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    • 1. 发明申请
    • Collision detection sensor for vehicle
    • 车辆碰撞检测传感器
    • US20090015392A1
    • 2009-01-15
    • US12218072
    • 2008-07-10
    • Hisashi TakahashiShuji Nakamura
    • Hisashi TakahashiShuji Nakamura
    • B60Q1/00G08G1/16
    • B60R19/483B60R21/0136
    • A collision detection sensor includes an absorber, a chamber member, a pressure sensor, and a collision detection circuit. The absorber is deformed with a collision to absorb collision impact force. The absorber is located in a vehicle bumper and located in front of a bumper reinforcement in a vehicle front-rear direction. The chamber member defines a chamber room therein. The chamber member is located in the bumper and located in front of the bumper reinforcement in the vehicle front-rear direction. The pressure sensor detects pressure in the chamber room. The collision detection circuit detects the collision based on the detected pressure. A front end of the absorber is located further away from the bumper reinforcement than a front end of the chamber member in the vehicle front-rear direction.
    • 碰撞检测传感器包括吸收器,室构件,压力传感器和碰撞检测电路。 吸收体随碰撞而变形以吸收碰撞冲击力。 吸收器位于车辆保险杠中,位于车辆前后方向上的保险杠加强件的前方。 室构件在其中限定室室。 舱室构件位于保险杠中,位于保险杠加强件前部的车辆前后方向上。 压力传感器检测腔室中的压力。 碰撞检测电路基于检测到的压力来检测碰撞。 吸收器的前端比车辆前后方向上的室构件的前端远离保险杠加强件定位。
    • 3. 发明授权
    • Image reconstruction device and image reconstruction method configured to perform iteratively reconstructed image using weight coefficient
    • 图像重建装置和图像重建方法,配置为使用权重系数执行迭代重建图像
    • US09159146B2
    • 2015-10-13
    • US14128769
    • 2012-07-05
    • Hisashi TakahashiTaiga GotoKoichi Hirokawa
    • Hisashi TakahashiTaiga GotoKoichi Hirokawa
    • G06K9/00G06T11/00
    • G06T11/006G06T2211/412G06T2211/424
    • To provide an image reconstruction device capable of creating an image with image quality matching the operator's request when a cross-sectional image is reconstructed through a repeated calculation, the image reconstruction device which performs a repeated calculation on the basis of a difference between calculated projection data and measured projection data, the calculated projection data being obtained by performing a forward projection calculation on a reconstructed image which is reconstructed based on the measured projection data, includes an input section to which an image quality parameter which is considered to be important by an operator is input, a weight calculation section that calculates a weighting coefficient on the basis of the image quality parameter, and a repeated calculation section that performs a repeated calculation on the basis of a value obtained by weighting and adding a pixel value obtained in the previous iteration to a pixel value obtained from now using the weighting coefficient.
    • 为了提供一种能够通过重复计算重建横截面图像时,能够创建具有与操作者的请求相匹配的图像质量的图像重建装置,该图像重建装置基于计算出的投影数据之间的差进行重复计算 并且测量的投影数据,通过对基于测量的投影数据重建的重建图像执行前向投影计算而获得的所计算的投影数据包括输入部分,被认为对于运营商来说重要的图像质量参数 基于图像质量参数计算加权系数的权重计算部分,以及基于通过对在先前迭代中获得的像素值进行加权和相加而获得的值来执行重复计算的重复计算部分 到从现在使用的像素值 加权系数。
    • 8. 发明授权
    • Detection and analysis system for protein array
    • 蛋白质阵列检测与分析系统
    • US08038945B2
    • 2011-10-18
    • US11792095
    • 2005-12-02
    • Masahiro IwakuraKiyonori HirotaHisashi Takahashi
    • Masahiro IwakuraKiyonori HirotaHisashi Takahashi
    • G01N21/00
    • G01N33/5308G01N21/253G01N21/31G01N21/6452G01N33/54386
    • To provide a method for detecting a protein by immobilizing a protein on a protein array substrate at a high density with controlled orientation, irradiating the immobilized protein with ultraviolet light, visible light, or infrared light, and measuring the light not absorbed by the protein and further analyzing an interaction between the protein on the substrate and another protein and/or a compound other than proteins, a system used for the method, and to provide a protein array suitable for the system. A system including a protein array in which a protein is immobilized in aligned position on a light-transmissive substrate at a high density, a light-irradiating means, and a light-detecting means and being for detecting or analyzing a protein on the protein array and/or a compound which is other than proteins and interacts with the immobilized protein, wherein the protein array is irradiated with light by the light-irradiating means, and the light transmitted through the protein array is measured by the light-detecting means for detecting the light absorption of the protein on the protein array and/or the compound which is other than proteins and interacts with the immobilized protein.
    • 为了提供一种通过将具有受控取向的高密度蛋白质固定在蛋白质阵列基底上的蛋白质的检测方法,用紫外光,可见光或红外光照射固定化蛋白质,并测定不被蛋白质吸收的光, 进一步分析底物上的蛋白质与另一种蛋白质和/或蛋白质以外的化合物之间的相互作用,用于该方法的系统,以及提供适用于该系统的蛋白质阵列。 一种包含蛋白质阵列的系统,其中蛋白质以高密度固定在透光基底上的对准位置,光照射装置和光检测装置,并用于检测或分析蛋白质阵列上的蛋白质 和/或不同于蛋白质并与固定化蛋白质相互作用的化合物,其中通过光照射装置用光照射蛋白质阵列,通过蛋白质阵列传输的光由用于检测的光检测装置测量 蛋白质在蛋白质阵列上的光吸收和/或不同于蛋白质并与固定化蛋白质相互作用的化合物。
    • 10. 发明授权
    • Frequency synthesizer
    • 频率合成器
    • US07391841B2
    • 2008-06-24
    • US11041888
    • 2005-01-25
    • Hisashi Takahashi
    • Hisashi Takahashi
    • H03D3/24H03L7/00
    • H03L7/0898H03L7/099H03L7/18
    • A plurality of voltage controlled oscillators and a plurality of dividers are provided corresponding to a plurality of frequency bands, respectively, and a phase comparator, a charge pump, and a low pass filter are used in common for the plurality of frequency bands. A switch which selects any one of the plurality of voltage controlled oscillators, and a switch which selects any one of the plurality of dividers are provided. A controller which performs a gain control of a frequency synthesizer loop is further provided so that a gain characteristic of the frequency synthesizer loop comprised of a selected voltage controlled oscillator, selected divider, phase comparator, charge pump, and low pass filter becomes constant regardless of a selection change of the plurality of voltage controlled oscillators and the plurality of dividers.
    • 分别对应于多个频带设置多个压控振荡器和多个分频器,并且对于多个频带使用相位比较器,电荷泵和低通滤波器。 提供选择多个压控振荡器中的任何一个的开关,以及选择多个分频器中的任何一个的开关。 还提供执行频率合成器环路的增益控制的控制器,使得由选定的压控振荡器,选择的分频器,相位比较器,电荷泵和低通滤波器构成的频率合成器回路的增益特性变得恒定,而不管 多个压控振荡器和多个分频器的选择变化。