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An innovative design for cardiopulmonary resuscitation manikins based on a human-like thorax and embedded flow sensors

机译:基于类人胸部和嵌入式流量传感器的心肺复苏人体模型的创新设计

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摘要

Cardiopulmonary resuscitation manikins are used for training personnel in performing cardiopulmonary resuscitation. State-of-the-art cardiopulmonary resuscitation manikins are still anatomically and physiologically low-fidelity designs. The aim of this research was to design a manikin that offers high anatomical and physiological fidelity and has a cardiac and respiratory system along with integrated flow sensors to monitor cardiac output and air displacement in response to cardiopulmonary resuscitation. This manikin was designed in accordance with anatomical dimensions using a polyoxymethylene rib cage connected to a vertebral column from an anatomical female model. The respiratory system was composed of silicon-coated memory foam mimicking lungs, a polyvinylchloride bronchus and a latex trachea. The cardiovascular system was composed of two sets of latex tubing representing the pulmonary and aortic arteries which were connected to latex balloons mimicking the ventricles and lumped abdominal volumes, respectively. These balloons were filled with Life/form simulation blood and placed inside polyether foam. The respiratory and cardiovascular systems were equipped with flow sensors to gather data in response to chest compressions. Three non-medical professionals performed chest compressions on this manikin yielding data corresponding to force–displacement while the flow sensors provided feedback. The force–displacement tests on this manikin show a desirable nonlinear behaviour mimicking chest compressions during cardiopulmonary resuscitation in humans. In addition, the flow sensors provide valuable data on the internal effects of cardiopulmonary resuscitation. In conclusion, scientifically designed and anatomically high-fidelity designs of cardiopulmonary resuscitation manikins that embed flow sensors can improve physiological fidelity and provide useful feedback data.
机译:心肺复苏人体模型用于培训人员进行心肺复苏。最先进的心肺复苏人体模型仍是解剖学和生理上低保真设计。这项研究的目的是设计一种人体解剖模型,该模型具有很高的解剖和生理保真度,并具有心脏和呼吸系统以及集成的流量传感器,以监测对心肺复苏作出反应的心输出量和空气排量。使用连接到解剖女性模型的椎骨上的聚甲醛肋骨,根据解剖学尺寸设计人体模型。呼吸系统由模拟肺的硅涂层记忆泡沫,聚氯乙烯支气管和乳胶气管组成。心血管系统由两组代表肺动脉和主动脉的乳胶管组成,它们分别与模拟心室和腹部肿块的乳胶气球相连。这些气球充满Life / form模拟血液,并放置在聚醚泡沫内。呼吸和心血管系统配备了流量传感器,以根据胸部按压收集数据。三名非医学专业人员对该人体模型进行了胸部按压,从而产生了与力-位移相对应的数据,而流量传感器提供了反馈。在该人体模型上进行的力-位移测试显示出一种理想的非线性行为,模仿了人类心肺复苏过程中的胸部按压。此外,流量传感器还提供了有关心肺复苏内部效应的有价值的数据。总之,嵌入流量传感器的心肺复苏人体模型的科学设计和解剖学高保真设计可以提高生理保真度并提供有用的反馈数据。

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