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Simulation of an electro-mechanical resuscitation device for cardiopulmonary resuscitation

机译:用于心肺复苏的机电复苏装置的仿真

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Application of cardiopulmonary resuscitation to people suffering from cardiac arrest has become an effective way of increasing chances of survival. Current CPR is done manually, however new electro-mechanical resuscitation devices are capable of providing chest compressions at a constant rate and depth, even when the patient is being transported. These new devices give the possibility to generate different compression waveforms additional from the sinus shape given under manual compressions and at different rates. For the exploration of this aspect a simulation system is presented, based on a mathematical model and a simulation engine. This system is capable of generating different scenarios simultaneously. Several waveforms were introduced into the model and the cardiac output of each shape is presented. Results show that a trapezoidal waveform gave better performance in terms of cardiac output.
机译:对心跳骤停的人进行心肺复苏已成为增加生存机会的有效途径。当前的心肺复苏术是手动完成的,但是即使在运送患者时,新的机电复苏设备也能够以恒定的速率和深度提供胸部按压。这些新设备使在手动压缩下以不同速率产生的窦形之外,还可以生成不同的压缩波形。为了探索这一方面,提出了一种基于数学模型和仿真引擎的仿真系统。该系统能够同时生成不同的场景。模型中引入了几个波形,并显示了每种形状的心输出量。结果表明,梯形波形在心输出量方面具有更好的性能。

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