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    • 4. 发明授权
    • COMMUNICATION SYSTEM
    • 通讯系统
    • EP0987633B1
    • 2006-01-25
    • EP98923061.0
    • 1998-06-01
    • KOKEN CO., LTD.Nagoya, Mitsugu
    • NAGOYA, Mitsugu
    • G06F11/22G01R31/28G01R31/3185
    • G01R31/318536G01R31/2815G01R31/318533G01R31/318572
    • There are provided a boundary scan element including a plurality of input-terminal-side boundary cells connected in series and assigned individually to respective input terminals, a plurality of output-terminal-side boundary cells connected in series and assigned individually to respective output terminals, a TAP circuit for controlling input and output of data to or from the input-terminal-side and output-terminal-side boundary cells, a TDI terminal for inputting serial data to be provided to the boundary cells, a TDO terminal for outputting data from the boundary cells as serial data, a TCK terminal to which a clock signal is input, and a TMS terminal to which a mode signal is input to switch an operation mode of the TAP circuit, characterized in that the input-terminal-side boundary cells and the output-terminal-side boundary cells are connected in parallel between the TDI terminal and the TDO terminal; and a communication system using the same.
    • 提供了一种边界扫描元件,该边界扫描元件包括多个串联连接并分别分配给各个输入端的输入端侧边界单元,多个输出端侧边界单元串联连接并分别分配给各个输出端, 用于控制输入和输出来自输入端侧和输出端侧边界单元的数据的TAP电路,用于输入要提供给边界单元的串行数据的TDI端,用于从输入端输出数据的TDO端 作为串行数据的边界单元,输入时钟信号的TCK端子以及输入模式信号以切换TAP电路的操作模式的TMS端子,其特征在于,输入端子侧边界单元 并且输出端侧边界单元在TDI端子和TDO端子之间并联连接; 以及使用其的通信系统。
    • 7. 发明公开
    • Vascular prosthesis and manufacturing method of the same
    • 血管造影,其制造方法和用于血管造影的基底
    • EP0393788A3
    • 1992-07-08
    • EP90200957.0
    • 1990-04-17
    • KOKEN CO. LTD.
    • Noishiki, YasuharaMiyata, Teruo
    • A61F2/04A61F2/06A61L27/00
    • A61L27/507A61F2/06A61F2/062A61L27/36Y10S623/901Y10S623/921
    • The invention relates to a vascular prosthesis wherein, fragments of biological tissues such as vascular tissues, connective tissues, fat tissues and muscular tissues and/or cells composing vascular walls such as vascular endothelial cells, smooth muscle cells and fibroblast cells are deposited and captured within the wall of a vascular prosthesis substrate (1); a manufacturing method comprising the steps of immersing a vascular prosthesis substrate into a dispersed solution of fragments of biological tissues such as vascular tissues, connective tissues, fat tissues and muscular tissues and/or cells composing vascular walls such as vascular endothelial cells, smooth muscle cells and fibroblast cells, and depositing and capturing the cells and/or tissue fragments on the inner wall and within the wall of the vascular prosthesis from one side to the other side of the vascular prosthesis substrate wall by providing a pressure differential between the outside and the inside of the vascular prosthesis substrate; and a substrate suitable for manufacturing a vascular prosthesis having a porous membrane having pores capable of trapping tissue fragments, or a laminate structure with such a membrane and another porous membrane having pores not large enough to pass the cells or tissue fragments.