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    • 105. 发明授权
    • Methods and systems for managing informed consent processes
    • 管理知情同意程序的方法和系统
    • US07801747B2
    • 2010-09-21
    • US11438677
    • 2006-05-22
    • Andrea CalifanoAristidis FloratosDavid WangPeter YoungArthur Holden
    • Andrea CalifanoAristidis FloratosDavid WangPeter YoungArthur Holden
    • G06F19/00
    • G06Q50/24G06F19/00G06F19/28G06Q50/22G16H10/20G16H10/40G16H10/60G16H40/20
    • The systems and methods provide a dynamic process for obtaining and managing informed consent documentation. In general, the dynamic informed consent process (DICP) makes use of an intermediary organization, e.g., a trusted intermediary, which: (a) provides ICFs which have been dynamically generated for a specified trial or medical procedure and based on particular state or federal requirements, if any; and (b) archives copies of signed ICFs. In certain preferred embodiments, there may also be a procedure to provide training materials, such as audio or video presentations, to be viewed by prospective participants. In certain preferred embodiments, the process also includes contacting subjects who have signed ICFs in the event that there is a change of circumstance which the subject may deem material to whether s/he would continue to consent, or whether the participant needs to provide a different type of consent to participate in particular event or trial.
    • 系统和方法为获取和管理知情同意文件提供了一个动态过程。 一般来说,动态知情同意程序(DICP)利用中间组织,例如可信赖的中介机构,其中:(a)提供为指定的试验或医疗程序动态生成的ICF,并基于特定的州或联邦 要求,如果有的话; 和(b)签署的ICF的档案副本。 在某些优选实施例中,还可以存在提供将由潜在参与者观看的训练材料(例如音频或视频呈现)的过程。 在某些优选实施例中,该过程还包括在主体可能认为材料是否被继续同意的情况发生变化的情况下联系已经签署了ICF的受试者,或者参与者是否需要提供不同的 同意参加特定事件或审判的类型。
    • 106. 发明授权
    • Modular server architecture for multi-environment HTTP request processing
    • 用于多环境HTTP请求处理的模块化服务器架构
    • US07721278B2
    • 2010-05-18
    • US11140192
    • 2005-05-27
    • Bilal AlamErik B. OlsonAnil K. RuiaMichael D. VolodarskyDavid WangJaroslav Dunajsky
    • Bilal AlamErik B. OlsonAnil K. RuiaMichael D. VolodarskyDavid WangJaroslav Dunajsky
    • G06F9/44G06F9/45G06F3/00
    • G06F9/44521H04L67/02
    • Methods are provided for utilizing a modular server architecture for processing requests for services, such as authorization and authentication, in a web server. The modular server architecture includes self-contained modular components that can be plugged in and out of the web server, as needed, to provide requested web services. The modular server architecture is also extensible in that it provides set of server APIs for processing requests for supporting built-in server functionality as well as functionality provided by third party modular components. The modular server architecture also supports the integration of request processing tasks for both native and managed modular components, such as ASP.NET modules, by virtue of a managed module host component. The modular server architecture also optimizes server performance by only providing modular component functionality when needed. By utilizing the modular server architecture, server functionality is extended, duplication of request processing tasks is eliminated and performance administrative overhead is reduced.
    • 提供了用于利用模块化服务器架构处理Web服务器中的服务请求(如授权和身份验证)的方法。 模块化服务器体系结构包括独立的模块化组件,可根据需要插入和移出Web服务器,以提供所需的Web服务。 模块化服务器架构也是可扩展的,因为它提供了一组服务器API来处理用于支持内置服务器功能的请求以及由第三方模块化组件提供的功能。 模块化服务器架构还支持通过托管模块主机组件对本机和托管模块化组件(如ASP.NET模块)的请求处理任务进行集成。 模块化服务器架构还可以在需要时提供模块化组件功能来优化服务器性能。 通过利用模块化服务器架构,扩展了服务器功能,消除了重复的请求处理任务,降低了性能管理开销。
    • 110. 发明授权
    • Background ephemeris download in navigational receivers
    • 背景星历在导航接收器中下载
    • US07436357B2
    • 2008-10-14
    • US11561749
    • 2006-11-20
    • Chi-Shin WangDavid WangZongde Qiu
    • Chi-Shin WangDavid WangZongde Qiu
    • G01S5/14G01S1/02
    • G01S19/34G01S19/258
    • The present invention provides methods and systems for keeping the ephemeris in a navigational receiver current to achieve fast TTFF without the need for connecting to an aiding network or remote server. In an embodiment, the receiver keeps the ephemeris current by downloading the ephemeris in the background. In the preferred embodiment, the receiver uses a background sleep/wake up process to download current ephemeris with minimal power drain. In this embodiment, the receiver alternates between a sleep mode and a wake up mode. During the wake up mode, the receiver attempts to download current ephemeris. The receiver then goes back to the sleep mode until the next wake up to conserve power. The receiver may wake up from the sleep mode to download the ephemeris when the stored ephemeris is no longer current or the ephemeris broadcasted from a satellite has been updated or based on receiver usage patterns.
    • 本发明提供了用于将星历保持在导航接收机当中以在不需要连接到辅助网络或远程服务器的情况下实现快速TTFF的方法和系统。 在一个实施例中,接收器通过在背景中下载星历来保持星历当前的状态。 在优选实施例中,接收机使用背景睡眠/唤醒过程以最小的功率耗散来下载当前星历。 在该实施例中,接收器在睡眠模式和唤醒模式之间交替显示。 在唤醒模式下,接收端尝试下载当前星历。 接收器然后回到睡眠模式,直到下一次唤醒以节省电量。 当存储的星历不再是当前的或者从卫星广播的星历表已被更新或基于接收机使用模式时,接收机可以从休眠模式唤醒以下载星历。