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    • 51. 发明授权
    • Policy application rules for automated configuration of software components
    • 自动配置软件组件的策略应用规则
    • US08245191B2
    • 2012-08-14
    • US12167848
    • 2008-07-03
    • Shinichi HiroseNirmal K. MukhiYuichi NakamuraFumiko Satoh
    • Shinichi HiroseNirmal K. MukhiYuichi NakamuraFumiko Satoh
    • G06F15/173G06F9/44G06F17/00H04L29/06G06N5/02
    • G06F8/71
    • A method, system and article of manufacture are disclosed for configuring software application components. The method comprises the steps of developing a set of policy application rules, assembling unconfigured software components into one or more software applications, and applying said application rules to the unconfigured software components to configure said software components. In the preferred embodiment, the applying step includes the steps of passing the unconfigured software components to a policy rule engine, and using said policy rule engine to apply said application rules to the unconfigured software components to produce the configured components. In addition, the method may be done to resolve ambiguities in the software components. In particular, the application rules may be designed to resolve ambiguities in the application of these rules to the unconfigured software components. Also, each application rule preferably includes a condition, an application template, and a policy.
    • 公开了用于配置软件应用组件的方法,系统和制品。 该方法包括以下步骤:开发一组策略应用规则,将未配置的软件组件组装到一个或多个软件应用中,以及将所述应用规则应用于未配置的软件组件以配置所述软件组件。 在优选实施例中,应用步骤包括以下步骤:将未配置的软件组件传递到策略规则引擎,并且使用所述策略规则引擎将所述应用规则应用于未配置的软件组件以产生所配置的组件。 另外,该方法可以用于解决软件组件中的模糊性。 特别地,应用规则可以被设计为解决将这些规则应用于未配置的软件组件的模糊性。 此外,每个应用规则优选地包括条件,应用模板和策略。
    • 52. 发明申请
    • NON-HUMAN MAMMAL MODEL OF EPILEPSY
    • 非人类男性模型
    • US20110041193A1
    • 2011-02-17
    • US12867329
    • 2009-02-10
    • Shinichi HiroseSunao Kaneko
    • Shinichi HiroseSunao Kaneko
    • A01K67/00C12N15/63C07H21/04C12Q1/68
    • C07K14/70571A01K67/0275A01K2217/052A01K2217/056A01K2227/105A01K2267/0306A01K2267/0356C12N15/8509C12Q1/6883C12Q2600/156
    • The present invention provides a genuine epilepsy model animal as an improvement over conventional epilepsy model animals which are socalled seizures model animals mainly causing seizure attacks to be forcibly induced. Also provided is a method that allows for easy identification of the recombinants.The model non-human mammalian animal for human epilepsy according to the present invention is a human epilepsy model non-human mammalian animal, such as a rat model, that has the same genetic defects as those in human epilepsy. The model non-human mammalian animal has a mutated gene obtained by introducing a genetic mutation to the non-human mammalian DNA of the α4 subunit (CHRNA4) or β2 subunit (CHRNB2) of the neuronal nicotinic acetylcholinergic receptor gene associated with human autosomal dominant nocturnal frontal lobe epilepsy, and by introducing a specific probe. The human epilepsy model non-human mammalian animal of the present invention allows for easy identification of the recombinants.
    • 本发明提供了一种真正的癫痫模型动物,作为对传统癫痫模型动物的改进,所述动物是所谓的癫痫发作模型,主要导致癫痫发作被强制诱导。 还提供了允许容易地鉴定重组体的方法。 根据本发明的用于人类癫痫的非人哺乳动物模型是与人癫痫相同的遗传缺陷的人类癫痫模型非人哺乳动物,例如大鼠模型。 模型非人哺乳动物具有通过向与人常染色体相关的神经元烟碱乙酰胆碱能受体基因的α4亚基(CHRNA4)或“bgr2”亚基(CHRNB2)的非人哺乳动物DNA引入遗传突变而获得的突变基因 显着的夜间额叶癫痫,并引入特异性探针。 本发明的人类癫痫模型非人哺乳动物允许容易地鉴定重组体。
    • 58. 发明申请
    • Program editing apparatus, program editing method, and program
    • 程序编辑装置,程序编辑方法和程序
    • US20050086631A1
    • 2005-04-21
    • US10739818
    • 2003-12-18
    • Takuya NakaikeGoh KondohFumihiko KitayamaShinichi Hirose
    • Takuya NakaikeGoh KondohFumihiko KitayamaShinichi Hirose
    • G06F9/44
    • G06F8/75
    • A program editing apparatus includes a user interface control unit, a JSP analysis unit, and a split execution unit. The user interface control unit accepts an input of a split object instruction which specifies a portion to be split off from a JSP file to be processed. The JSP analysis unit determines an accompanying split portion which is split off together with the portion specified by the split object instruction. The split execution unit splits off the portion specified by the split object instruction and the accompanying split portion from the original JSP file. The JSP analysis unit analyzes dependence of variables and objects in the JSP file and splits off a copyable portion by copying. Thus, a program file after split is ensured to operate the same as the program file to be processed.
    • 程序编辑装置包括用户界面控制单元,JSP分析单元和分割执行单元。 用户界面控制单元从要处理的JSP文件接受指定要分割的部分的分割对象指令的输入。 JSP分析单元确定与分割对象指令指定的部分一起分离的伴随分割部分。 分割执行单元从原始JSP文件中分离由分割对象指令指定的部分和伴随的分割部分。 JSP分析单元分析JSP文件中变量和对象的依赖关系,并通过复制分割可复制部分。 因此,分割后的程序文件被确保与要处理的程序文件相同。