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    • 2. 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。
    • 3. 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
    • 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。
    • 7. 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。
    • 8. 发明申请
    • BIOLOGICAL PHOTOMETRIC DEVICE
    • 生物光学设备
    • US20090054885A1
    • 2009-02-26
    • US11816452
    • 2006-02-02
    • Shingo KawasakiNaoki Tanaka
    • Shingo KawasakiNaoki Tanaka
    • A61B18/18
    • A61B5/0059A61B5/14546A61B5/14553G01N21/4795
    • A biological photometric device includes a light irradiating unit for irradiating an object to be examined with light having a predetermined wavelength and sympathizing with oxygenated hemoglobin and deoxygenated hemoglobin through an optical fiber, a light detecting unit for detecting and amplifying light passing through a detecting optical fiber and the object as detected signals, a signal processing unit adapted for computing hemoglobin time change information based on oxygenated hemoglobin, deoxygenated hemoglobin and total hemoglobin in the object from the detected signals light detecting unit, and including a noise detector for arithmetically processing the detected signals and determining/detecting whether the time change information is noise attributed to the presence of obstacles to passing of light between the object and the end face of the optical fiber or noise attributed to the damage to the light irradiating unit, and a display unit for displaying the noise signals.
    • 一种生物测光装置,其特征在于,包括:光照射单元,用于通过光纤对具有预定波长的光进行照射并与氧合血红蛋白和脱氧血红蛋白同步的光进行照射,光检测单元,用于检测和放大通过检测光纤的光 所述物体作为检测信号,信号处理单元适于根据来自检测信号光检测单元的所述物体中的氧合血红蛋白,脱氧血红蛋白和总血红蛋白计算血红蛋白时间变化信息,并且包括用于对检测信号进行算术处理的噪声检测器 以及确定/检测时间变化信息是否归因于在光纤的物体和端面之间的光通过的障碍物的存在或归因于对光照射单元的损坏的噪声的噪声;以及显示单元,用于显示 噪声信号。
    • 9. 发明申请
    • Living body photometric device
    • 生命体测光装置
    • US20060206017A1
    • 2006-09-14
    • US10526893
    • 2003-09-05
    • Shingo KawasakiNaoki Tanaka
    • Shingo KawasakiNaoki Tanaka
    • A61B5/00
    • A61B5/1455
    • By making use of a set of loading of stimulation and no loading, variation signals in time of hemoglobin density at a plurality of measurement points of a subject attached of an optical measurement probe and corresponding to a plurality of channels are detected, and for the respective detected hemoglobin variation signals principal component analysis is performed as well as a representative signal having a higher contribution rate is extracted and the extracted representative signal is displayed on a monitor. A correlation between the representative signal and a task reference and response waveform representing a response pattern of a living body in response to a stimulation task is calculated, and a representative signal having the highest correlation value as calculated is displayed in a discriminable manner from the other signals as a task related signal which responds most to the stimulation given to the subject. From weights of the respective channels for the representative signal displayed as the task related signal, an optical measurement point or region, which responds most to the task is identified and displayed in discriminable manner.
    • 通过利用一组刺激负荷和无载荷,检测在光学测量探针附着并对应于多个通道的受试者的多个测量点处的血红蛋白密度的变化信号,并且对于相应的 检测出的血红蛋白变化信号进行主成分分析,并提取具有较高贡献率的代表信号,并将提取的代表信号显示在监视器上。 计算代表信号和表示响应于刺激任务的生物体的响应模式的任务参考和响应波形之间的相关性,并且以可计算的方式从其他方式显示具有计算的相关值最高的代表信号 信号作为对给予对象的刺激最响应的任务相关信号。 从显示为任务相关信号的代表信号的相应通道的权重中,以可区分的方式识别和显示对该任务最响应的光学测量点或区域。
    • 10. 发明授权
    • Biological photometric device
    • 生物测光装置
    • US07725145B2
    • 2010-05-25
    • US11816452
    • 2006-02-02
    • Shingo KawasakiNaoki Tanaka
    • Shingo KawasakiNaoki Tanaka
    • A61B5/1455
    • A61B5/0059A61B5/14546A61B5/14553G01N21/4795
    • A biological photometric device includes a light irradiating unit for irradiating an object to be examined with light having a predetermined wavelength and sympathizing with oxygenated hemoglobin and deoxygenated hemoglobin through an optical fiber, a light detecting unit for detecting and amplifying light passing through a detecting optical fiber and the object as detected signals, a signal processing unit adapted for computing hemoglobin time change information based on oxygenated hemoglobin, deoxygenated hemoglobin and total hemoglobin in the object from the detected signals light detecting unit, and including a noise detector for arithmetically processing the detected signals and determining/detecting whether the time change information is noise attributed to the presence of obstacles to passing of light between the object and the end face of the optical fiber or noise attributed to the damage to the light irradiating unit, and a display unit for displaying the noise signals.
    • 一种生物测光装置,其特征在于,包括:光照射单元,用于通过光纤对具有预定波长的光进行照射并与氧合血红蛋白和脱氧血红蛋白同步的光进行照射,光检测单元,用于检测和放大通过检测光纤的光 所述物体作为检测信号,信号处理单元适于根据来自检测信号光检测单元的所述物体中的氧合血红蛋白,脱氧血红蛋白和总血红蛋白计算血红蛋白时间变化信息,并且包括用于对检测信号进行算术处理的噪声检测器 以及确定/检测时间变化信息是否归因于在光纤的物体和端面之间的光通过的障碍物的存在或归因于对光照射单元的损坏的噪声的噪声;以及显示单元,用于显示 噪声信号。