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    • 61. 发明授权
    • Vehicle protective structure
    • 车辆保护结构
    • US08146480B2
    • 2012-04-03
    • US12844899
    • 2010-07-28
    • John SchneiderChristopher BrownRobin CromwellDonald Lowe
    • John SchneiderChristopher BrownRobin CromwellDonald Lowe
    • F41H7/02
    • F41H5/20F41H5/26F41H7/04Y10T29/49826Y10T29/49963
    • A protective structure for a vehicle having an opening on an upper surface is provided. One embodiment of the invention has at least a partial enclosure around an area defined laterally by the vehicle opening with an overhead and side protective capability. An embodiment of the invention has an overhead cover that is formed to substantially enclose a top area of the enclosure and having multiple panels that may be locked into place or opened by an occupant for exit through a top area of the enclosure. The multiple panels in this embodiment extend upwardly and inwardly from a section of the enclosure's side walls. Ballistic windows are provided on the protective structure such that an occupant can view laterally and vertically through the enclosure and overhead cover. A shield or protective plate can be mounted on one side of the enclosure.
    • 提供了在上表面具有开口的车辆的保护结构。 本发明的一个实施例具有围绕由车辆开口横向定义的具有顶部和侧面保护能力的区域中的至少一部分外壳。 本发明的实施例具有顶盖,其被形成为基本上封闭外壳的顶部区域并且具有多个面板,其可以被锁定到位或由乘员打开以通过外壳的顶部区域排出。 该实施例中的多个面板从外壳侧壁的一部分向上和向内延伸。 在保护结构上设置有弹道窗,使得乘客可以横向和垂直地观察外壳和顶盖。 屏蔽或保护板可以安装在外壳的一侧。
    • 62. 发明申请
    • DISPLAY DEVICE
    • 显示设备
    • US20110175871A1
    • 2011-07-21
    • US12674359
    • 2008-08-13
    • Hiromi KatohChristopher Brown
    • Hiromi KatohChristopher Brown
    • G09G5/00
    • H04N5/3696G01J1/46G02F1/13338G02F2201/58G06F3/0412G06F3/042H01L27/3269H04N5/3559
    • Dynamic range is widened in a display device with a photosensor that can read an image due to having a photodetection element inside a pixel thereof. A sensor driving circuit switches ON a reset signal (RST) that is supplied via reset signal bus line, and after a predetermined time has elapsed, switches ON a readout signal (RWS) that is supplied via readout signal bus line. Thus, in the photosensor, from which a photosensor signal is output in accordance with an amount of light received by the photosensor in the predetermined time, the capacitance of a capacitor provided in the photosensor is made variable from when the reset signal (RST) is supplied to the photosensor until when the predetermined time has elapsed.
    • 在具有光传感器的显示装置中,由于在像素内部具有光电检测元件而能够读取图像,动态范围变宽。 传感器驱动电路接通通过复位信号总线提供的复位信号(RST),在经过预定时间之后,接通通过读出信号总线提供的读出信号(RWS)。 因此,在光电传感器中,根据光电传感器在预定时间内接收的光量输出光电传感器信号,使得设置在光传感器中的电容器的电容从复位信号(RST)为 提供给光传感器,直到经过了预定时间。
    • 67. 发明申请
    • Extra strength polymer composite construction material and process for making the same
    • 超强度聚合物复合材料及其制造方法
    • US20080299372A1
    • 2008-12-04
    • US11899745
    • 2007-09-08
    • Gary StidhamChristopher BrownMarvin Peplow
    • Gary StidhamChristopher BrownMarvin Peplow
    • B32B5/02B32B27/08B32B5/00B29C41/22B32B3/12
    • B32B27/40B32B27/12Y10T428/249976Y10T428/249986Y10T428/269Y10T428/31547
    • A composite material that can be economically produced without the emission of VOCs that is extremely strong and is bonded at the molecular level. An embodiment of the present invention can be a composite of two or more layers with a first layer made from an aliphatic polymer like a polyurea and a resin like an isocyanate resin. A third layer of strengthened urethane foam can optionally be used. The composite material can be made up of layers of material with a first layer of a polyurea polymer and the second layer of an isocyanate resin chemically bonded to the first layer. The first layer can have a glossy outer surface if desired. The second layer can also optionally contain carbon fibers, nano-tubes or basalt fibers for extra strength if desired. The material can be produced in sheets of from 8 to 12 feet wide and from 40 to 60 feet long. Carbon fibers, carbon nano-tubes and Basalt fibers can be added for strength and rigidity. The optional urethane foam layer can contain carbon fibers, carbon nano-tubes or basalt or other fibers for strengthening.
