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    • 1. 发明授权
    • Examination-item-selection device, an examination-item-selection method, and an examination-item-selection program
    • 检查项目选择装置,检查项目选择方法和检查项目选择程序
    • US08315883B2
    • 2012-11-20
    • US11859926
    • 2007-09-24
    • Yasuo SakuraiShigeharu OhyuTakuzo TakayamaMariko Shibata
    • Yasuo SakuraiShigeharu OhyuTakuzo TakayamaMariko Shibata
    • G06Q10/00
    • G06Q50/22G06F19/00G16H50/20G16H50/30
    • An examination-item database storing a plurality of types of examination items capable of examining a predetermined disease and attributes of these examination items so as to correspond to one another is prepared, the degree of risk for the predetermined disease is calculated based on individual physical information, a criterion for selection of an examination item for examining the predetermined disease is generated in accordance with the calculated degree of risk, and an examination item having an attribute meeting the selection criterion is searched out from the examination-item database. In addition, the calculated degree of risk and the examination-item database are displayed so as to correspond to the predetermined disease. This makes it possible to perform the optimal examination for each individual in accordance with the degree of risk, thereby improving the efficiency of detection of a disease. Moreover, reduction of superfluous examinations makes it possible to reduce physical and psychological burdens imposed on a patient by examinations.
    • 准备存储能够检查预定疾病的多种检查项目和这些检查项目的属性以便彼此对应的检查项目数据库,基于个体物理信息计算预定疾病的风险程度 根据计算出的风险程度生成用于选择检查预定疾病的检查项目的标准,并且从检查项目数据库中搜索具有满足选择标准的属性的检查项目。 此外,显示计算的风险程度和检查项数据库以便对应于预定疾病。 这使得可以根据风险程度对每个人进行最佳检查,从而提高疾病的检测效率。 此外,减少多余的考试可以通过考试减轻对病人施加的身心负担。
    • 3. 发明申请
    • EXAMINATION-ITEM-SELECTION DEVICE, AN EXAMINATION-ITEM-SELECTION METHOD, AND AN EXAMINATION-ITEM-SELECTION PROGRAM
    • 考试项目选择设备,考试项目选择方法和考试项目选择程序
    • US20080076976A1
    • 2008-03-27
    • US11859926
    • 2007-09-24
    • Yasuo SAKURAIShigeharu OhyuTakuzo TakayamaMariko Shibata
    • Yasuo SAKURAIShigeharu OhyuTakuzo TakayamaMariko Shibata
    • A61B5/00G06Q50/00
    • G06Q50/22G06F19/00G16H50/20G16H50/30
    • An examination-item database storing a plurality of types of examination items capable of examining a predetermined disease and attributes of these examination items so as to correspond to one another is prepared, the degree of risk for the predetermined disease is calculated based on individual physical information, a criterion for selection of an examination item for examining the predetermined disease is generated in accordance with the calculated degree of risk, and an examination item having an attribute meeting the selection criterion is searched out from the examination-item database. In addition, the calculated degree of risk and the examination-item database are displayed so as to correspond to the predetermined disease. This makes it possible to perform the optimal examination for each individual in accordance with the degree of risk, thereby improving the efficiency of detection of a disease. Moreover, reduction of superfluous examinations makes it possible to reduce physical and psychological burdens imposed on a patient by examinations.
