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    • 1. 发明申请
    • 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
    • US20080040049A1
    • 2008-02-14
    • US11570558
    • 2005-06-08
    • Hiroki SatoAtsushi MakiTsuyoshi YamamotoMasashi Kiguchi
    • Hiroki SatoAtsushi MakiTsuyoshi YamamotoMasashi Kiguchi
    • G06F19/00
    • A61B5/7264A61B5/0059A61B5/7425A61B5/743G06F19/00G16H40/63
    • In the past, comparison of mean values or variances measured from multiple subjects with one another has been a mainstream of diagnostic support to be achieved using cerebral activity signals. However, in this case, it is hard to absorb individual differences, and the precision in a diagnostic support technology is low. In order to improve the precision in the diagnostic support technology, the property of data acquired by an optical organism measurement system is utilized in order to create and display information representing a change in the condition of each person. Thus, diagnosis of each person is effectively supported. Measured light signals are used to calculate and record changes in the concentrations of oxidized hemoglobin (Hb), deoxidized Hb, and total Hb respectively. Based on each data (representing the Hb concentration changes), two or more Hb concentration changes (for example, the oxidized Hb concentration change and deoxidized Hb concentration change) are classified according to whether the changes are increases or decreases, and indicated in the form of symbols, an image, or a graph. Thus, an examining person is provided with compressed and simplified information and supported in diagnosis.
    • 在过去,从多个受试者相互测量的平均值或差异的比较已经成为使用脑活动信号来实现的诊断支持的主流。 然而,在这种情况下,难以吸收个体差异,诊断支持技术的精度低。 为了提高诊断支持技术的精度,利用光学生物测量系统获取的数据的属性来创建和显示表示每个人的状况变化的信息。 因此,有效地支持每个人的诊断。 测量光信号用于计算和记录氧化血红蛋白(Hb),脱氧Hb和总Hb的浓度变化。 基于每个数据(表示Hb浓度变化),根据变化是增加还是减少来分类两种或更多种Hb浓度变化(例如,氧化的Hb浓度变化和脱氧的Hb浓度变化),并以表格 的符号,图像或图形。 因此,检查人员被提供压缩和简化的信息并且在诊断中被支持。
    • 2. 发明申请
    • Optical measurement instrument and optical measurement method
    • 光学测量仪器和光学测量方法
    • US20060178839A1
    • 2006-08-10
    • US11378448
    • 2006-03-20
    • Atsushi MakiYuuichi YamashitaTsuyoshi YamamotoHideaki Koizumi
    • Atsushi MakiYuuichi YamashitaTsuyoshi YamamotoHideaki Koizumi
    • G06F19/00
    • G01N21/49A61B5/0042A61B5/14553A61B5/7435
    • In order to provide an optical measurement system and an optical measurement method which is suitable for optically measuring a body to be inspected and easily obtaining an image of a desired item based on information obtained by the measurement, an optical measurement method comprising an initial display process for selectively instructing any one of selection of optical measurement, analysis of said optical measurement result and completion of a program (S1); a process for inputting items of condition including a measurement mode (S2); a process for displaying a light irradiation position and a light detection position and a state expressing measurement position relationship together with said mode (S4); a process for instructing to form a file for storing said optical measurement result; a process for instructing a measurement condition to detect light signals from the inside of a body to be inspected which is irradiated by a multi-wavelength multi-channel (S10); and a process for displaying said signals for each channel detected according to said instructed result (S11).
    • 为了提供一种光学测量系统和光学测量方法,该光学测量系统和光学测量方法适合于光学测量待检查的物体,并且基于通过测量获得的信息容易地获得所需物品的图像,光学测量方法包括初始显示处理 用于选择性地指示光学测量的选择,所述光学测量结果的分析和程序的完成中的任何一个(S1); 用于输入包括测量模式的条件项目的处理(S 2); 用于显示光照射位置和光检测位置的处理以及表示测量位置关系的状态与所述模式(S 4)。 用于指示形成用于存储所述光学测量结果的文件的处理; 用于指示测量条件以从多波长多通道照射的被检体的内部检测光信号的步骤(S10); 以及根据所述指示结果显示针对每个通道的所述信号的处理(S11)。
    • 5. 发明授权
    • Device for controlling equipment by using signals from a living body
    • 通过使用生物体信号控制设备的装置
    • US06321110B1
    • 2001-11-20
    • US09385419
    • 1999-08-30
    • Yoshitoshi ItoHideaki KoizumiAtsushi MakiYuichi YamashitaTsuyoshi Yamamoto
    • Yoshitoshi ItoHideaki KoizumiAtsushi MakiYuichi YamashitaTsuyoshi Yamamoto
    • A61B600
    • G06F3/015
    • A device for controlling equipment includes a light projector adapted to project light onto a head of a living body, a light collecting device for collecting the light having passed through the head from the light projector, a light measuring device for measuring an intensity of the light collected by the light collecting device, a memory device for storing a previous history of changes of the intensity of the light measured by the light measuring device, a signal judging circuit for judging if both the intensity of the light measured by the light measuring device and the previous history of changes of the intensity of the light satisfy a predetermined condition, a display device for displaying the intensity of the light measured by the light measuring device and a result obtained by the signal judging circuit, and a control signal generating circuit for generating a control signal to be supplied to an external equipment if the predetermined condition is satisfied.
    • 一种用于控制设备的装置,包括适用于将光投射到生物体的头部上的光投射器,用于收集从光投影仪通过头部的光的光收集装置,用于测量光强度的光测量装置 由光收集装置收集的存储装置,用于存储由光测量装置测量的光的强度变化的先前历史的存储装置,用于判断由光测量装置测量的光的强度和 光的强度变化的先前历史满足预定条件,用于显示由光测量装置测量的光的强度的显示装置和由信号判断电路获得的结果的控制信号产生电路, 如果满足预定条件,则提供给外部设备的控制信号。
    • 7. 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。
    • 8. 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。