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    • 5. 发明申请
    • AUTOMATED SLIDE SCANNING SYSTEM FOR A MICROSCOPE
    • WO2012051718A9
    • 2012-04-26
    • PCT/CA2011/050662
    • 2011-10-20
    • GELBART, William
    • GELBART, William
    • G02B21/36G02B21/34G02B7/04H04N1/00
    • An automated slide scanning system is described. The system comprises an automated focusing unit that is simple and that provides a fine adjustment of a focusing tube without any backlash. The focusing unit comprises a block that is cut or fabricated in a pattern forming a head to support a focusing tube and at least one elongated and rigid arm projecting perpendicularly from the head. One end of the at least one arm is integrally joined to the head. The focusing unit further comprises an elongated, rigid, lever which is substantially parallel and spaced apart from the at least one arm. The lever is pivotally mounted to a hinge and has a first end that is linked to the head of the focusing unit and a second free end. The focusing unit further includes a drive mechanism with a roller coupled to a motor. The roller is eccentric roller and is in constant contact to the lever's second end. When the roller rotates it engages the lever which subsequently engages the at least one arm and thus produces a substantially vertical movement in both direction to the head of the focusing unit. The scanning system further comprises a scanning stage that supports the focusing unit and which provides a continuous movement in Y-direction (back and forward) of the scanning stage, and a scanning track that moves the slide holder continuously in one direction along the x-axis until the last slide in the slide holder is scanned. The scanning system of the present invention is suitable for automated screening or prescreening of samples.
    • 9. 发明申请
    • ANALYZING TELEMATICS DATA WITHIN HETEROGENEOUS VEHICLE POPULATIONS
    • 异种车辆人群内外貌数据分析
    • WO2017214713A1
    • 2017-12-21
    • PCT/CA2017/050597
    • 2017-05-17
    • MOJ.IO INC.
    • SAINANEY, NarayanVORA, Tejas
    • G07C5/08G06F17/18
    • A computing system implements a telematics service that obtains a set of vehicle telematics data for each vehicle of a population. Within each set of vehicle telematics data, a set of time-based measurements for a measurement type is identified. The set of time-based measurements identified for each vehicle are combined to obtain a combined set of time- based observations for the measurement type across the population of vehicles or a sub-set of the population defined by vehicle make, model, and/or year of production. An outlier observation is identified from among the combined set of time-based observations. A determination is made whether the outlier observation is part of a temporary deviation or a persistent deviation. For a temporary deviation, an impact of the outlier observation on the set of time-based measurements is reduced. For a persistent deviation, the outlier observation is programmatically characterized.
    • 计算系统实现远程信息处理服务,该远程信息处理服务为群体的每辆车获得一组车辆远程信息数据。 在每组车辆信息数据中,识别用于测量类型的一组基于时间的测量。 组合针对每个车辆识别的基于时间的测量结果被组合以获得用于车辆总体或由车辆制造,模型和/或车辆定义的总体子集中的测量类型的组合的基于时间的观察值 生产年份。 从组合的基于时间的观测值中识别异常值观察值。 确定异常值观察是暂时偏差还是持续偏差的一部分。 对于暂时的偏差,异常值观察对基于时间的测量结果的影响降低。 对于持续的偏差,异常观察是以编程方式表征的。