    • 一种复合材料,可以经济地生产而不发出非常强的VOC,并在分子水平上结合。 本发明的一个实施方案可以是两层或更多层与由诸如聚脲的脂族聚合物和异氰酸酯树脂之类的树脂制成的第一层的复合物。 可以任选地使用第三层增强的聚氨酯泡沫。 复合材料可以由具有第一层聚脲聚合物的材料层和与第一层化学键合的异氰酸酯树脂的第二层组成。 如果需要,第一层可以具有光泽的外表面。 如果需要,第二层还可以任选地含有碳纤维,纳米管或玄武岩纤维,用于额外的强度。 该材料可以生产8至12英尺宽和40至60英尺长的片材。 可以添加碳纤维,碳纳米管和玄武岩纤维的强度和刚度。 可选的聚氨酯泡沫层可以包含碳纤维,碳纳米管或玄武岩或其他用于增强的纤维。
    • 70. 发明申请
    • Determination of a measure of a glycation end-product or disease state using tissue fluorescence preferentially from the dermis
    • 使用优先来自真皮的组织荧光测定糖基化终产物或疾病状态的量度
    • US20060211928A1
    • 2006-09-21
    • US11417463
    • 2006-05-03
    • Edward HullMarwood EdigerChristopher BrownJohn MaynardRobert Johnson
    • Edward HullMarwood EdigerChristopher BrownJohn MaynardRobert Johnson
    • A61B5/00
    • A61B5/1455A61B5/0059A61B5/0064A61B5/0066A61B5/0068A61B5/0071A61B5/0075A61B5/14532A61B5/412A61B5/441
    • A method of determining a measure of a tissue state (e.g., glycation end-product or disease state) in an individual. A portion of the tissue of the individual is illuminated with excitation light, then light emitted by the tissue due to fluorescence of a chemical with the tissue responsive to the excitation light is detected. The detected light can be combined with a model relating fluorescence with a measure of tissue state to determine a tissue state. The invention can comprise single wavelength excitation light, scanning of excitation light (illuminating the tissue at a plurality of wavelengths), detection at a single wavelength, scanning of detection wavelengths (detecting emitted light at a plurality of wavelengths), and combinations thereof. The invention also can comprise correction techniques that reduce determination errors due to detection of light other than that from fluorescence of a chemical in the tissue. For example, the reflectance of the tissue can lead to errors if appropriate correction is not employed. The invention can also comprise a variety of models relating fluorescence to a measure of tissue state, including a variety of methods for generating such models. Other biologic information can be used in combination with the fluorescence properties to aid in the determination of a measure of tissue state. The invention also comprises apparatuses suitable for carrying out the method, including appropriate light sources, detectors, and models (for example, implemented on computers) used to relate detected fluorescence and a measure of tissue state.
    • 确定个体中组织状态(例如,糖基化终产物或疾病状态)的量度的方法。 用激发光照射个体组织的一部分,然后检测由组织响应于激发光的化学物质的荧光而由组织发出的光。 检测到的光可以与将荧光与组织状态的测量相关联的模型组合以确定组织状态。 本发明可以包括单波长激发光,激发光的扫描(以多个波长照射组织),单个波长的检测,检测波长的扫描(检测多个波长的发射光)及其组合。 本发明还可以包括校正技术,其减少由于检测到除了组织中的化学物质的荧光以外的光的测定误差。 例如,如果不采用适当的校正,组织的反射率可能导致错误。 本发明还可以包括将荧光与组织状态的测量相关联的各种模型,包括用于产生这种模型的各种方法。 其他生物信息可与荧光性质结合使用,有助于测定组织状态。 本发明还包括适于执行该方法的装置,包括用于检测荧光和组织状态测量的适当的光源,检测器和模型(例如,在计算机上实现)。