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    • 153. 发明申请
    • METHOD AND KIT FOR DETECTION OF MICROORGANISM
    • 用于检测微生物的方法和工具包
    • US20110053790A1
    • 2011-03-03
    • US12445506
    • 2008-08-01
    • Shinichi YoshidaTakashi Soejima
    • Shinichi YoshidaTakashi Soejima
    • C40B30/04C12Q1/68C40B99/00
    • C12Q1/68C12Q1/689C12Q2523/101
    • A live cell of microorganism in a test sample is detected by the following steps of: a) adding a cross-linker capable of cross-linking a DNA by irradiation with light having a wavelength of 350 nm to 700 nm to the test sample; b) irradiating the test sample to which the cross-linker is added with light having a wavelength of 350 nm to 700 nm; c) removing the cross-linker contained in the test sample irradiated with light; d) adding a medium to the test sample from which the cross-linker is removed and incubating the test sample; e) adding again the cross-linker capable of cross-linking a DNA by irradiation with light having a wavelength of 350 nm to 700 nm to the incubated test sample; f) irradiating the test sample to which the cross-linker is added with light having a wavelength of 350 nm to 700 nm; g) extracting a DNA from the test sample and amplifying a target region of the extracted DNA by a nucleic acid amplification method; and h) analyzing the amplified product.
    • 通过以下步骤检测测试样品中微生物的活细胞:a)通过用波长为350nm至700nm的光照射能够将DNA交联的交联剂加入到测试样品中; b)用波长为350nm至700nm的光照射加入交联剂的测试样品; c)除去用光照射的测试样品中所含的交联剂; d)向测试样品中加入培养基,从中除去交联剂并培养测试样品; e)再次加入能够通过用波长为350nm至700nm的光照射到孵育的测试样品的DNA来交联DNA的交联剂; f)用波长为350nm至700nm的光照射加入交联剂的测试样品; g)从测试样品中提取DNA并通过核酸扩增方法扩增提取的DNA的靶区域; 和h)分析扩增产物。
    • 157. 发明授权
    • Data driven type information processing apparatus and method of increasing transfer speed of data packet
    • 数据驱动型信息处理装置和数据包传送速度提高的方法
    • US07483427B2
    • 2009-01-27
    • US11052901
    • 2005-02-09
    • Shinichi YoshidaTsuyoshi Muramatsu
    • Shinichi YoshidaTsuyoshi Muramatsu
    • H04L12/28
    • H04L47/10G06F9/4494
    • A branching control unit includes a logic gate and a NAND circuit that can receive transfer permission for each branching designation. The branching control unit further includes a transfer request unit receiving respective outputs of the logic gate and NAND circuit. The transfer request unit sends a data transfer request to a branching designation when the logic gate or NAND circuit is rendered active. Since transfer permission can be received for each branching designation to send a transfer request, a data waiting state depending upon the data holding state of another branching destination will no longer occur. Thus, a data driven type information processing apparatus and method of transferring a data packet at higher speed in a data transmission path can be provided.
    • 分支控制单元包括可以接收每个分支指定的传送许可的逻辑门和NAND电路。 分支控制单元还包括接收逻辑门和NAND电路的各个输出的传送请求单元。 当逻辑门或NAND电路被激活时,传送请求单元将数据传送请求发送到分支指定。 由于可以为每个分支指定接收到传送许可以发送传送请求,所以将不再发生根据另一分支目的地的数据保持状态的数据等待状态。 因此,可以提供数据驱动型信息处理装置和在数据传输路径中以较高速度传输数据包的方法。
    • 158. 发明申请
    • Heat exchanger, method for manufacturing the same, and heart-lung machine
    • 换热器,制造方法及心肺机
    • US20090018629A1
    • 2009-01-15
    • US10584478
    • 2005-02-07
    • Shinichi YoshidaMinoru TanakaTomokazu Niitsuma
    • Shinichi YoshidaMinoru TanakaTomokazu Niitsuma
    • A61F7/12F28D7/00B23P15/26F28F9/02
    • F28F9/0229A61M1/1698A61M1/369A61M2205/366F28D7/1653F28F2265/16Y10T29/49391
    • In a heat exchanger including a plurality of tubes 1 through which a first fluid passes, a housing 2 in which the tubes 1 are installed, and sealing members for sealing a second fluid that flows over surfaces of the tubes 1, the housing 2 includes an inlet 4 for introducing the second fluid therein and a first outlet 5 and second outlets 6 for discharging the second fluid, and the sealing members include a first sealing member 3a positioned on one of end sides of the tubes 1, a second sealing member 3b positioned on the other end side of the tubes 1, and a third sealing member 3c positioned between the first and second sealing members 3a and 3b. The third sealing member 3c is provided so that a gap 7 is provided between the first sealing member 3a and the third sealing member 3c while another gap 7 is provided between the second sealing member 3b and the third sealing member 3c, and that a flow path for the second fluid is formed therein. The second outlets 6 are provided so as to be connected to the gaps 7.
    • 在包括第一流体通过的多个管1的热交换器中,安装管1的壳体2和用于密封在管1的表面上流动的第二流体的密封构件,壳体2包括 用于在其中引入第二流体的入口4和用于排出第二流体的第一出口5和第二出口6,并且密封构件包括位于管1的一端的第一密封构件3a,第二密封构件3b定位 在管1的另一端侧和位于第一密封件3a和第二密封件3b之间的第三密封件3c。 第三密封构件3c设置成在第一密封构件3a和第三密封构件3c之间设置有间隙7,而在第二密封构件3b和第三密封构件3c之间设置有间隙7, 因为在其中形成第二流体。 第二出口6设置成与间隙7连接。
    • 160. 发明申请
    • IMAGE CAPTURING APPARATUS
    • 图像捕获设备
    • US20070229673A1
    • 2007-10-04
    • US11533112
    • 2006-09-19
    • Yoshitaka ArayaMasanori SonoiShinichi Yoshida
    • Yoshitaka ArayaMasanori SonoiShinichi Yoshida
    • H04N5/225
    • H04N5/772H04N5/23232H04N5/23245H04N9/7921H04N9/8042H04N9/8205
    • During capture of a motion picture, a still image of high resolution and frame images of a moving mage are formed from one image signal. Each of the frame images is synthesized with a tag image for identifying the frame image. A motion picture is formed from the frame image synthesized with the tag image. Concurrently, data pertaining to a difference between the frame image synthesized with the tag image and the still image are computed, and the difference data are stored in a storage device. The still image is deleted. At this time, an address of difference data and details of the tag image synthesized with the frame image are recorded in an associated manner as index information. When the still image is formed from an arbitrary frame image of the motion picture, the frame image is identified by reference to the tag image, and an identification result is utilized.
    • 在拍摄动态图像期间,从一个图像信号形成高分辨率的静止图像和移动的法师的帧图像。 每个帧图像与用于识别帧图像的标签图像合成。 从与标签图像合成的帧图像形成运动图像。 同时,计算关于与标签图像合成的帧图像与静止图像之间的差异的数据,并将差异数据存储在存储装置中。 静止图像被删除。 此时,以相关联的方式记录与帧图像合成的差分数据和标签图像的细节的地址作为索引信息。 当静止图像由运动图像的任意帧图像形成时,通过参照标签图像来识别帧图像,并且利用识别结果。