    • 准备存储能够检查预定疾病的多种检查项目和这些检查项目的属性以便彼此对应的检查项目数据库,基于个体物理信息计算预定疾病的风险程度 根据计算出的风险程度生成用于选择检查预定疾病的检查项目的标准,并且从检查项目数据库中搜索具有满足选择标准的属性的检查项目。 此外,显示计算的风险程度和检查项数据库以便对应于预定疾病。 这使得可以根据风险程度对每个人进行最佳检查,从而提高疾病的检测效率。 此外,减少多余的考试可以通过考试减轻对病人施加的身心负担。
    • 9. 发明授权
    • Nuclear medicine diagnosis apparatus
    • 核医诊断仪
    • US08604439B2
    • 2013-12-10
    • US12976046
    • 2010-12-22
    • Manabu TeshigawaraTakuzo TakayamaTakaya UmeharaTomoyasu Komori
    • Manabu TeshigawaraTakuzo TakayamaTakaya UmeharaTomoyasu Komori
    • G01T1/164
    • G01T1/40A61B6/037A61B6/5205A61B6/5258G01T1/2985G01T7/005
    • According to one embodiment, a nuclear medicine diagnosis includes a light signal generating unit, photodetection unit, measurement unit, calculation unit, and storage unit. The light signal generating unit repeatedly generates light signals. The photodetection unit repeatedly generates first output signals corresponding to intensities of the light signals, repeatedly generates second output signals corresponding to intensities of gamma rays emitted from a subject. The measurement unit repeatedly measures light signal detection times and repeatedly measures gamma ray detection times. The calculation unit calculates a difference between a target gamma ray detection time and a target light signal detection time of the light signal detection times for each of the gamma ray detection times. The target light signal detection time is measured before the target gamma ray detection time. The storage unit stores the calculated difference in association with a target second output signal of the second output signals.
    • 根据一个实施例,核医学诊断包括光信号发生单元,光电检测单元,测量单元,计算单元和存储单元。 光信号发生单元重复产生光信号。 光检测单元重复产生对应于光信号强度的第一输出信号,重复产生对应于从被摄体发射的伽马射线强度的第二输出信号。 测量单元重复测量光信号检测时间并重复测量伽马射线检测时间。 计算单元计算每个伽马射线检测时间的目标伽马射线检测时间和光信号检测时间的目标光信号检测时间之间的差。 在目标γ射线检测时间之前测量目标光信号检测时间。 存储单元将所计算的差与第二输出信号的目标第二输出信号相关联地存储。
    • 10. 发明申请
    • NUCLEAR MEDICINE DIAGNOSIS APPARATUS
    • 核医学诊断设备
    • US20110163238A1
    • 2011-07-07
    • US12976046
    • 2010-12-22
    • Manabu TESHIGAWARATakuzo TakayamaTakaya UmeharaTomoyasu Komori
    • Manabu TESHIGAWARATakuzo TakayamaTakaya UmeharaTomoyasu Komori
    • G01T1/164
    • G01T1/40A61B6/037A61B6/5205A61B6/5258G01T1/2985G01T7/005
    • According to one embodiment, a nuclear medicine diagnosis includes a light signal generating unit, photodetection unit, measurement unit, calculation unit, and storage unit. The light signal generating unit repeatedly generates light signals. The photodetection unit repeatedly generates first output signals corresponding to intensities of the light signals, repeatedly generates second output signals corresponding to intensities of gamma rays emitted from a subject. The measurement unit repeatedly measures light signal detection times and repeatedly measures gamma ray detection times. The calculation unit calculates a difference between a target gamma ray detection time and a target light signal detection time of the light signal detection times for each of the gamma ray detection times. The target light signal detection time is measured before the target gamma ray detection time. The storage unit stores the calculated difference in association with a target second output signal of the second output signals.
    • 根据一个实施例,核医学诊断包括光信号发生单元,光电检测单元,测量单元,计算单元和存储单元。 光信号发生单元重复产生光信号。 光检测单元重复产生对应于光信号强度的第一输出信号,重复产生对应于从被摄体发射的伽马射线强度的第二输出信号。 测量单元重复测量光信号检测时间并重复测量伽马射线检测时间。 计算单元计算每个伽马射线检测时间的目标伽马射线检测时间和光信号检测时间的目标光信号检测时间之间的差。 在目标γ射线检测时间之前测量目标光信号检测时间。 存储单元将所计算的差与第二输出信号的目标第二输出信号相关联地存储。