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    • 3. 发明申请
    • Disease Diagnosis Support System
    • 疾病诊断支援系统
    • US20090118602A1
    • 2009-05-07
    • US11916892
    • 2006-06-08
    • Shingo KawasakiNoriyoshi IchikawaFumio KawaguchiHideo KawaguchiNaoki TanakaMasahiko MikuniMasato Fukuda
    • Shingo KawasakiNoriyoshi IchikawaFumio KawaguchiHideo KawaguchiNaoki TanakaMasahiko MikuniMasato Fukuda
    • A61B5/1455
    • A61B5/145A61B5/14546A61B5/14553G06F19/00G16H50/70
    • There is provided a system for supporting the assessment as to which disease group the subject to be examined falls in or what position in the whole disease group the subject is in. This support system comprises the data storage part which stores feature values of optical bio-measurement data of many subjects including patients in multiple disease groups, the analysis part which extracts plural kinds of feature values from the optical bio-measurement data and the display part which displays the results of analysis in the analysis part associated with the dictionary data, wherein the display part produces a scatter diagram on which features values of the dictionary data are plotted, with one of the two feature values being plotted along the axis of abscissa and the other along the axis of ordinate, and displays the positions of the subject to be assessed on the scatter diagram superimposed on the scatter diagram. With this scatter diagram, the relationship between the features of the subject and the feature of the disease group can be known in one glance.
    • 提供了一种系统,用于支持被检查对象的哪一个疾病组属于被检者所在的整个疾病组中的哪一个或多个位置。该支持系统包括存储光学生物学特征值的数据存储部分, 包括多个疾病组中的患者的许多受试者的测量数据,从光学生物测量数据中提取多种特征值的分析部分和显示与字典数据相关联的分析部分中的分析结果的显示部分,其中 显示部分产生一个散点图,绘制了字典数据的特征值,其中两个特征值中的一个沿着横坐标轴绘制,另一个是沿着纵坐标轴绘制,并将主体的位置显示为 在散点图上进行评估,叠加在散点图上。 利用该散点图,可以一目了然地了解该受试者的特征与疾病组特征之间的关系。
    • 4. 发明授权
    • Disease diagnosis support system
    • 疾病诊断支持系统
    • US08386192B2
    • 2013-02-26
    • US11916892
    • 2006-06-08
    • Shingo KawasakiNoriyoshi IchikawaFumio KawaguchiHideo KawaguchiNaoki TanakaMasahiko MikuniMasato Fukuda
    • Shingo KawasakiNoriyoshi IchikawaFumio KawaguchiHideo KawaguchiNaoki TanakaMasahiko MikuniMasato Fukuda
    • G01N33/48
    • A61B5/145A61B5/14546A61B5/14553G06F19/00G16H50/70
    • There is provided a system for supporting the assessment as to which disease group the subject to be examined falls in or what position in the whole disease group the subject is in. This support system comprises the data storage part which stores feature values of optical bio-measurement data of many subjects including patients in multiple disease groups, the analysis part which extracts plural kinds of feature values from the optical bio-measurement data and the display part which displays the results of analysis in the analysis part associated with the dictionary data, wherein the display part produces a scatter diagram on which features values of the dictionary data are plotted, with one of the two feature values being plotted along the axis of abscissa and the other along the axis of ordinate, and displays the positions of the subject to be assessed on the scatter diagram superimposed on the scatter diagram. With this scatter diagram, the relationship between the features of the subject and the feature of the disease group can be known in one glance.
    • 提供了一种系统,用于支持被检查对象的哪一个疾病组属于被检者所在的整个疾病组中的哪一个或多个位置。该支持系统包括存储光学生物学特征值的数据存储部分, 包括多个疾病组中的患者的许多受试者的测量数据,从光学生物测量数据中提取多种特征值的分析部分和显示与字典数据相关联的分析部分中的分析结果的显示部分,其中 显示部分产生一个散点图,绘制了字典数据的特征值,其中两个特征值中的一个沿着横坐标轴绘制,另一个是沿着纵坐标轴绘制,并将主体的位置显示为 在散点图上进行评估,叠加在散点图上。 利用该散点图,可以一目了然地了解该受试者的特征与疾病组特征之间的关系。
    • 6. 发明授权
    • Biological light measuring instrument
    • 生物光测量仪器
    • US07228166B1
    • 2007-06-05
    • US10049313
    • 2000-09-13
    • Shingo KawasakiNoriyoshi IchikawaFumio Kawaguchi
    • Shingo KawasakiNoriyoshi IchikawaFumio Kawaguchi
    • A61B6/00
    • A61B5/4094A61B5/0073A61B5/064A61B5/6814
    • A biological light measuring instrument for illuminating a subject with a plurality of beams of light from a plurality of illuminating positions, measuring the light beams transmitted through the subject, and creating a topographic image showing ecological information about the inside of the subject, comprising unit for creating three-dimensional coordinate data representing the relationship among the illuminating positions and a reference point on the subject and the relationship between the light measuring position and the reference point, unit for setting the illuminating positions and light measuring position on a three-dimensional shape image of the subject according to the three-dimensional coordinate data, and unit for creating a three-dimensional topographic image according to the three-dimensional coordinate data, and unit for superposing the three-dimensional topographic image on the shape image while maintaining the relationships of the illuminating positions and the light measuring position.
