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Automated closed-loop management of body temperature using forced-air blankets: preliminary feasibility study in a porcine model

机译:使用强制通风毯自动进行体温闭环管理:猪模型的初步可行性研究

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Management of a patient’s body temperature is an important aspect of care that should be addressed by targeted temperature management (TTM). Often, non-invasive methods like forced-air blankets are used. Especially in the operating room this management may be a subsidiary and repetitive task requiring constant observation of the patient’s body temperature and adaption using the limited set of available settings. Thus, automation of TTM is a feasible target to improve patient outcome and reduce caregiver workload. A Philips IntelliVue MP 50 patient monitor with an arterial PiCCO catheter system was used to measure patient blood temperature. Thermal management was performed with a 3M Bair Hugger 755 warming unit with forced air blankets. The warming unit was extended by a computer interface to allow for remote and automated control. A proposed closed-loop algorithm reads the measured temperature and performs automated control of the 3M Bair Hugger. Evaluation was performed in an experimental intensive care setting for animal studies. Two fully automated trials are compared with two manual and two uncontrolled trials in the same study setting using six female pigs for prolonged observation times of up to 90 hours in each trial. The developed system and proposed algorithm allow more precise temperature management by keeping a set target temperature within a range of ±?0.5 °C in 88% of the observation time and within a range of ±?1.0 °C at all times. The proposed algorithm yielded better performance than did manual control or uncontrolled trials. It was able to adapt to individual patient needs as it is more dynamic than look-up table approaches with fixed settings for various temperatures. Closed-loop TTM using non-invasive forced-air warming blankets was successfully tested in a porcine study with the proposed hardware interface and control algorithm. This automation can be beneficial for patient outcome and can reduce caregiver workload and patient risk in clinical settings. As temperature readings are most often available, existing devices like the 3M Bair Hugger can easily be expanded. However, even if clinical application is feasible, open questions regarding approval and certification of such automated systems within the current legal situation still need to be answered.
机译:病人体温的管理是护理的重要方面,应该通过目标温度管理(TTM)解决。通常,使用非侵入性方法,如强制通风毯。特别是在手术室中,这种管理可能是一项次要的重复性任务,需要使用有限的可用设置来持续观察患者的体温和适应情况。因此,TTM自动化是改善患者预后并减少护理人员工作量的可行目标。具有动脉PiCCO导管系统的Philips IntelliVue MP 50患者监护仪用于测量患者的血液温度。热管理是通过带有强制气垫的3M Bair Hugger 755加热装置进行的。通过计算机界面扩展了加热单元,以实现远程和自动控制。提出的闭环算法读取测得的温度并执行3M Bair Hugger的自动控制。在用于动物研究的实验性重症监护环境中进行评估。在同一研究环境中,使用六头雌猪将两项全自动试验与两项手动试验和两项非对照试验进行了比较,每项试验的观察时间长达90小时。通过在88%的观察时间内将设定目标温度始终保持在±?0.5°C范围内以及始终保持在±?1.0°C范围内,所开发的系统和提出的算法可以实现更精确的温度管理。与人工控制或非控制试验相比,该算法具有更好的性能。它比针对固定温度设置的查找表方法更具动态性,因此能够适应个体患者的需求。使用建议的硬件接口和控制算法,在猪研究中成功测试了使用非侵入式强制通风毯的闭环TTM。这种自动化可以对患者的结局有益,并可以减少护理人员的工作量和临床环境中的患者风险。由于温度读数最常用,因此可以轻松扩展3M Bair Hugger等现有设备。但是,即使临床应用是可行的,仍需要回答有关在当前法律情况下对此类自动化系统的批准和认证的未解决问题。

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