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    • 91. 发明申请
    • SYSTEM AND METHOD FOR PREVENTING CELL PHONE USE WHILE DRIVING
    • 用于在驾驶时使用电话电话的系统和方法
    • WO2010042545A3
    • 2010-07-29
    • PCT/US2009059732
    • 2009-10-06
    • UNIV UTAH RES FOUNDCURRY WALLACE MZHOU XUESONG
    • CURRY WALLACE MZHOU XUESONG
    • H04W48/04H04W64/00
    • H04W48/04G01S2205/002H04W4/027H04W8/02H04W12/08H04W64/006
    • A system for monitoring and controlling the use of a mobile computing device is disclosed. The system includes a data server (104) containing a model of a road network specifying traffic routes at a selected location. A mobile wireless computing device (106) is configured to wirelessly communicate with the data server (104). An embedded accelerometer (116) and a GPS receiver (114) are included in the wireless device (106). A mobile device control module in communication with the wireless device (106) and the data server (104) provides a motion data cache (118) to record data from the GPS receiver (114) and accelerometer (116), an activity mode recognition module (120) configured to determine a type of activity based on the motion data cache (118), and a use permission module (112) in communication with the data server (104) to provide timing and location information at which the wireless device (106) can be used based on the activity mode.
    • 公开了一种用于监视和控制移动计算设备的使用的系统。 该系统包括数据服务器(104),其包含指定所选位置的交通路线的道路网络的模型。 移动无线计算设备(106)被配置为与数据服务器(104)无线通信。 嵌入式加速度计(116)和GPS接收机(114)包括在无线设备(106)中。 与无线设备(106)和数据服务器(104)通信的移动设备控制模块提供运动数据高速缓存(118)以记录来自GPS接收器(114)和加速度计(116)的数据,活动模式识别模块 (120),被配置为基于所述运动数据高速缓存(118)确定活动的类型;以及使用许可模块(112),其与所述数据服务器(104)通信以提供所述无线设备(106)的定时和位置信息 )可以基于活动模式使用。
    • 94. 发明申请
    • CLIMBING ROBOT USING PENDULAR MOTION
    • 悬挂机器人使用垂直运动
    • WO2009140396A3
    • 2010-03-04
    • PCT/US2009043801
    • 2009-05-13
    • UNIV UTAH RES FOUNDPROVANCHER WILLIAM R
    • PROVANCHER WILLIAM R
    • B25J5/00B25J9/00B25J15/00
    • B62D57/024B25J5/00B25J15/06
    • A climbing robot suitable for climbing a substantially vertical, inclined or horizontal surface comprises a main body (14) including: an upper cross-member (18) having a pair of ends; and a pair of spaced-apart gripping mechanisms (16a, 16b) coupled to the main body. The pair of gripping mechanisms are independently and selectively releasable from and attachable to a surface on which the robot can climb. An actuator (40) is carried by the main body, and an end-weighted pendular tail (12) is actuatable by the actuator and is configured for pendular rotation relative to the main body. Rotation of the pendular tail relative to the main body causes one end of the cross-member main body to rise relative to an other end of the main body resulting in the robot climbing the surface.
    • 适于攀爬基本垂直,倾斜或水平的表面的攀爬机器包括主体(14),其包括:具有一对端部的上横向构件(18); 以及联接到主体的一对间隔开的夹持机构(16a,16b)。 一对夹持机构独立地且可选择性地从机器人可攀爬的表面上释放并附接到该表面上。 致动器(40)由主体承载,并且端部加重的吊杆尾部(12)可由致动器致动,并且被构造成相对于主体摆动。 摆杆相对于主体的旋转使得横向构件主体的一端相对于主体的另一端上升,导致机器人爬上表面。
    • 96. 发明申请
    • MICROFLUIDIC FLOW CELL
    • 微流感细胞
    • WO2009111461A3
    • 2010-01-07
    • PCT/US2009035859
    • 2009-03-03
    • UNIV UTAH RES FOUNDSUNDBERG SCOTT OWITTNER CARL TGALE BRUCE K
    • SUNDBERG SCOTT OWITTNER CARL TGALE BRUCE K
    • G01N35/02C12Q1/68G01N33/48
    • C12Q1/6844B01L3/50273B01L3/50851B01L7/52B01L2200/0642B01L2300/0806B01L2300/0887B01L2400/0409
    • A microfluidic flow cell having a body with a fluid transport channel disposed therein, the fluid transport channel having a proximal end and a distal end defining a fluid flow path, a fluid inlet port disposed at the proximal end of the fluid transport channel at a central portion of the body and an outlet port disposed at the distal end of the fluid transport channel at an outer portion of the body, and a plurality sample wells disposed in the fluid transport channel substantially perpendicular to the fluid flow path in the fluid transport channel. The microfluidic flow cell may have hundreds or thousands of individual, sub-microliter sample wells. The microfluidic flow cell can be filled by applying a flowable liquid to the inlet port and spinning the flow cell to cause fluid to flow into fluid transport channel. The microfluidic flow cells described herein can be used in a variety of applications where small sample size and/or a large number of replicates are desirable.
    • 一种微流体流动池,其具有设置在其中的流体输送通道的主体,所述流体输送通道具有限定流体流动路径的近端和远端;流体入口,其设置在所述流体输送通道的近端处的中心 主体的一部分和设置在主体的外部部分处的流体输送通道的远端处的出口端口以及设置在流体输送通道中的基本上垂直于流体输送通道中的流体流动路径的多个样本阱。 微流体流动池可以具有数百或数千个单独的亚微升样品孔。 可以通过将可流动的液体施加到入口端口并旋转流动池以使流体流入流体输送通道来填充微流体流动池。 本文所述的微流体流动池可以用于需要小样品量和/或大量重复的各种应用中。