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ELISA法对孕前、孕中妇女及新生儿维普创免疫水平研究 被引量:2
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作者 王朝元 尹玉莹 +3 位作者 魏天河 曾强 王鸣 王博 《中南民族大学学报(自然科学版)》 CAS 2020年第6期591-595,共5页
目的:通过检测孕前、孕期育龄妇女及新生儿“维普创”六项(水痘带状孢疹病毒VZV、百日咳类毒素PT、破伤风类毒素TT、风疹病毒RV、麻疹病毒MV和腮腺炎病毒MuV)的IgG抗体水平,为孕前、孕期育龄妇女及新生儿制定免疫策略及干预措施提供科... 目的:通过检测孕前、孕期育龄妇女及新生儿“维普创”六项(水痘带状孢疹病毒VZV、百日咳类毒素PT、破伤风类毒素TT、风疹病毒RV、麻疹病毒MV和腮腺炎病毒MuV)的IgG抗体水平,为孕前、孕期育龄妇女及新生儿制定免疫策略及干预措施提供科学依据.方法:以在中国医科大学附属盛京医院门诊进行孕前检查、孕中产前检查的妇女和新生儿人群作为调查对象,采静脉血分离血清,使用ELISA方法进行“维普创”六项IgG抗体定性和定量检测分析.结果:检测人群VZV、PT、TT、RV、MV、MuV的IgG抗体阳性率分别为75.08%、57.38%、43.28%、79.51%、90.66%和76.72%.定量检测结果显示,6种IgG抗体滴度均处于中低水平.孕前及孕期妇女VZV、RV、MV、MuV的IgG抗体阳性率较高,但定量检测抗体滴度均处于中低水平.PT、TT的IgG抗体阳性率较低.结论:需进一步探讨和制定针对孕前、孕期妇女和新生儿进行相关疫苗强化免疫干预的可行性策略和措施. 展开更多
关键词 ELISA 维普创 IGG抗体水平 孕前、孕中妇女及新生儿
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Performance Evaluation and Optimization of a Novel System Combining a Photovoltaic/Thermal Subsystem&an Organic Rankine Cycle Driven by Solar Parabolic Trough Collector 被引量:1
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作者 LIU Zhijian wei tianhe +3 位作者 WU Di ZHANG Yulong LI Guiqiang YANG Xinyan 《Journal of Thermal Science》 SCIE EI CAS CSCD 2021年第5期1513-1525,共13页
A novel coupling system that combines a photovoltaic/thermal(PV/T)subsystem and an Organic Rankine Cycle(ORC)driven by solar parabolic trough collector(PTC)is presented in this paper.The mathematical model is initiall... A novel coupling system that combines a photovoltaic/thermal(PV/T)subsystem and an Organic Rankine Cycle(ORC)driven by solar parabolic trough collector(PTC)is presented in this paper.The mathematical model is initially built.On the basis,the influence of area ratio of two collectors(PV/T and PTC)on the performance of system is discussed.The results show that the optimal area ratio of PV/T to PTC is 8:2,which can achieve the maximum energy output.Moreover,the performance of the coupling system and two independent systems(PV/T and ORC system)are compared and analyzed.The results show that the coupling system is more reliable and its total output energy(heat and electricity)is the highest,compared with the other two independent systems.The solar energy utilization efficiency of the coupling system is 40%higher than that of the other two independent systems in the steady-state simulation.Moreover,the annual output energy per unit area collector of the coupling system is 13%higher than that of the other two independent systems in the dynamic simulation.Furthermore,in the dynamic simulation of a typical day,the PV panels’temperature of the coupling system is 5℃–7℃ lower than that of the independent PV/T system.It means that the power generation efficiency of PV panels can be increased by 1.5%–3.5%.This study aims to explore the operation characteristics of the novel solar energy utilization coupling system and promote the development of renewable energy utilization models,which provides a reference for the design and optimization of related energy systems. 展开更多
关键词 solar energy utilization efficiency photovoltaic/thermal Organic Rankine Cycle novel coupling system area ratio
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