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    • 6. 发明专利
    • Electromagnetic field distribution simulation device and method
    • 电磁场分布仿真器件及方法
    • JP2007078634A
    • 2007-03-29
    • JP2005270287
    • 2005-09-16
    • Daiwa Can Co LtdOsamu HashimotoShinya Watanabe大和製罐株式会社橋本 修慎也 渡邊
    • HASHIMOTO OSAMUWATANABE SHINYATAKATOMI TETSUYAIJUIN TAICHINAKAMURA KOJI
    • G01R29/08G06F17/11G06F19/00
    • PROBLEM TO BE SOLVED: To simulate electromagnetic field distribution in an environment accompanied by lost dielectric or lost magnetic substance at high accuracy and low calculation cost. SOLUTION: A parameter such as a boundary condition is input by an input section 11. An electromagnetic field equation is divided into an advective term and a non-advective term and is processed by applying a segregation-by-time method. A CIP method and characteristic curve method are applied to the advective term of the electromagnetic field equation and numerical solution of the mean value of time variation is obtained by an advective term processing section 13. A non-advective term processing section 14 substitutes the numerical solution of the advective term processing section 13 for a discrete equation of a secondary central difference method, and obtains numerical solution advanced by one time step. The time step is repeated until it becomes a desired time. When it becomes the desired time, a numerical analysis result is displayed or printed using an output section 15. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:在高精度和低计算成本的情况下模拟伴有电介质或磁性物质损失的环境中的电磁场分布。 解决方案:诸如边界条件的参数由输入部分11输入。电磁场方程被分为平流项和非平流项,并且通过应用隔离方法进行处理。 电磁场方程的平流项应用CIP方法和特征曲线法,平流项处理部分13获得时间变化平均值的数值解。非平流项处理部分14代替数值解 对于二次中心差分方法的离散方程的平流项处理部分13,并获得一次提前的数值解。 重复时间步骤,直到它变成期望的时间。 当成为期望的时间时,使用输出部分15显示或打印数字分析结果。版权所有:(C)2007,JPO&INPIT
    • 8. 发明专利
    • Marker for diagnosing breast cancer
    • 用于诊断乳腺癌的标记
    • JP2012085555A
    • 2012-05-10
    • JP2010233482
    • 2010-10-18
    • Shinya Watanabe慎哉 渡邉
    • WATANABE SHINYAITO EMIIMAI JUNICHIOTAKE TORUFUJITA TEIZOSAKAI YUKA
    • C12N15/09C12Q1/68G01N33/574G01N37/00
    • PROBLEM TO BE SOLVED: To provide a marker for detecting triple negative breast cancer; to provide a method for detecting or diagnosing the triple negative breast cancer with the marker; and to provide a kit for detecting or diagnosing the triple negative breast cancer.SOLUTION: MMP7 gene which is low in expression level in Luminal A, Luminal B and HER2 diseases among the sub-types of breast cancer, and rises the expression level in the triple negative breast cancer on the other hand, and a polypeptide encoded by the gene are used as markers for detecting the triple negative breast cancer. A probe for detecting the triple negative breast cancer marker gene and an antibody for the polypeptide encoded by the gene are used. Thus, the marker for detecting the triple negative breast cancer can be detected, and the triple negative breast cancer can quickly and surely be detected or diagnosed.
    • 要解决的问题:提供检测三阴性乳腺癌的标记物; 提供用该标记检测或诊断三阴性乳腺癌的方法; 并提供用于检测或诊断三阴性乳腺癌的试剂盒。 解决方案:在乳腺癌亚型中Luminal A,Luminal B和HER2疾病的表达水平低的MMP7基因和三阴性乳腺癌的表达水平升高,另一方面,多肽 由该基因编码用作检测三阴性乳腺癌的标记物。 使用检测三阴性乳腺癌标记基因的探针和由该基因编码的多肽的抗体。 因此,可以检测出三重阴性乳腺癌的检测标记,能够快速,可靠地检测或诊断三阴性乳腺癌。 版权所有(C)2012,JPO&INPIT
    • 9. 发明专利
    • Temperature distribution simulation device and method
    • 温度分布模拟装置及方法
    • JP2007080177A
    • 2007-03-29
    • JP2005270288
    • 2005-09-16
    • Daiwa Can Co LtdOsamu HashimotoShinya Watanabe大和製罐株式会社橋本 修慎也 渡邊
    • HASHIMOTO OSAMUWATANABE SHINYATAKATOMI TETSUYAIJUIN TAICHINAKAMURA KOJI
    • G06F17/50
    • PROBLEM TO BE SOLVED: To simulate a radio wave absorber and the temperature distribution of its periphery by taking into consideration heat radiation. SOLUTION: An FDTD method processing part 13 calculates the absorption electric power distribution per unit volume in a steady state of an electromagnetic field by using an FDTD method. Next, an MR method processing part 14 determines a self-absorption rate αs of the heat radiation and a rate (a READ value) Rd of absorbing from the other wall surface element by using a Monte Carlo read method. A SIMPLE method processing part 15 also determines an analytical value of a speed field and a pressure field by continuously solving an equation of continuity and an equation of motion by using a SIMPLE method. Radiation energy and absorption energy in the respective wall surface elements are finally calculated by using the αs and the Rd determined by a Monte Carlo read method. These energy quantity is substituted in an equation of energy together with absorption electric power provided by the FDTD method, and an analytical value of a temperature field is determined. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:通过考虑热辐射来模拟无线电波吸收体及其周边的温度分布。 解决方案:FDTD方法处理部分13通过使用FDTD方法计算电磁场的稳定状态下的每单位体积的吸收功率分布。 接下来,MR方法处理部分14通过使用蒙特卡罗读取方法确定热辐射的自吸收率αs和从另一壁表面元件吸收的速率(READ值)Rd。 SIMPLE方法处理部分15还通过使用SIMPLE方法连续求解连续性方程和运动方程式来确定速度场和压力场的分析值。 最终通过使用通过蒙特卡洛读取方法确定的αs和Rd来计算相应壁表面元件中的辐射能和吸收能。 这些能量在能量方程式中与FDTD方法提供的吸收电力代替,并且确定温度场的分析值。 版权所有(C)2007,JPO&INPIT