心肺复苏(cardiopulmonary resuscitation,CPR)是抢救生命的关键技术之一。本文旨在多方面探究CPR培训的智能化研究现状,并为未来CPR教学和实践的智能化发展方向提供建议。在web of science核心库近五年的文章中搜索CPR训练和CPR智能化...心肺复苏(cardiopulmonary resuscitation,CPR)是抢救生命的关键技术之一。本文旨在多方面探究CPR培训的智能化研究现状,并为未来CPR教学和实践的智能化发展方向提供建议。在web of science核心库近五年的文章中搜索CPR训练和CPR智能化设备,获得31篇相关文献。CPR智能化涉及教学、辅助、统计和监测等多方面。现实增强(AR)技术满足了CPR培训互动中环境模拟等新需求。智能设备及新算法提高CPR的培训质量。本文简述了应对心脏骤停一些需要注意的问题。健全的急救保障系统对提高心脏骤停患者的生存率具有很大帮助。展开更多
A new method for recharging active medical implant(AMI)in vitro based on incoherent light source and results of the simulation experiments are proposed.Firstly,the models of the AMI recharging method based on incohe...A new method for recharging active medical implant(AMI)in vitro based on incoherent light source and results of the simulation experiments are proposed.Firstly,the models of the AMI recharging method based on incoherent light source in vitro are developed,which include the models of an incoherent light source and skin tissue.Secondly,simulation experiments of the incoherent light source of the AMI recharging process in vitro based on the Monte Carlo(MC)method are carried out.Finally,absorbed fractions of different layers and distributions of density along x axis of the tissue model and other important conclusions have been achieved.展开更多
文摘心肺复苏(cardiopulmonary resuscitation,CPR)是抢救生命的关键技术之一。本文旨在多方面探究CPR培训的智能化研究现状,并为未来CPR教学和实践的智能化发展方向提供建议。在web of science核心库近五年的文章中搜索CPR训练和CPR智能化设备,获得31篇相关文献。CPR智能化涉及教学、辅助、统计和监测等多方面。现实增强(AR)技术满足了CPR培训互动中环境模拟等新需求。智能设备及新算法提高CPR的培训质量。本文简述了应对心脏骤停一些需要注意的问题。健全的急救保障系统对提高心脏骤停患者的生存率具有很大帮助。
基金Supported by the Excellent Young Scholars Research Fund of Beijing Institute of Technology(3040012211310)the Basic Research Fund of Beijing Institute of Technology(20120442010)
文摘A new method for recharging active medical implant(AMI)in vitro based on incoherent light source and results of the simulation experiments are proposed.Firstly,the models of the AMI recharging method based on incoherent light source in vitro are developed,which include the models of an incoherent light source and skin tissue.Secondly,simulation experiments of the incoherent light source of the AMI recharging process in vitro based on the Monte Carlo(MC)method are carried out.Finally,absorbed fractions of different layers and distributions of density along x axis of the tissue model and other important conclusions have been achieved.