System in Hypoxic Patients

Dr. David Maslove1 个研究点 分布在 1 个国家目标入组 7 人开始时间: 2021年2月1日最近更新:
适应症
干预措施

试验速览

阶段
不适用
状态
已完成
发起方
入组人数
7
试验地点
1
主要终点
Oxygen flow required to achieve SpO2 >96%.

研究概览

简要总结

Patients with COVID-19 may suffer from profound hypoxia, requiring the use of supplemental oxygen at high concentrations and flow rates. Non-invasive oxygen delivery systems such as high-flow nasal cannula and non-invasive ventilation have been used in an attempt to avoid the need for intubation and invasive mechanical ventilation. These systems consume large amounts of oxygen, which prevents them from being used in areas without high pressure oxygen sources. In addition, they generate aerosols which have the potential to spread infectious pathogens from the patient's respiratory tract to healthcare workers or other patients in the environment. This study aims to investigate a computer controlled rebreather system which functions to maintain a high fraction of inspired oxygen while minimizing the production of aerosol, among hospitalized patients requiring respiratory support due to hypoxemia. The Revoxa Oxygen Rebreather device can reduce the amount of wasted oxygen and can reduce the potential for any exhaled pathogens entering the surroundings. This type of breathing device is a promising oxygen delivery treatment, but it is not clear if it can offer comparable results to standard treatment. The purpose of this study is to compare the Revoxa Oxygen Rebreather device to standard oxygen delivery methods, including nasal cannula and face mask oxygen, in order to see if similar oxygenation can be achieved at comparable or lower rates of oxygen usage.

详细描述

This study aims to investigate a two-phase rebreather system (Revoxa Oxygen Rebreather device) among hospitalized patients requiring oxygen therapy. This system can deliver a high fraction of inspired oxygen (FiO2) using a very low flow oxygen source with reduced or no aerosolization. This could provide effective respiratory support with reduced waste and risk of spreading of infectious particles. Such a device could also be used in field hospitals and other makeshift care centers in the event of a surge in demand, because it obviates the need for the type of high-flow oxygen infrastructure that is typically limited to hospital settings.

This is a prospective comparative study of sequential interventions to evaluate the ability of the Revoxa Oxygen Rebreather device (RO) to improve and maintain oxygen saturation at satisfactory levels compared to conventional low-flow supplemental oxygen delivery (COD) via nasal cannula or face mask. Prior to conducting study procedures in the patient population, feasibility of trial procedures will be determined among 3 healthy adults (Group A). The initial procedural test in a healthy sample will not be included in the endpoint assessment. Following initial trial conduct in a healthy sample, 20 adult patients requiring supplemental oxygen will be recruited: adults with non-severe hypoxemia (Group B), followed by enrollment of adults with hypoxemia of any severity not requiring mechanical ventilation (Group C). Baseline measures of oxygen saturation, oxygen flow rate, vital signs (respiratory rate, heart rate, and blood pressure), and patient self-reported dyspnea and comfort will be recorded prior to initiating treatment. Following baseline measurement, either conventional low-flow oxygen delivery or oxygen via the Revoxa Oxygen Rebreather device will be initiated for 20 minutes, followed by the other modality for 20 minutes. To avoid any bias that may be introduced by a fixed sequence of device utilization (eg. COD, then RO), the order in which devices are used will be determined quasi-randomly based on whether the patient is enrolled on an odd numbered day, or an even numbered day. Vital signs, supplemental oxygen, and self-reported dyspnea measures are captured during both treatment regimens. Participants may verbally withdraw at any time by contacting one of the clinical or research staff. At that point, all data collection relating to the withdrawn study participant will be terminated. If the participant wishes, all existing data will be deleted (with the exception of the signed consent form and data related to the consent withdrawal - including the reason for the withdrawal). Additional participants will be recruited to maintain an adequate sample size in the event that participants are withdrawn from the study.

研究设计

研究类型
Interventional
分配方式
Randomized
干预模型
Sequential
主要目的
Supportive Care
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
是

入选标准

  • •Group A - Healthy adults (≥ 18 years of age) with SpO2 ≥ 96% without oxygen supplementation
  • •Group B - non-severe hypoxemia requiring supplemental oxygen as defined by:
  • •SpO2 > 96% with oxygen face mask or nasal cannula with low flow oxygen <5LPM
  • •Adults (≥ 18 years of age)
  • •Group C - Hypoxemia requiring supplemental oxygen as defined by:
  • •Oxygen saturation (SpO2) ≤ 92% on room air as measured by pulse oximetry; or
  • •SpO2 < 94% with oxygen face mask or nasal cannula with low flow oxygen <5LPM
  • •Adults (≥ 18 years of age)

排除标准

  • •Acute / unstable cardiovascular condition
  • •Pregnancy
  • •Imminent need for intubation or noninvasive ventilation
  • •Glasgow coma scale <14

研究组 & 干预措施

Conventional

Active Comparator

Conventional low-flow Oxygen Delivery

干预措施: Conventional (low flow) oxygen delivery via nasal cannula (Device)

Revoxa

Experimental

Oxygen Delivery via Revoxa Oxygen Rebreather Device

干预措施: Revoxa Oxygen Rebrearther (Device)

结局指标

主要结局

Oxygen flow required to achieve SpO2 >96%.

时间窗: Baseline to 20 minutes

Oxygen flow required to achieve SpO2 \>96%.

次要结局

  • Patient-reported dyspnea (Modified Borg Scale)(Baseline to 20 minutes)
  • Peak SpO2(Baseline to 20 minutes)
  • Average oxygen consumption(Baseline to 20 minutes)
  • Patient-reported comfort (Visual Analogue Scale)(Baseline to 20 minutes)

研究者

发起方
Dr. David Maslove
申办方类型
Other
责任方
Sponsor Investigator
主要研究者

Dr. David Maslove

Associate Professor

Queen's University

研究点 (1)

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