    • 一种生物光测量仪器,用于利用来自多个照明位置的多个光束照射被检体,测量透过被检体的光束,以及创建显示关于被检体内部的生态信息的地形图像,其包括: 生成表示被检体的照明位置和基准点之间的关系的三维坐标数据以及光测量位置与基准点之间的关系,用于设置三维形状图像上的照明位置和光测量位置的单元 以及根据三维坐标数据创建三维地形图像的单元,以及用于将三维地形图像叠加在形状图像上的单元,同时保持三维坐标数据的关系 照明位置和灯m 确定位置
    • 8. 发明申请
    • Optical measurement apparatus for living body
    • 生物体光学测量装置
    • US20070142719A1
    • 2007-06-21
    • US10578725
    • 2004-11-01
    • Shingo KawasakiNoriyoshi IchikawaNaoki Tanaka
    • Shingo KawasakiNoriyoshi IchikawaNaoki Tanaka
    • A61B5/00
    • G06K9/0051A61B5/0261A61B5/4064A61B5/7203G06T5/002
    • A principal component analysis or an independent component analysis is conducted on the living body signals, e.g., local cerebral blood amount change signals obtained by the living body optical measurement to extract and display multiple component signals thereof. Signals other than the component signals containing noise are selected from these component signals automatically or manually, and the local cerebral blood amount change signals are reconstructed by using selected signals. The reconstructed signals is displayed and further subjected to the component analysis or the reconstruction as appropriate, and used for the profiling of information necessary for the diagnosis. Consequently, high-precision target signals can be obtained by completely removing external noise included in the living body signals, particularly the noise which cannot be adequately removed by the moving average and the filtering processings.
    • 对生物体信号进行主成分分析或独立成分分析,例如通过生物体光学测定得到的局部脑血量变化信号,提取并显示多个成分信号。 从包含噪声的分量信号以外的信号自动地或手动地从这些分量信号中选择,并且通过使用所选择的信号重建局部脑血量变化信号。 显示重建的信号,并进一步进行成分分析或重建,并用于诊断所需信息的分析。 因此,通过完全去除包括在生物体信号中的外部噪声,特别是通过移动平均和过滤处理不能充分消除的噪声,可以获得高精度目标信号。
    • 9. 发明授权
    • Optical measurement apparatus for living body
    • 生物体光学测量装置
    • US08019399B2
    • 2011-09-13
    • US10578725
    • 2004-11-01
    • Shingo KawasakiNoriyoshi IchikawaNaoki Tanaka
    • Shingo KawasakiNoriyoshi IchikawaNaoki Tanaka
    • A61B5/1455
    • G06K9/0051A61B5/0261A61B5/4064A61B5/7203G06T5/002
    • A principal component analysis or an independent component analysis is conducted on the living body signals, e.g., local cerebral blood amount change signals obtained by the living body optical measurement to extract and display multiple component signals thereof. Signals other than the component signals containing noise are selected from these component signals automatically or manually, and the local cerebral blood amount change signals are reconstructed by using selected signals. The reconstructed signals is displayed and further subjected to the component analysis or the reconstruction as appropriate, and used for the profiling of information necessary for the diagnosis. Consequently, high-precision target signals can be obtained by completely removing external noise included in the living body signals, particularly the noise which cannot be adequately removed by the moving average and the filtering processings.
    • 对生物体信号进行主成分分析或独立成分分析,例如通过生物体光学测定得到的局部脑血量变化信号,提取并显示多个成分信号。 从包含噪声的分量信号以外的信号自动地或手动地从这些分量信号中选择,并且通过使用所选择的信号重建局部脑血量变化信号。 显示重建的信号,并进一步进行成分分析或重建,并用于诊断所需信息的分析。 因此,通过完全去除包括在生物体信号中的外部噪声,特别是通过移动平均和过滤处理不能充分消除的噪声,可以获得高精度目标信号。
    • 10. 发明授权
    • Stimulating task presentation device and stimulating task presentation method for living body optical measurement apparatus
    • 刺激任务呈现装置,激发生物体光学测量装置的任务呈现方法
    • US08600720B2
    • 2013-12-03
    • US12996190
    • 2009-06-03
    • Shingo KawasakiNoriyoshi IchikawaKiyoto KasaiRyu TakizawaYuki KawakuboAyaka TakahashiHitoshi Kuwabara
    • Shingo KawasakiNoriyoshi IchikawaKiyoto KasaiRyu TakizawaYuki KawakuboAyaka TakahashiHitoshi Kuwabara
    • G06G7/58
    • A61B5/16A61B5/165
    • A load of a stimulating task on an examinee with a resting task being unstable is excluded, and an accurate answer of an examinee to presentation of a stimulating task is enabled. A stimulating task presentation device in a living body optical measurement device includes a stimulation presenting unit configured to present a stimulation to an examinee, a brain function measurement device for measuring a brain function of the examinee in parallel to presentation of the stimulation, and a stimulation presentation controller configured to control the stimulation presented by the stimulation presenting unit, and the stimulation presentation controller has a function of setting a resting task and a stimulating task to be presented to the examinee, a function of detecting an answer of the examinee to the resting task and the stimulating task, and a task presentation control function of determining the degree of stability on the basis of the detection result when the resting task is presented, and controlling presentation of the resting task or the stimulating task on the basis of the degree of stability.
    • 在休息任务处于不稳定状态的受试者上的刺激任务的负担被排除在外,并且能够使受检者呈现刺激性任务的准确答案。 生物体光学测量装置中的刺激性任务呈现装置包括被配置为向受检者呈现刺激的刺激呈现单元,用于与呈现刺激并行地测量受检者的脑功能的脑功能测量装置,以及刺激 呈现控制器,被配置为控制由刺激呈现单元呈现的刺激,并且刺激呈现控制器具有将休息任务和刺激任务设置为被呈现给受检者的功能,检测受试者对休息的答案的功能 任务和刺激任务,以及当呈现休息任务时基于检测结果确定稳定程度的任务呈现控制功能,以及基于休息任务或刺激任务的程度来控制休息任务或刺激任务的呈现 稳定性。