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    • 4. 发明申请
    • JOSEPHSON QUANTUM COMPUTING DEVICE AND INTEGRATED CIRCUIT USING SUCH DEVICES
    • JOSEPHSON量子计算设备和使用此类设备的集成电路
    • US20120326130A1
    • 2012-12-27
    • US13607516
    • 2012-09-07
    • Sadamichi MAEKAWATaro YAMASHITASaburo TAKAHASHI
    • Sadamichi MAEKAWATaro YAMASHITASaburo TAKAHASHI
    • H01L39/22
    • G06N99/002B82Y10/00
    • A Josephson quantum computing device and an integrated circuit using Josephson quantum computing devices which can realize a NOT gate operation controlled with 2 bits will be provided. The Josephson quantum computing device (1) comprises: a superconducting ring member (10) having a π-junction (6) and a 0-junction (7); and a quantum state detecting member (20) constituted by a superconducting quantum interference device arranged outside of the superconducting ring member, wherein a bonding and an antibonding state brought about by a tunneling effect between a | ↑ > and a | ↓ > state as two states degenerate in energy of the superconducting ring member (10) are regarded as quantum bits. The bonding and antibonding states as the quantum bits are read out by the quantum state detecting member (20). The two bit controlled NOT gate operation can be performed by the two quantum bits comprising said quantum bits.
    • 将提供约瑟夫森量子计算设备和使用约瑟夫森量子计算设备的集成电路,其可以实现以2位控制的非门操作。 约瑟夫森量子计算装置(1)包括:具有结点(6)和0结(7)的超导环构件(10); 以及由超导量子干涉元件构成的量子态检测元件(20),所述超导量子干涉元件设置在所述超导环构件的外侧,其中,在所述超导环形构件之间的隧道效应引起的接合和反应状态, ↑>和a | ↓>状态为超导环形元件(10)的能量退化的两个状态被认为是量子位。 作为量子比特的键合反应状态由量子状态检测部件(20)读出。 两位控制的非门操作可以由包括所述量子位的两个量子位执行。
    • 6. 发明申请
    • Josephson quantum computing device and integrated circuit using such devices
    • 约瑟夫森量子计算设备和使用这种设备的集成电路
    • US20090261319A1
    • 2009-10-22
    • US11658647
    • 2005-07-25
    • Sadamichi MaekawaTaro YamashitaSaburo Takahshi
    • Sadamichi MaekawaTaro YamashitaSaburo Takahshi
    • H01L39/22
    • G06N99/002B82Y10/00
    • A Josephson quantum computing device and an integrated circuit using Josephson quantum computing devices which can realize a NOT gate operation controlled with 2 bits will be provided. The Josephson quantum computing device (1) comprises: a superconducting ring member (10) having a π-junction (6) and a 0-junction (7); and a quantum state detecting member (20) constituted by a superconducting quantum interference device arranged outside of the superconducting ring member, wherein a bonding and an antibonding state brought about by a tunneling effect between a |↑> and a |↓> state as two states degenerate in energy of the superconducting ring member (10) are regarded as quantum bits. The bonding and antibonding states as the quantum bits are read out by the quantum state detecting member (20). The two bit controlled NOT gate operation can be performed by the two quantum bits comprising said quantum bits.
    • 将提供约瑟夫森量子计算设备和使用约瑟夫森量子计算设备的集成电路,其可以实现以2位控制的非门操作。 约瑟夫森量子计算装置(1)包括:具有π结(6)和0结(7)的超导环构件(10); 和由超导量子干涉元件构成的量子态检测元件(20),该超导量子干涉元件设置在超导环形元件外部,其中由|↑>↑>状态之间的隧道效应引起的接合和反应状态为二 超导环构件(10)的能量退化的状态被认为是量子位。 作为量子比特的键合反应状态由量子状态检测部件(20)读出。 两位控制的非门操作可以由包括所述量子位的两个量子位执行。
    • 7. 发明授权
    • Detection of digestive organ cancer, gastric cancer, colorectal cancer, pancreatic cancer, and biliary tract cancer by gene expression profiling
    • 通过基因表达谱检测消化器官癌,胃癌,结肠直肠癌,胰腺癌和胆道癌
    • US08932990B2
    • 2015-01-13
    • US13391858
    • 2010-08-03
    • Shuichi KanekoMasao HondaYoshio SakaiTaro Yamashita
    • Shuichi KanekoMasao HondaYoshio SakaiTaro Yamashita
    • C40B30/04C12Q1/68C40B40/06
    • C12Q1/6886C12Q2600/158C12Q2600/16
    • The present invention provides a method and a reagent for detecting a digestive organ cancer, gastric cancer, colorectal cancer, pancreatic cancer, or biliary tract cancer patient by analyzing genes with expression levels (in peripheral blood) that vary in association with digestive organ cancer, gastric cancer, colorectal cancer, pancreatic cancer, or biliary tract cancer cases, compared with normal healthy subjects. Specifically, the method for detecting a digestive organ cancer, gastric cancer, colorectal cancer, pancreatic cancer, or biliary tract cancer patient based on expression profiles comprises obtaining the expression profile of at least one gene selected from the group consisting of probes corresponding to genes with expression levels (in peripheral blood) that vary in digestive organ cancer, gastric cancer, colorectal cancer, pancreatic cancer, and biliary tract cancer cases, compared with normal healthy subjects. The reagent for detecting digestive organ cancer, gastric cancer, colorectal cancer, pancreatic cancer, or biliary tract cancer contains nucleotides or partial sequences thereof consisting of the nucleotide sequence of at least one gene selected from the group consisting of probes with expression levels that vary in digestive organ cancer, gastric cancer, colorectal cancer, pancreatic cancer, or biliary tract cancer, or nucleotides containing sequences complementary thereto.
    • 本发明提供了通过分析与消化器官癌相关的变化的表达水平(外周血)的基因来检测消化器官癌,胃癌,结肠直肠癌,胰腺癌或胆道癌患者的方法和试剂, 胃癌,结肠直肠癌,胰腺癌或胆道癌,与正常健康人相比。 具体地,基于表达谱,检测消化器官癌,胃癌,结肠直肠癌,胰腺癌或胆道癌患者的方法包括获得至少一种基因的表达谱,所述基因选自对应于具有 与正常健康受试者相比,消化器官癌,胃癌,结肠直肠癌,胰腺癌和胆道癌患者的表达水平(外周血)差异不大。 用于检测消化器官癌,胃癌,结肠直肠癌,胰腺癌或胆道癌的试剂含有由至少一种基因的核苷酸序列组成的核苷酸或其部分序列,所述核苷酸序列选自下组的探针:表达水平在 消化器官癌,胃癌,结肠直肠癌,胰腺癌或胆道癌,或含有与其互补的序列的核苷酸。