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    • 31. 发明申请
    • Active Defense Method on The Basis of Cloud Security
    • 基于云安全的主动防御方法
    • US20130174257A1
    • 2013-07-04
    • US13817577
    • 2011-08-08
    • Hongyi ZhouWenbin ZhengHe YuPaul Fan
    • Hongyi ZhouWenbin ZhengHe YuPaul Fan
    • G06F21/56
    • G06F21/562G06F21/56G06F21/567G06F2221/033H04L63/1416H04L63/1425H04L63/145
    • The present invention relates to an active defense method based on cloud security comprising: a client collecting and sending a program behavior launched by a program thereon and/or a program feature of the program launching the program behavior to a server; with respect to the program feature and/or the program behavior sent by the client, the server performing an analysis and comparison in its database, making a determination on the program based on the comparison result, and feeding back to the client; based on the feedback determination result, the client deciding whether to intercept the program behavior, terminate execution of the program and/or clean up the program, and restore the system environment. The invention introduces a cloud security architecture, and employs a behavior feature based on active defense to search and kill a malicious program, thereby ensuring network security.
    • 本发明涉及一种基于云安全的主动防御方法,包括:客户端收集和发送由其上的程序启动的程序行为和/或将程序行为发送到服务器的程序特征; 对于客户端发送的程序特征和/或程序行为,服务器在其数据库中执行分析和比较,基于比较结果确定程序,并反馈给客户端; 基于反馈确定结果,客户端决定是否拦截程序行为,终止程序的执行和/或清理程序,并恢复系统环境。 本发明引入云安全架构,采用基于主动防御的行为特征来搜索和杀死恶意程序,从而确保网络安全。
    • 35. 发明申请
    • Method of Drug Delivery
    • 药物递送方法
    • US20110008446A1
    • 2011-01-13
    • US12498698
    • 2009-07-07
    • Chris C. YuHe Yu
    • Chris C. YuHe Yu
    • A61K9/14A61P43/00
    • A61K9/0097
    • A drug delivery method for effective drug application is disclosed in this invention. In this method, a micro-carrier delivers an encapsulated, desired drug directly to targeted sites without significant interactions with other components in the biological system in the pathway. In one embodiment, a micro-carrier containing encapsulated drug is first delivered to the general area for treatment. It then scans the area and selectively attaches itself the cell site or organ location to be treated. Finally, the desired drug contained in the micro-carrier is released to the attached cell or organ. In another embodiment, a micro-device is first used to process the general area to be treated to enhance differentiation in properties (such as surface charge) between healthy cells and unhealthy cells (such as cancer cells). Drug encapsulated in the micro-carrier is next applied to preferentially attach onto the targeted sites (such as cancer cell sites) to be treated. Finally, drug is released from the micro-carrier onto the sites to be treated. Such micro-carrier preferably contains multiple functions comprised of at least two functions from the group of sensing, analyzing, logic processing, surface treatment, position detection, motion, injecting, delivering, cutting functions, removing functions, biodegradation and disintegration.
    • 在本发明中公开了用于有效药物应用的药物递送方法。 在该方法中,微载体将封装的期望药物直接递送到靶位点,而与途径中的生物系统中的其它组分没有明显的相互作用。 在一个实施方案中,首先将含有包封药物的微载体递送至一般区域进行处理。 然后扫描该区域并选择性地将其固定在待处理的细胞部位或器官位置。 最后,将包含在微载体中的所需药物释放到附着的细胞或器官中。 在另一个实施方案中,微装置首先用于处理待处理的一般区域以增强健康细胞与不健康细胞(例如癌细胞)之间的性质(例如表面电荷)的分化。 封装在微载体中的药物接下来应用于优先附着到待治疗的靶位点(如癌细胞部位)上。 最后,将药物从微载体释放到待治疗的部位上。 这种微载体优选包含多个功能,其包括来自感测,分析,逻辑处理,表面处理,位置检测,运动,注射,递送,切割功能,去除功能,生物降解和分解的组中的至少两个功能。