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    • 52. 发明授权
    • Dynamic algorithm selection for volume rendering, isocontour and body
extraction within a multiple-instruction, multiple-data multiprocessor
    • 在多指令多数据多处理器内进行体绘制,异构和身体抽取的动态算法选择
    • US5201035A
    • 1993-04-06
    • US549870
    • 1990-07-09
    • Martin R. StytzOphir Frieder
    • Martin R. StytzOphir Frieder
    • G06T17/00
    • G06T17/00
    • This is a methodology which reduces the time required to render a volume with extracted isocontours and inserted cutting plane and perform an arbitrary rotation within a three-dimensional volume. The volume is first partitioned among the processors of a multiple-instruction, multiple-data (MIMD) multiprocessor computer. As the user indicates the isocontour to be extracted, rotation, and cutting plane to be inserted into the image space volume, each processor independently selects the optimum algorithm for rendering the volume using the indicated display parameters on its local data set. If the processor is fully behind the cutting plane, a front-to-back (FTB) volume rendering algorithm is used. If the cutting plane lies behind the cutover point, then a back-to-front (BTF) volume rendering algorithm is used, otherwise the FTB volume rendering algorithm is used.
    • 这是一种减少使用提取的异形体和插入的切割平面呈现卷的时间并在三维体积内执行任意旋转所需的时间的方法。 该卷首先在多指令多数据(MIMD)多处理器计算机的处理器之间划分。 当用户指示要提取的等离子体,旋转和切割平面插入到图像空间体积中时,每个处理器独立地选择用于在其本地数据集上使用指示的显示参数呈现卷的最佳算法。 如果处理器完全落在切割平面之后,则使用前后(FTB)体绘制算法。 如果切割平面位于切割点之后,则使用背对背(BTF)体绘制算法,否则使用FTB体绘制算法。
    • 55. 发明申请
    • METHOD AND SYSTEM FOR TRACKING A MOBILE USER
    • 跟踪移动用户的方法和系统
    • US20150105096A1
    • 2015-04-16
    • US14051089
    • 2013-10-10
    • Abdur ChowdhuryChris CarellaBen CherryOphir FriederEric JensenTyler HowarthMatt Sanford
    • Abdur ChowdhuryChris CarellaBen CherryOphir FriederEric JensenTyler HowarthMatt Sanford
    • H04W64/00H04W4/02
    • H04W64/00G01S5/0263G01S19/34H04W4/021
    • A method, system, and/or apparatus for automatically tracking a mobile user using the user's mobile device. This invention is particularly useful in the field of social media, such as for detecting and tracking the location and activity of a user and her community. The method or implementing software application uses or relies upon location information available on the mobile device from any source, such as cell phone usage and/or other device applications. The method provides a tracking functionality that uses less battery power than a GPS system. The method includes a location module configured to receive location transmissions, places the location module into a sleep mode when possible, awakens the location module upon receipt of a location transmission, and determines a location with the location module and the location transmission. These steps are desirably repeated to continually and automatically track the mobile user. The location transmission can be provided by WiFi triangulation and/or a cellular phone system upon crossing a boundary between antennae cells and/or a boundary between a plurality of established and contiguous geofences.
    • 一种用于使用用户的移动设备自动跟踪移动用户的方法,系统和/或装置。 本发明在社交媒体领域特别有用,例如用于检测和跟踪用户及其社区的位置和活动。 该方法或实施软件应用程序使用或依赖于移动设备上可用于来自诸如手机使用和/或其他设备应用的任何来源的位置信息。 该方法提供的跟踪功能比GPS系统使用更少的电池电量。 该方法包括配置为接收位置传输的定位模块,在可能时将位置模块置于睡眠模式中,在接收到位置传输时唤醒位置模块,并且利用定位模块和位置传输来确定位置。 期望重复这些步骤以连续和自动地跟踪移动用户。 位置传输可以通过WiFi三角测量和/或蜂窝电话系统在穿过天线单元之间的边界和/或多个建立和连续的地理围栅之间的边界时提供。
    • 60. 发明授权
    • Method for the construction and utilization of a medical records system
    • 医疗记录系统的建设和利用方法
    • US07627489B2
    • 2009-12-01
    • US12217719
    • 2008-07-08
    • Anthony J. SchaefferOphir Frieder
    • Anthony J. SchaefferOphir Frieder
    • G06Q10/00
    • G06Q30/02G06F19/00G06Q50/22G06Q50/24G16H10/20G16H50/20
    • A method for the construction and utilization of a medical records system capable of providing a continuous data stream of epidemiological data to the records system via kits provided to the symptomatic population to obtain and record an epidemiological profile in a searchable database by applying data mining or automated intelligence techniques whereby, when a valid epidemiological profile is established in the database, automated diagnosis and prescription of treatment may be had for patients presenting similar symptoms. Knowledge discovery techniques may further operate on the database to provide suggested courses of treatment for a virtual class of patients, epidemic threat awareness, and knowledge of drug resistance mutations by a pathogen without direct query of the database.
    • 一种建立和利用医疗记录系统的方法,该系统能够通过提供给有症状群体的药盒向记录系统提供流行病学数据的连续数据流,以通过应用数据挖掘或自动化获得并记录可搜索数据库中的流行病学资料 智力技术,当在数据库中建立有效的流行病学特征时,可能对患有类似症状的患者进行自动诊断和处方。 知识发现技术可以在数据库上进一步操作,以提供虚拟类患者的建议治疗方案,疫情威胁意识和病原体耐药突变知识,而不需要直接查询数据库。