A Feasibility Study to Evaluate a New Doppler Method (RescueDoppler) for Monitoring Blood Flow in the Carotid Artery in Subjects Suffering From Sudden Cardiac Arrest
试验速览
- 阶段
- 不适用
- 状态
- 招募中
- 入组人数
- 300
- 试验地点
- 15
- 主要终点
- Number of patients with carotid peak blood flow velocity of more than 20 cm/second during cardiopulmonary resuscitation
研究概览
简要总结
RescueDoppler is an innovative, hands-free Doppler system designed for continuous monitoring of blood flow in the carotid artery, distinguishing between the presence and absence of a pulse. It is non-invasive, user-independent, and does not require specialized ultrasound expertise. The primary goal of this study is to assess the feasibility and clinical utility of RescueDoppler for monitoring carotid artery blood flow in patients experiencing sudden cardiac arrest.
The multi-center study will be performed both pre-hospital and in-hospital.
详细描述
When treating sudden cardiac arrest (SCA), manual pulse checks are currently the standard method to detect blood flow, but this approach has significant limitations. It's neither quick nor consistently reliable (Germanoska et al. 2018, Eberle et al. 1996). Studies show that 45% of healthcare workers struggle to accurately detect a central pulse during cardiac arrest (Moule 2000, Nakagawa et al. 2010). If blood flow has already been restored, continuing chest compressions could cause more harm than good. This highlights the need for an easy-to-use tool to assess blood flow during cardiopulmonary resuscitation (CPR).
Cardiac arrest is responsible for 7-8 million deaths per year and ranks as the third leading cause of death in industrialized countries. Despite advances in resuscitation techniques and post-resuscitation care, the survival rate following cardiac arrest remains low-around 10% or less. Survival rates drop sharply with every minute that passes without advanced cardiac life support (OECD 2017). Successful resuscitation after cardiac arrest requires restoring the heart's normal electrical activity and ensuring adequate blood flow to vital organs. Currently, only the heart's electrical activity (via electrocardiogram [ECG]) is monitored during resuscitation, with no information available on blood flow.
CPR involves chest compressions and artificial ventilation to maintain circulation and oxygenation. In cases of shockable rhythms, a defibrillator delivers an electrical shock to the heart. Automated external defibrillators (AEDs) are capable of diagnosing life-threatening arrhythmias, enabling even untrained bystanders to use them effectively. However, while defibrillators can detect, treat, and confirm the return of normal heart rhythm, they don't provide feedback on whether blood flow has been successfully restored (return of spontaneous circulation [ROSC]). A quicker ROSC is linked to better long-term survival outcomes.
Non-shockable rhythms, such as pulseless electrical activity (PEA) and asystole, are increasingly common. Research shows that up to 60% of patients with suspected PEA and 10-35% of those with suspected asystole still have mechanical heart activity (Deakin 2000, Gaspari et al. 2016). In these cases, using cardiac ultrasound has changed patient management in 78% of cases and has been linked to increased survival. European Resuscitation Council guidelines recommend limiting interruptions during CPR to 10 seconds to check for a pulse (Perkins et al. 2021). However, cardiac ultrasound cannot be performed during chest compressions, which limits its usefulness (Zengin et al. 2018).
Doppler ultrasound measurements of carotid artery blood flow offer a promising alternative for guiding CPR without interrupting resuscitation. The RescueDoppler system, a newly developed ultrasound Doppler tool, continuously monitors blood flow in the carotid artery during CPR.
研究设计
- 研究类型
- Interventional
- 分配方式
- Na
- 干预模型
- Single Group
- 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
- 否
入选标准
- •Male or female, aged 18 years or older. Subjects experiencing a sudden cardiac arrest, either pre-hospital or in-hospital. Sudden cardiac arrest is defined as the abrupt loss of heart function, breathing, and consciousness.
排除标准
- •Subjects where resuscitation is not continued after the initial application of RescueDoppler or resuscitation efforts are halted due to a do-not-resuscitate order.
- •Subjects deemed unable to comply with the study requirements as determined by the Investigator.
- •Subjects with extensive trauma injuries that prevent proper attachment of the RescueDoppler patch.
研究组 & 干预措施
RescueDoppler patch with probe is attached to patients with cardiac arrest
The RescueDoppler probe and patch are placed on the left side of the patient's neck in both pre-hospital and in-hospital settings. The RescueDoppler system is blinded to the medical personnel during the cardiac arrest and is not used for real-time monitoring. After the cardiac arrest, the velocity curves are processed by the research team and synchronized with the ECG for analysis.
干预措施: RescueDoppler (Device)
RescueDoppler patch with probe is attached to patients with cardiac arrest
The RescueDoppler probe and patch are placed on the left side of the patient's neck in both pre-hospital and in-hospital settings. The RescueDoppler system is blinded to the medical personnel during the cardiac arrest and is not used for real-time monitoring. After the cardiac arrest, the velocity curves are processed by the research team and synchronized with the ECG for analysis.
干预措施: Rescue (Device)
结局指标
主要结局
Number of patients with carotid peak blood flow velocity of more than 20 cm/second during cardiopulmonary resuscitation
时间窗: From enrollment to the end after 12 months
A carotid peak blood flow velocity of zero indicates the absence of spontaneous circulation during cardiopulmonary resuscitation, while velocities exceeding 20 cm/second suggest the presence of spontaneous circulation.
次要结局
- Number of patients with carotid peak blood flow velocity of more than 50 cm/second during chest compressions(From enrollment to the end after 12 months)
