This paper deeply studies the intelligent Home embedded system based on B/S architecture. Firstly, analysis requirement of Home function based on the existing software development mode, and proposed a system framework...This paper deeply studies the intelligent Home embedded system based on B/S architecture. Firstly, analysis requirement of Home function based on the existing software development mode, and proposed a system framework of intelligent Home system, and designed the communication scheme of the whole Home system, also gives the system each function module realization. This paper achieve two basic service system based on Intelligent Home through a series of analysis and design: outdoor remote intelligent Home monitoring service and the indoor intelligent management service.展开更多
随着清洁能源的发展,风电作为一种清洁、可再生的能源,具有巨大的发展潜力。然而,风电的开发需要精确的风能资源测量和评估,以及选择适当的风电场址。因此,开发了基于B/S(Browser/Server,浏览器/服务器)端的风电场规划设计平台。该平台...随着清洁能源的发展,风电作为一种清洁、可再生的能源,具有巨大的发展潜力。然而,风电的开发需要精确的风能资源测量和评估,以及选择适当的风电场址。因此,开发了基于B/S(Browser/Server,浏览器/服务器)端的风电场规划设计平台。该平台提供了多种功能,包括项目管理、风能资源评估、风电场选址、中尺度数据处理和方案管理等。该平台利用GIS(Geographic Information System,地理信息系统)技术和模型计算方法,能够对风能资源进行多方面评估和分析,根据地理信息、环境和建设要求等因素,优化风电场选址。同时,该平台具有用户友好的界面和数据交互功能,使得开发者可以更加便捷地实现风电项目开发。实际应用结果表明,该平台在风电场选址、风电资源评估等方面具有较强的竞争力,能够有效促进风电产业的发展。展开更多
In patients with Alzheimer’s disease,gamma-glutamyl transferase 5(GGT5)expression has been observed to be downregulated in cerebrovascular endothelial cells.However,the functional role of GGT5 in the development of A...In patients with Alzheimer’s disease,gamma-glutamyl transferase 5(GGT5)expression has been observed to be downregulated in cerebrovascular endothelial cells.However,the functional role of GGT5 in the development of Alzheimer’s disease remains unclear.This study aimed to explore the effect of GGT5 on cognitive function and brain pathology in an APP/PS1 mouse model of Alzheimer’s disease,as well as the underlying mechanism.We observed a significant reduction in GGT5 expression in two in vitro models of Alzheimer’s disease(Aβ_(1-42)-treated hCMEC/D3 and bEnd.3 cells),as well as in the APP/PS1 mouse model.Additionally,injection of APP/PS1 mice with an adeno-associated virus encoding GGT5 enhanced hippocampal synaptic plasticity and mitigated cognitive deficits.Interestingly,increasing GGT5 expression in cerebrovascular endothelial cells reduced levels of both soluble and insoluble amyloid-βin the brains of APP/PS1 mice.This effect may be attributable to inhibition of the expression ofβ-site APP cleaving enzyme 1,which is mediated by nuclear factor-kappa B.Our findings demonstrate that GGT5 expression in cerebrovascular endothelial cells is inversely associated with Alzheimer’s disease pathogenesis,and that GGT5 upregulation mitigates cognitive deficits in APP/PS1 mice.These findings suggest that GGT5 expression in cerebrovascular endothelial cells is a potential therapeutic target and biomarker for Alzheimer’s disease.展开更多
文摘This paper deeply studies the intelligent Home embedded system based on B/S architecture. Firstly, analysis requirement of Home function based on the existing software development mode, and proposed a system framework of intelligent Home system, and designed the communication scheme of the whole Home system, also gives the system each function module realization. This paper achieve two basic service system based on Intelligent Home through a series of analysis and design: outdoor remote intelligent Home monitoring service and the indoor intelligent management service.
文摘随着清洁能源的发展,风电作为一种清洁、可再生的能源,具有巨大的发展潜力。然而,风电的开发需要精确的风能资源测量和评估,以及选择适当的风电场址。因此,开发了基于B/S(Browser/Server,浏览器/服务器)端的风电场规划设计平台。该平台提供了多种功能,包括项目管理、风能资源评估、风电场选址、中尺度数据处理和方案管理等。该平台利用GIS(Geographic Information System,地理信息系统)技术和模型计算方法,能够对风能资源进行多方面评估和分析,根据地理信息、环境和建设要求等因素,优化风电场选址。同时,该平台具有用户友好的界面和数据交互功能,使得开发者可以更加便捷地实现风电项目开发。实际应用结果表明,该平台在风电场选址、风电资源评估等方面具有较强的竞争力,能够有效促进风电产业的发展。
基金supported by STI2030-Major Projects,No.2021ZD 0201801(to JG)Shanxi Province Basic Research Program,No.20210302123429(to QS).
文摘In patients with Alzheimer’s disease,gamma-glutamyl transferase 5(GGT5)expression has been observed to be downregulated in cerebrovascular endothelial cells.However,the functional role of GGT5 in the development of Alzheimer’s disease remains unclear.This study aimed to explore the effect of GGT5 on cognitive function and brain pathology in an APP/PS1 mouse model of Alzheimer’s disease,as well as the underlying mechanism.We observed a significant reduction in GGT5 expression in two in vitro models of Alzheimer’s disease(Aβ_(1-42)-treated hCMEC/D3 and bEnd.3 cells),as well as in the APP/PS1 mouse model.Additionally,injection of APP/PS1 mice with an adeno-associated virus encoding GGT5 enhanced hippocampal synaptic plasticity and mitigated cognitive deficits.Interestingly,increasing GGT5 expression in cerebrovascular endothelial cells reduced levels of both soluble and insoluble amyloid-βin the brains of APP/PS1 mice.This effect may be attributable to inhibition of the expression ofβ-site APP cleaving enzyme 1,which is mediated by nuclear factor-kappa B.Our findings demonstrate that GGT5 expression in cerebrovascular endothelial cells is inversely associated with Alzheimer’s disease pathogenesis,and that GGT5 upregulation mitigates cognitive deficits in APP/PS1 mice.These findings suggest that GGT5 expression in cerebrovascular endothelial cells is a potential therapeutic target and biomarker for Alzheimer’s disease.