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    • 1. 发明授权
    • Separation preventive pipe joint
    • 隔离预防管接头
    • US5609368A
    • 1997-03-11
    • US604476
    • 1996-02-21
    • Atsushi MakiToshio ToshimaTakahiro Ishihara
    • Atsushi MakiToshio ToshimaTakahiro Ishihara
    • F16L21/08F16L25/00
    • F16L21/08
    • A separation preventive pipe joint is provided, in which a locking ring is held by an elastic ring with its axis centered in a locking ring receiving groove. An outer peripheral projection is formed on an end portion of the spigot, the outer peripheral projection being engageable with the locking ring from a location deeper than the locking ring. An inner peripheral projection is formed in an inner peripheral portion of the socket which is located deeper than the locking ring receiving groove for backing up the locking ring. A first inner peripheral surface having a larger diameter than the inner peripheral projection is formed in an inner peripheral portion of the socket which is located deeper than the inner peripheral projection. A second inner peripheral surface is formed between the first inner peripheral surface and the inner peripheral projection, the second inner peripheral surface being larger than the inner peripheral projection and smaller than the first inner peripheral surface in diameter.
    • 提供一种分离防止管接头,其中锁定环由其轴线以锁定环接收槽为中心的弹性环保持。 一个外周突起形成在插口的一个端部上,该外周突出部可以从比该锁环更深的位置与该锁定环啮合。 内周边突起形成在插座的内周部,其位于比用于支撑锁定环的锁定环接收槽更深的位置。 在插座的内周部形成有比内周突起大的直径的第一内周面,位于比内周突出部更深的位置。 第二内周面形成在第一内周面和内周突起之间,第二内周面比内周突起大,比第一内周面小。
    • 4. 发明授权
    • Optical system for measuring metabolism in a body, method and program
    • 用于测量身体代谢的光学系统,方法和程序
    • US07516021B2
    • 2009-04-07
    • US11570558
    • 2005-06-08
    • Hiroki SatoAtsushi MakiTsuyoshi YamamotoMasashi Kiguchi
    • Hiroki SatoAtsushi MakiTsuyoshi YamamotoMasashi Kiguchi
    • G01N31/00
    • A61B5/7264A61B5/0059A61B5/7425A61B5/743G06F19/00G16H40/63
    • Apparatus and method for hemoglobin measurement including irradiating light to a living body, detecting light that has propagated through the living body, and acquiring measured data that represents a change in the concentration of oxidized hemoglobin in the living body and a change in the concentration of deoxidized hemoglobin; irradiating light to the living body, detecting light that has propagated through the living body, and acquiring measured data that represents a change in the concentration of oxidized hemoglobin in the living body and a change in the concentration of deoxidized hemoglobin; classifying the data measured at the first step and the data measured at the second step according to each of an increase or a decrease in the concentration of oxidized hemoglobin and an increase or a decrease in the concentration of deoxidized hemoglobin; and displaying the classifications determined at the third step.
    • 用于血红蛋白测量的装置和方法,包括向生物体照射光,检测通过活体传播的光,并获取表示生物体中氧化血红蛋白浓度变化的测量数据和脱氧浓度变化 血红蛋白 对生物体照射光,检测通过生物体传播的光,获取表示生物体中氧化血红蛋白浓度变化的测定数据和脱氧血红蛋白浓度的变化; 根据氧化血红蛋白浓度的增加或减少以及脱氧血红蛋白浓度的增加或减少,分别在第一步骤测量的数据和在第二步骤测量的数据; 并显示在第三步确定的分类。
    • 6. 发明申请
    • Measurement System and Method for Measuring Living Bodies
    • 生活体测量系统和方法
    • US20070287922A1
    • 2007-12-13
    • US11696295
    • 2007-04-04
    • Naoki TanakaAtsushi MakiTakushige Katsura
    • Naoki TanakaAtsushi MakiTakushige Katsura
    • A61B5/02
    • A61B5/0261A61B5/021A61B5/02416A61B5/6814
    • A living body measurement system including a cerebral blood volume measurement unit for measuring a regional cerebral blood volume of a subject, an arterial pressure/heart rate measurement unit for measuring an arterial pressure and/or a heart rate of the subject, an analysis unit for analyzing signals measured by the cerebral blood volume measurement unit and the arterial pressure/heart rate measurement unit, an extraction unit for extracting information concerning a regional cerebral vascular state of the subject on the basis of an output of the analysis unit, and a display unit for displaying a measurement result measured by the cerebral blood volume measurement unit and/or the arterial pressure/heart rate measurement unit, an analysis result analyzed by the analysis unit, or an extraction result extracted by the extraction unit.
    • 一种生物体测量系统,包括用于测量对象的局部脑血容量的脑血容量测量单元,用于测量受试者的动脉压和/或心率的动脉压/心率测量单元,用于 分析由脑血容量测量单元和动脉压/心率测量单元测量的信号,提取单元,用于根据分析单元的输出提取关于对象的区域性脑血管状态的信息;以及显示单元 用于显示由脑血容量测量单元和/或动脉压/心率测量单元测量的测量结果,由分析单元分析的分析结果或由提取单元提取的提取结果。
    • 7. 发明授权
    • Living body light measurement system and signal processing method
    • 生活体光测量系统及信号处理方法
    • US07171250B2
    • 2007-01-30
    • US11010668
    • 2004-12-14
    • Tsuyoshi YamamotoAtsushi MakiTakusige KaturaHideo Kawaguchi
    • Tsuyoshi YamamotoAtsushi MakiTakusige KaturaHideo Kawaguchi
    • A61B5/00
    • A61B5/14553A61B5/0042A61B2562/0233A61B2562/046
    • An image generating methodology for displaying brain activation areas with improved accuracy in a living body light measurement system for generating an image of the changes in blood volume of the brain. A spatial intensity distribution of changes in blood volume can be generated by detecting brain activation in many sampling points, and a spatial interpolation process is executed on this data. A threshold process is executed on the distribution to extract the distribution of coordinates having a signal intensity of at least the predetermined threshold. The displacement between the brain activation area and the maximal location of the distribution is stored in a recording unit of the system in order to compensate for the distribution extracted by the threshold process. Accordingly, brain activation areas can be estimated with greater location accuracy, and the diagnosis and medial treatment for brain diseases can likewise be executed with greater accuracy.
    • 一种用于在生物体光测量系统中显示脑激活区域以提高准确度的图像产生方法,用于产生脑的血容量变化的图像。 通过检测许多采样点的大脑激活可以产生血容量变化的空间强度分布,并对该数据执行空间插值处理。 对分布执行阈值处理以提取具有至少预定阈值的信号强度的坐标分布。 大脑激活区域和分布的最大位置之间的位移被存储在系统的记录单元中,以便补偿由阈值处理提取的分布。 因此,可以以更高的定位精度估计脑激活区域,并且同样可以更准确地执行脑疾病的诊断和内侧治疗。