For high viscosity bulk-copolymerization of octamethylcyclotetrasiloxane and amino-silicone monomer, a multisyphon flow physical model was established.Based on the free volume and chemical reaction kinetic theories, a...For high viscosity bulk-copolymerization of octamethylcyclotetrasiloxane and amino-silicone monomer, a multisyphon flow physical model was established.Based on the free volume and chemical reaction kinetic theories, a new computational model was developed to simulate the multisyphon flow model. As to the new model, the united influence of reaction and diffusion was reviewed and analyzed. The new model was used to simulate bulk- copolymerization of octamethylcyclotetrasiloxane and amino-silicone monomer and agreed well with the results.展开更多
文摘For high viscosity bulk-copolymerization of octamethylcyclotetrasiloxane and amino-silicone monomer, a multisyphon flow physical model was established.Based on the free volume and chemical reaction kinetic theories, a new computational model was developed to simulate the multisyphon flow model. As to the new model, the united influence of reaction and diffusion was reviewed and analyzed. The new model was used to simulate bulk- copolymerization of octamethylcyclotetrasiloxane and amino-silicone monomer and agreed well with the results.
文摘虚拟仿真实训和传统教学方法在4D盆底超声这项高阶医学技术教学培训中应用的情况。方法 采用问卷调查以两种教学方法随机分组进行4D盆底超声技术学习的体验感,调查对象为昆明医科大学影像医学及超声医学研二、研三学生,采用完全随机设计的t检验进行分析评价。结果 ① 本次调查两组学生中,虚拟仿真实训组的学生重复检查吻合率较带教实操组的学生高,2组之间存在统计学差异;②而对于课后自主学习情况,虚拟仿真实训组的学生较带教实操组的学生进行的也更好,2组之间存在统计学差异。结论 虚拟仿真实训对于高阶4D盆底超声医学技术的学习较传统的带教实操学习更有帮助;作为创新的教学方法可以研究推广,以帮助医学生提升学习效率,缩短学习时间,以达到事半功倍的学习效果。
基金This work was supported by the National Key R&D Program of China(No.2022YFB4300905)the National Natural Science Foundation of China(No.61903187)the Natural Science Foundation of Jiangsu Province(No.BK20190414).