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    • 1. 发明授权
    • Fluorescence sensor, needle-type fluorescence sensor, and method for measuring analyte
    • 荧光传感器,针型荧光传感器以及测定分析物的方法
    • US08649836B2
    • 2014-02-11
    • US13271732
    • 2011-10-12
    • Etsuro ShimizuKazuya MatsumotoRyo OtaAtsushi Matsumoto
    • Etsuro ShimizuKazuya MatsumotoRyo OtaAtsushi Matsumoto
    • A61B5/1455
    • G01N21/77A61B5/14532A61B5/1459G01N2021/7753G01N2021/7786
    • A needle-type fluorescence sensor that measures glucose based on fluorescence produced by excitation light is provided. The needle-type fluorescence sensor includes a needle body section including a sensor portion disposed in a needle distal end portion and metal lines disposed from the sensor portion to a needle proximal end portion, and a connector which is integrated with the needle body section and in which the metal lines extend. The sensor portion includes a silicon substrate having first and second principal surfaces, a PD device that converts fluorescence into an electric signal, an LED device that transmits fluorescence and emits excitation light, and an indicator layer that interacts with an analyte under the excitation light to produce fluorescence. The PD device, the LED device, and the indicator layer overlap with each other above the first principal surface of the silicon substrate.
    • 提供了一种根据由激发光产生的荧光测量葡萄糖的针型荧光传感器。 针型荧光传感器包括:针体部,其包括设置在针前端部的传感器部和从传感器部到针基端部的金属线;以及连接器,其与针体部一体化, 金属线延伸。 传感器部分包括具有第一和第二主表面的硅衬底,将荧光转换为电信号的PD器件,透射荧光并发射激发光的LED器件,以及在激发光下与分析物相互作用的指示器层 产生荧光。 PD器件,LED器件和指示层在硅衬底的第一主表面之上彼此重叠。
    • 4. 发明申请
    • CHEMICAL MECHANICAL POLISHING SLURRY, CMP PROCESS AND ELECTRONIC DEVICE PROCESS
    • 化学机械抛光浆,CMP工艺和电子设备工艺
    • US20070270085A1
    • 2007-11-22
    • US11679215
    • 2007-02-27
    • Ryo OtaTakayuki NakakawajiToranosuke AshizawaNaoyuki Koyama
    • Ryo OtaTakayuki NakakawajiToranosuke AshizawaNaoyuki Koyama
    • B24B1/00
    • C09K3/1463C09G1/02C09K3/1436H01L21/31053
    • To provide a slurry for Chemical Mechanical Polishing, a Chemical Mechanical Polishing method using said slurry, and a method of producing electronic devices using said method that makes it possible to achieve a low scratch process capability in processing surfaces such as SiO2 film surfaces and the like and also to enable speed polishing to attain a high processing efficiency.Slurry for Chemical Mechanical Polishing characterized in comprising abrasive grains and water, wherein said abrasive grains are composite particles coated with ceria particles consisting of organic host particles and ceria particles, zeta potential of said composite particles being a negative potential, the organic host particles constituting the composite particles coated with ceria particles are organic host particles to which carboxyl groups and sulfonyl groups are introduced; the slurry is added with panarization additive; and the planarization additive is poly(methyl)acrylic acid ammonium salt.
    • 为了提供化学机械抛光的浆料,使用所述浆料的化学机械抛光方法,以及使用所述方法制造电子器件的方法,其使得可以在诸如SiO 2的处理表面中实现低的划痕处理能力, / SUB>膜表面等,并且还能够进行速度抛光以获得高处理效率。 用于化学机械抛光的浆料,其特征在于包括磨粒和水,其中所述磨粒是由有机主体颗粒和二氧化铈颗粒组成的二氧化铈颗粒涂覆的复合颗粒,所述复合颗粒的ζ电位为负电位,有机主体颗粒构成 涂覆有二氧化铈颗粒的复合颗粒是引入羧基和磺酰基的有机主体颗粒; 将浆料加入泛化添加剂; 平面化添加剂是聚(甲基)丙烯酸铵盐。
    • 7. 发明授权
    • Traveling environment recognition device
    • 旅行环境识别装置
    • US08620025B2
    • 2013-12-31
    • US13059741
    • 2009-06-24
    • Mirai HiguchiRyo OtaTakuya NakaMorihiko SakanoShoji MuramatsuTatsuhiko Monji
    • Mirai HiguchiRyo OtaTakuya NakaMorihiko SakanoShoji MuramatsuTatsuhiko Monji
    • G06K9/00G06K9/36G06K9/32
    • G06K9/00798B60W30/14B60W30/143B60W40/072B60W40/076B60W2420/42B60W2550/142G08G1/165G08G1/167
    • In order to perform vehicle control, a warning process, and the like which do not give a driver an uncomfortable feeling in speed adjustment, a warning process, and the like corresponding to a road shape such as a curve, it is necessary to recognize not only a near road shape but also a far road shape with high accuracy. A traveling environment recognition device includes: a measurement unit which measures a target object; a three-dimensional object detection unit which detects a three-dimensional object on the basis of a signal acquired by the measurement unit; a road shape prediction unit which predicts a road shape on which a target vehicle is traveling; a three-dimensional object selection unit which selects, from among the three-dimensional objects detected by the three-dimensional object detection unit, only a three-dimensional object within a predetermined range from a point of the road predicted by the road shape prediction unit; and a road shape estimation unit which estimates the road shape on the basis of position information of the three-dimensional object selected by the three-dimensional object selection unit.
    • 为了执行车辆控制,警告处理等,其不给驾驶员在与曲线等道路形状对应的速度调节,警告处理等中感到不舒适的感觉,因此不需要识别 只有近路形状,但也具有高精度的远道形状。 行驶环境识别装置包括:测量目标物体的测量单元; 三维物体检测单元,其基于由测量单元获取的信号来检测三维物体; 道路形状预测单元,其预测目标车辆行驶的道路形状; 三维物体选择单元,从三维物体检测单元检测到的三维物体中,仅从道路形状预测单元预测的道路上的预定范围内的三维物体中, ; 以及道路形状估计单元,其基于由三维物体选择单元选择的三维物体的位置信息来估计道路形状。