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无人机在山区进行自动体外除颤器投递以支持基本生命支持——一项模拟研究。

Automated external defibrillator delivery by drone in mountainous regions to support basic life support - A simulation study.

作者信息

Fischer Philip, Rohrer Ursula, Nürnberger Patrick, Manninger Martin, Scherr Daniel, von Lewinski Dirk, Zirlik Andreas, Wankmüller Christian, Kolesnik Ewald

机构信息

Department of Internal Medicine, Division of Cardiology, Medical University of Graz, Auenbruggerplatz 15, 8036 Graz, Austria.

Austrian Red Cross, Landesverband Kärnten, Grete-Bittner-Straße 9, 9020 Klagenfurt am Wörthersee, Austria.

出版信息

Resusc Plus. 2023 Apr 7;14:100384. doi: 10.1016/j.resplu.2023.100384. eCollection 2023 Jun.

Abstract

BACKGROUND

Out-of-hospital cardiac arrest (OHCA) is associated with poor survival rates. Factors that may enable survival include cardiopulmonary resuscitation (CPR) initiated by bystanders and early use of an automated external defibrillator (AED). This explorative simulation study was conceptualized to test the feasibility of a semi-autonomously operating drone that delivers an AED to a remote emergency location and its bystander-use.

METHODS

Ten paramedics and nineteen laypersons were confronted with a manikin simulating an OHCA as single bystanders within a field test located in a mountainous region between Austria and Slovenia. The scenario included a mock-call to the local emergency response center that dispatched a drone towards the caller's GPS coordinates and supported the ongoing CPR. The outcomes were the successful delivery of the AED, the time to the first shock, hands-off times, and the overall performance of the CPR.

RESULTS

The AED was delivered by drone and used in all 29 scenarios without serious adverse events. The flight time of the drone was in median 5:20 (range: 1:35-8:19) minutes. The paramedics delivered the first shock after a mean of 12:15 ± 2:03 min and hands-off times were 50 ± 22 s. The laypersons delivered the first shock after 14:04 ± 2:10 min and hands-off times were 2:11 ± 0:39 min. All participants felt confident in the handling of the delivered AED.

CONCLUSION

The delivery and usage of an AED via a semi-autonomously flying drone in a remote region is feasible. This approach can lead to early administration of shocks.

摘要

背景

院外心脏骤停(OHCA)的生存率较低。可能提高生存率的因素包括旁观者实施的心肺复苏(CPR)以及早期使用自动体外除颤器(AED)。本探索性模拟研究旨在测试一种半自主操作的无人机将AED运送到偏远紧急地点并供旁观者使用的可行性。

方法

在奥地利和斯洛文尼亚之间的山区进行的一次现场测试中,10名护理人员和19名非专业人员作为单个旁观者面对一个模拟OHCA的人体模型。场景包括向当地应急响应中心进行模拟呼叫,该中心向呼叫者的GPS坐标派遣一架无人机,并支持正在进行的心肺复苏。结果包括AED的成功交付、首次电击时间、无人操作时间以及心肺复苏的整体表现。

结果

无人机在所有29个场景中都成功交付并使用了AED,且未发生严重不良事件。无人机的飞行时间中位数为5:20(范围:1:35 - 8:19)分钟。护理人员平均在12:15 ± 2:03分钟后进行首次电击,无人操作时间为50 ± 22秒。非专业人员在14:04 ± 2:10分钟后进行首次电击,无人操作时间为2:11 ± 0:39分钟。所有参与者对所交付的AED的操作都充满信心。

结论

在偏远地区通过半自主飞行的无人机交付和使用AED是可行的。这种方法可以实现早期电击。

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