首页> 外文会议>The 3rd International Conference on Bioinformatics and Biomedical Engineering(iCBBE 2009)(第三届生物信息与生物医学工程国际会议)论文集 >A Simulator of Human Chest that Simulated Force-Sternal Displacement Relationship during Cardiopulmonary Resuscitation
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A Simulator of Human Chest that Simulated Force-Sternal Displacement Relationship during Cardiopulmonary Resuscitation

机译:模拟心肺复苏过程中力与胸骨移位关系的人体胸部模拟器

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Survival from cardiac arrest is dependent on timely cardiopulmonary resuscitation (CPR). Experimental and modeling work had shown that the relationship between compression force and sternal displacement had a tendency of hysteresis curve, which in manikins was rather lineal. To improve the mechanical characteristics of the manikins, firstly, a simplified model of the human chest's mechanical during CPR was deduced based on Gruben's pre-result. After that, a variable-stiffness springs group-damper system was introduced to simulate the human chest. Through designing springs, damper, and the whole structure, the system was realized and tested. The test results showed that there were nonlinear elasticity and adequate viscosity in this system, whose coefficients were adjacent to Gruben's ‘typical' human. The simulation method could be used directly in manikin, whose mechanical character may be improved and then more adequate training may be provided.
机译:心脏骤停的生存取决于及时的心肺复苏(CPR)。实验和建模工作表明,压力与胸骨位移之间的关系具有滞后曲线的趋势,在人体模型中这是线性的。为了改善人体模型的力学特性,首先,根据格鲁本的预结果推导了心肺复苏过程中人胸部力学的简化模型。之后,引入了变刚度弹簧群阻尼器系统来模拟人的胸部。通过设计弹簧,减震器和整个结构,该系统得以实现和测试。测试结果表明,该系统具有非线性弹性和足够的粘度,其系数与Gruben的“典型”人相邻。该仿真方法可以直接用于人体模型中,可以改善其力学特性,然后可以提供更充分的训练。

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