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    • 74. 发明申请
    • Techniques for reducing thread overhead for systems with multiple multi-theaded processors
    • 用于减少具有多个多重处理器的系统的线程开销的技术
    • US20070283357A1
    • 2007-12-06
    • US11446609
    • 2006-06-05
    • Robert JeterJohn MarshallWilliam LeeTrevor Garner
    • Robert JeterJohn MarshallWilliam LeeTrevor Garner
    • G06F9/46
    • G06F9/5027
    • Techniques for processing requests from a processing thread for a shared resource shared among threads on one or more processors include receiving a bundle of requests from a portion of a thread that is executed during a single wake interval on a particular processor. The bundle includes multiple commands for one or more shared resources. The bundle is processed at the shared resource(s) to produce a bundle result. The bundle result is sent to the particular processor. The thread undergoes no more than one wake interval to sleep interval cycle while the bundle commands are processed at the shared resource(s). These techniques allow a lock for shared resource(s) to be obtained, used and released all while the particular thread is sleeping, so that locks are held for shorter times than in conventional approaches. Using these techniques, line rate packet processing is more readily achieved in routers with multiple multi-threaded processors.
    • 用于处理来自处理线程的用于在一个或多个处理器上的线程之间共享的共享资源的请求的技术包括从在特定处理器上的单个唤醒间隔期间执行的线程的一部分接收一束请求。 捆绑包包含一个或多个共享资源的多个命令。 在共享资源处理捆绑包以产生捆绑结果。 捆绑结果发送到特定的处理器。 线程经历不超过一个唤醒间隔到休眠间隔周期,而束命令在共享资源处被处理。 这些技术允许在特定线程正在休眠期间获得,使用和释放共享资源的锁定,使得锁比一般方法保持更短的时间。 使用这些技术,在具有多个多线程处理器的路由器中更容易实现线路速率分组处理。
    • 80. 发明授权
    • Protein biopolymer markers predictive of type II diabetes
    • 预测II型糖尿病的蛋白质生物聚合物标记物
    • US07125678B2
    • 2006-10-24
    • US09993393
    • 2001-11-23
    • George JackowskiJohn Marshall
    • George JackowskiJohn Marshall
    • G01N33/53G01N33/543
    • C07K14/47Y10T436/24Y10T436/255
    • The instant invention involves the use of a combination of preparatory steps in conjunction with mass spectroscopy and time-of-flight detection procedures to maximize the diversity of biopolymers which are verifiable within a particular sample. The cohort of biopolymers verified within such a sample is then viewed with reference to their ability to evidence at least one particular disease state; thereby enabling a diagnostician to gain the ability to characterize either the presence or absence of at least one disease state relative to recognition of the presence and/or the absence of the biopolymer, predict disease risk assessment, and develop therapeutic avenues against the disease.
    • 本发明涉及使用组合的准备步骤与质谱法和飞行时间检测程序的组合,以使特定样品中可验证的生物聚合物的多样性最大化。 然后,在这样一个样本中验证的生物聚合物队列参照其证明至少一种特定疾病状态的能力; 从而使得诊断者能够获得表征与识别生物聚合物的存在和/或不存在相关的至少一种疾病状态的存在或不存在的能力,预测疾病风险评估以及开发针对该疾病的治疗途径。