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    • 3. 发明申请
    • RESOURCE COVERAGE AND ANALYSIS
    • 资源覆盖与分析
    • US20100138833A1
    • 2010-06-03
    • US12325291
    • 2008-12-01
    • Timothy C. FranklinPoon RojanasoonthonBrian WangOliver Szimmetat
    • Timothy C. FranklinPoon RojanasoonthonBrian WangOliver Szimmetat
    • G06F9/46
    • G06F11/3676G06F11/3409G06F11/3466
    • User interfaces called by a target application can be quickly and efficiently identified and stored for future resource coverage analysis. User interfaces of the target application that are accessed by users executing the target application on their computing device can be automatically tracked during execution of the target application. Information gathered on user interfaces of a target application and accessed user interfaces of the target application can be employed to generate one or more reports. Generated reports on user interface usage can be used to, e.g., identify the application resources to localize, prioritize the application resources to localize, discern application resource trends for, e.g., maintenance and upgrade activities, detect unused application resources, and select appropriate application resources for test scenarios.
    • 目标应用程序调用的用户界面可以快速有效地识别和存储,以便将来进行资源覆盖分析。 可以在执行目标应用程序期间自动跟踪目标应用程序在其计算设备上执行目标应用程序的用户访问的用户界面。 可以使用在目标应用程序的用户界面上收集的信息和目标应用程序的访问用户界面来生成一个或多个报告。 生成的用户界面使用报告可用于例如识别应用程序资源进行本地化,优先考虑应用程序资源进行本地化,识别应用程序资源趋势,例如维护和升级活动,检测未使用的应用程序资源,以及选择适当的应用程序资源 用于测试场景。
    • 4. 发明授权
    • Device for preventing short nails of a nail gun from being deadlocked
    • 用于防止钉枪短钉的装置处于死锁状态
    • US06896165B1
    • 2005-05-24
    • US10805349
    • 2004-03-22
    • Brian Wang
    • Brian Wang
    • B25C1/18B25C5/16B27F7/00
    • B25C5/1665B25C5/1658
    • A device for preventing short nails of a nailing gun from being deadlocked includes a slot-sealing member provided under the gunpoint of a nailing gun. The slot sealing member has its topside formed with an elongate slot sealing portion for sealing up the front slot of the nail row inlet of the gunpoint when the slot sealing member is pushed inward, preventing a short nail from being deadlocked when it is struck in a work. When the slot sealing member is pushed outward, its sealing portion will be moved away from the front slot of the nail inlet to completely open the nail row inlet for facilitating loading a long nail formed in a row in the gunpoint, unnecessary to disassemble the slot sealing member from the gunpoint when a row of long nails and short nails are loaded alternately, and easy and quick in operating.
    • 用于防止钉枪的短钉的装置处于死锁状态,包括设置在钉枪的枪口下方的狭槽密封构件。 狭缝密封构件的顶部形成有细长的狭缝密封部分,用于当狭缝密封构件被向内推动时密封枪口的钉排入口的前槽,防止短钉在被撞击时被锁定 工作。 当狭槽密封构件被向外推动时,其密封部分将移动远离指甲入口的前槽,以完全打开指甲入口,以便于在枪口中装载形成在一排中的长指甲,不需要拆卸狭槽 当一排长钉和短指甲交替装载时,枪口处的密封件,操作方便快捷。
    • 5. 发明授权
    • System and method for automatic determination of the physical location of data center equipment
    • 自动确定数据中心设备物理位置的系统和方法
    • US08737168B2
    • 2014-05-27
    • US12582480
    • 2009-10-20
    • Siva SomasundaramNaim R. MalikBrian Wang
    • Siva SomasundaramNaim R. MalikBrian Wang
    • G01S15/00
    • G01S5/22H05K7/1498
    • The invention is directed to a system and method for automatic discovery of the physical location of at least one device in a data center, the device having an associated ultrasonic emitter. The system generally includes a plurality of ultrasonic detectors having known locations in the data center. A controller initiates the generation of an ultrasonic signal from an ultrasonic emitter associated with a device under test. Time of arrival circuitry generates time of arrival information associated with each ultrasonic detector based on the time of receipt of the ultrasonic signal. The controller determines the location of the device under test based on the known location of the ultrasonic detectors within the data center and the time of arrival information associated with each ultrasonic detector.
