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    • 1. 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。
    • 2. 发明申请
    • Living body light measurement system and signal processing method
    • 生活体光测量系统及信号处理方法
    • US20050192490A1
    • 2005-09-01
    • US11010668
    • 2004-12-14
    • Tsuyoshi YamamotoAtsushi MakiTakusige KaturaHideo Kawaguchi
    • Tsuyoshi YamamotoAtsushi MakiTakusige KaturaHideo Kawaguchi
    • G01N21/17A61B5/00A61B10/00
    • 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的分布。 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。
    • 4. 发明授权
    • Biological photometric equipment
    • 生物测光设备
    • US07991447B2
    • 2011-08-02
    • US10577944
    • 2004-07-01
    • Hiroki SatoMasashi KiguchiAtsushi MakiTsuyoshi Yamamoto
    • Hiroki SatoMasashi KiguchiAtsushi MakiTsuyoshi Yamamoto
    • A61B5/1455
    • A61B5/14553
    • To control information obtained from inside of a living body with higher precision as compared to that in the conventional technology by controlling a ratio of intensities of light, directed to a trial body, in a plurality of wavelength ranges different in peak wavelength from each other, a measurement error included in information obtained from the living body can be controlled by changing a ratio of intensity of the light in the first wavelength range against that of the light in the second wavelength range. When intensity of irradiated light is limited from the viewpoint of safety to the trial subject, keeping a ratio of the light irradiated to the trial body in the first wavelength range against that of the light in the second wavelength range under a prespecified value and also changing the ratio of irradiated light intensities under the prespecified value.
    • 通过在峰值波长不同的多个波长范围内控制指向试验体的光的强度比,通过控制比现有技术更高的精度从内部获得的生物体的信息, 可以通过改变第一波长范围内的光的强度与第二波长范围内的光的强度的比例来控制从生物体获得的信息中包括的测量误差。 当照射光的强度从安全性的角度受限于试验对象时,将照射在试验体上的光的第1波长范围内的光与第2波长范围内的光的比例保持在规定值以下, 照射光强度的比例在预先指定的值之下。
    • 9. 发明授权
    • Optical measurement instrument and optical measurement method
    • 光学测量仪器和光学测量方法
    • US07359825B2
    • 2008-04-15
    • US11378448
    • 2006-03-20
    • Atsushi MakiYuuichi YamashitaTsuyoshi YamamotoHideaki Koizumi
    • Atsushi MakiYuuichi YamashitaTsuyoshi YamamotoHideaki Koizumi
    • G01C17/00
    • 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 including 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; a process for inputting items of condition including a measurement mode; a process for displaying a light irradiation position and a light detection position and a state expressing measurement position relationship together with said mode; 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; and a process for displaying said signals for each channel detected according to said instructed result.
    • 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期望项目的图像,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; 用于输入包括测量模式的条件项目的处理; 用于显示光照射位置和光检测位置以及表示测量位置关系的状态与所述模式的过程; 用于指示形成用于存储所述光学测量结果的文件的处理; 用于指示测量条件从多波长多通道照射的被检体的内部检测光信号的处理; 以及用于显示根据所述指示结果检测的每个通道的所述信号的处理。
    • 10. 发明申请
    • Biological photometric equipment
    • 生物测光设备
    • US20070135694A1
    • 2007-06-14
    • US10577944
    • 2004-07-01
    • Hiroki SatoMassashi KiguchiAtsushi MakiTsuyoshi Yamamoto
    • Hiroki SatoMassashi KiguchiAtsushi MakiTsuyoshi Yamamoto
    • A61B5/00
    • A61B5/14553
    • To control information obtained from inside of a living body with higher precision as compared to that in the conventional technology by controlling a ratio of intensities of light, directed to a trial body, in a plurality of wavelength ranges different in peak wavelength from each other, a measurement error included in information obtained from the living body can be controlled by changing a ratio of intensity of the light in the first wavelength range against that of the light in the second wavelength range. When intensity of irradiated light is limited from the viewpoint of safety to the trial subject, by keeping a ratio of the light irradiated to the trial body in the first wavelength range against that of the light in the second wavelength range under a prespecified value and also by changing the ratio of irradiated light intensities under the prespecified value, a measurement error included in information obtained from the living body can be controlled.
    • 通过在峰值波长不同的多个波长范围内控制指向试验体的光的强度比,通过控制比现有技术更高的精度从内部获得的生物体的信息, 可以通过改变第一波长范围内的光的强度与第二波长范围内的光的强度的比例来控制从生物体获得的信息中包括的测量误差。 当照射光的强度从安全性的角度受限于试验对象时,通过将照射到试验体的光在第一波长范围内的光与第二波长范围内的光的比例保持在规定值,并且还 通过改变预定值下的照射光强度的比率,可以控制从活体获得的信息中包括的测量误差。