    • 本发明涉及一种用于自动发现数据中心中的至少一个设备的物理位置的系统和方法,该设备具有相关联的超声发射器。 该系统通常包括在数据中心中具有已知位置的多个超声波检测器。 控制器从与被测器件相关联的超声波发射器发起超声波信号的产生。 到达电路基于超声波信号的接收时间,生成与每个超声波检测器相关联的到达时间信息。 控制器基于数据中心内的超声波检测器的已知位置和与每个超声波检测器相关联的到达时间来确定被测设备的位置。
    • 6. 发明授权
    • Method for verification of intensity modulated radiation therapy
    • 强度调制放射治疗的验证方法
    • US07450687B2
    • 2008-11-11
    • US11529906
    • 2006-09-29
    • Inhwan YeoBrian Wang
    • Inhwan YeoBrian Wang
    • A61N5/10
    • A61N5/1031A61N5/1042A61N5/1048
    • An accurate method for inversely verifying a therapeutic radiation dose delivered to a patient via an x-ray delivery system without involving any computational iteration was developed. The usage of it includes detecting the transmitted radiation dose image after passage through the patient, imaging the patient during treatment to anatomically record information of the patient, followed by inversely verifying through use of both the detected radiation image and the imaging data, the actual radiation dose delivered to the patient, and comparing the level of the dose delivered to a previously planned dose to determine whether the planned dose was delivered, or whether an overdose or underdose occurred.
    • 开发了一种用于逆向验证通过x射线输送系统递送给患者而不涉及任何计算迭代的治疗辐射剂量的准确方法。 其使用包括在通过患者之后检测透射的辐射剂量图像,在治疗期间对患者进行成像以解剖学记录患者的信息,然后通过使用检测到的放射线图像和成像数据,实际辐射 递送给患者的剂量,并将输送的剂量水平与先前计划的剂量进行比较,以确定计划的剂量是否被递送,或者是否发生过量或过量的药物。
    • 7. 发明申请
    • Method for verification of intensity modulated radiation therapy
    • 强度调制放射治疗的验证方法
    • US20070071169A1
    • 2007-03-29
    • US11529906
    • 2006-09-29
    • Inhwan YeoBrian Wang
    • Inhwan YeoBrian Wang
    • A61N5/10
    • A61N5/1031A61N5/1042A61N5/1048
    • An accurate method for inversely verifying a therapeutic radiation dose delivered to a patient via an x-ray delivery system without involving any computational iteration was developed. The usage of it includes detecting the transmitted radiation dose image after passage through the patient, imaging the patient during treatment to anatomically record information of the patient, followed by inversely verifying through use of both the detected radiation image and the imaging data, the actual radiation dose delivered to the patient, and comparing the level of the dose delivered to a previously planned dose to determine whether the planned dose was delivered, or whether an overdose or underdose occurred.
    • 开发了一种用于逆向验证通过x射线输送系统递送给患者而不涉及任何计算迭代的治疗辐射剂量的准确方法。 其使用包括在通过患者之后检测透射的辐射剂量图像,在治疗期间对患者进行成像以解剖学记录患者的信息,然后通过使用检测到的放射线图像和成像数据,实际辐射 递送给患者的剂量,并将输送的剂量水平与先前计划的剂量进行比较,以确定计划的剂量是否被递送,或者是否发生过量或过量的药物。
    • 9. 发明申请
    • SYSTEM AND METHOD FOR AUTOMATIC DETERMINATION OF THE PHYSICAL LOCATION OF DATA CENTER EQUIPMENT
    • 用于自动确定数据中心设备物理位置的系统和方法
    • US20100214873A1
    • 2010-08-26
    • US12582480
    • 2009-10-20
    • Siva SomasundaramNaim R. MalikBrian Wang
    • Siva SomasundaramNaim R. MalikBrian Wang
    • G01S15/06
    • G01S5/22H05K7/1498
    • The invention is directed to a system and method for automatic discovery of the physical location of at least one device in a data center, the device having an associated ultrasonic emitter. The system generally includes a plurality of ultrasonic detectors having known locations in the data center. A controller initiates the generation of an ultrasonic signal from an ultrasonic emitter associated with a device under test. Time of arrival circuitry generates time of arrival information associated with each ultrasonic detector based on the time of receipt of the ultrasonic signal. The controller determines the location of the device under test based on the known location of the ultrasonic detectors within the data center and the time of arrival information associated with each ultrasonic detector.
    • 本发明涉及一种用于自动发现数据中心中的至少一个设备的物理位置的系统和方法,该设备具有相关联的超声发射器。 该系统通常包括在数据中心中具有已知位置的多个超声波检测器。 控制器从与被测器件相关联的超声波发射器发起超声波信号的产生。 到达电路基于超声波信号的接收时间,生成与每个超声波检测器相关联的到达时间信息。 控制器基于数据中心内的超声波检测器的已知位置和与每个超声波检测器相关联的到达时间来确定被测设备的位置。