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    • 2. 发明申请
    • Organism information measuring device and organism information measuring method
    • 生物信息测量装置和生物信息测量方法
    • US20050253047A1
    • 2005-11-17
    • US11121320
    • 2005-05-03
    • Kazuya MaegawaTakashi NakamuraKoichi MoriyaShinichiro Miyahara
    • Kazuya MaegawaTakashi NakamuraKoichi MoriyaShinichiro Miyahara
    • A61B5/0245A61B5/00A61B5/024A61B5/145H01J40/14
    • A61B5/02438A61B5/681A61B5/7257
    • To improve an S/N ratio and increase a measurement accuracy of an organism information. There is provided an organism information measuring device possessing a main body disposed under a state that its lower face has contacted with an organism surface, a light irradiating part which is disposed in the lower face of the main body and irradiates a light toward an organism, a 1st light receiving part which is disposed in the lower face of the main body and near the light irradiating part, receives a backward scattered light from the organism and generates an organism information signal complying with a received light quantity, a 2nd light receiving part which is disposed in the lower face of the main body and in a position spaced from the light irradiating part more than a distance between the 1st light receiving part and the light irradiating part, receives a backward scattered light from the organism and generates an organism information signal complying with a received light quantity, and an organism information operating part which calculates an organism information on the basis of the organism information signals having been generated by the 1st light receiving part and the 2nd light receiving part.
    • 提高S / N比,提高生物体信息的测量精度。 本发明提供了一种生物体信息测量装置,其具有在其下表面与生物体表面接触的状态下设置的主体,设置在主体的下表面并向生物体照射光的光照射部, 第一光接收部分,其设置在主体的下表面中并靠近光照射部分,接收来自生物体的向后散射的光,并产生符合接收光量的生物体信息信号;第二光接收部分, 设置在主体的下表面上,并且与第一光接收部分和光照射部分之间的距离大于与光照射部分隔开的位置,接收来自生物体的向后散射的光,并产生生物体信息信号 符合接收的光量,以及计算t上的生物体信息的生物体信息操作部分 是由第一光接收部分和第二光接收部分产生的有机体信息信号的基础。
    • 3. 发明授权
    • Organism information detecting apparatus
    • 生物信息检测装置
    • US08096953B2
    • 2012-01-17
    • US10590128
    • 2005-12-16
    • Takashi NakamuraKazuya MaegawaKoichi MoriyaShinichiro MiyaharaKaori Takano
    • Takashi NakamuraKazuya MaegawaKoichi MoriyaShinichiro MiyaharaKaori Takano
    • A61B5/02
    • A61B5/02416A61B5/0006A61B5/7207
    • An organism information detecting apparatus includes a detector that detects organism information of a subject for a predetermined sampling time period, determines a motion state of the subject when the organism information is detected, and outputs an organism signal. A first calculator processes the organism signal to calculate organism information data, the detector determining a reliability degree of the organism information data based on whether the determined motion state of the subject is a previously determined motion state. A second calculator calculates an average value of the amount of variation per time of data obtained by digitizing the organism signal, the average value being data supplementary to the organism information data. The detector determines the motion state of the subject based on whether the supplementary data exceeds a previously determined threshold. A storage device stores the organism information data and the supplementary data such that the organism information data and the supplementary data are associated with one another.
    • 有机体信息检测装置包括:检测对象的生物体信息预定取样时间的检测器,在检测到有机体信息时确定被检体的运动状态,并输出有机体信号。 第一计算器处理生物体信号以计算生物体信息数据,所述检测器基于所确定的对象的运动状态是否是先前确定的运动状态来确定生物信息数据的可靠度。 第二计算器计算通过数字化生物体信号获得的数据的每个时间变化量的平均值,平均值是补充生物体信息数据的数据。 检测器基于补充数据是否超过先前确定的阈值来确定对象的运动状态。 存储装置存储有机体信息数据和补充数据,使得生物体信息数据和补充数据彼此相关联。
    • 4. 发明申请
    • Organism information detecting apparatus
    • 生物信息检测装置
    • US20070225586A1
    • 2007-09-27
    • US10590128
    • 2005-12-16
    • Takashi NakamuraKazuya MaegawaKoichi MoriyaShinichiro MiyaharaKaori Takano
    • Takashi NakamuraKazuya MaegawaKoichi MoriyaShinichiro MiyaharaKaori Takano
    • A61B5/05
    • A61B5/02416A61B5/0006A61B5/7207
    • The invention relates to an organism information detecting apparatus capable of determining a motion state of a subject when organism information is detected. The organism information detecting apparatus of the invention includes organism information detecting means for detecting organism information of the subject by being brought into contact with the subject by a previously determined sampling time period and outputting an organism signal, organism information data calculating means for calculating an organism information data by processing the organism signal, supplementary data calculating means for calculating an average value of a variation amount per time of a data constituted by digitizing the organism signal as a supplementary data of the organism information data, and data storing means for relating the organism information data and the supplementary data to be stored.
    • 本发明涉及一种生物体信息检测装置,其能够在检测到有机体信息时确定对象的运动状态。 本发明的有机体信息检测装置包括生物体信息检测装置,用于通过与先前确定的采样时间段接触的对象来检测受试者的生物体信息,并输出有机体信号;生物体信息数据计算装置, 通过处理生物体信息的信息数据,补充数据计算装置,用于计算通过将生物体信号数字化构成的数据的每个时间的变化量的平均值作为生物体信息数据的补充数据;以及数据存储装置, 信息数据和要存储的补充数据。
    • 6. 发明申请
    • Biometric information detecting apparatus
    • 生物特征信息检测装置
    • US20070195989A1
    • 2007-08-23
    • US11596515
    • 2005-04-27
    • Keisuke TsubataKoichi MoriyaShinichiro Miyahara
    • Keisuke TsubataKoichi MoriyaShinichiro Miyahara
    • G06K9/00
    • A61B5/02455
    • The invention relates to a biometric information detecting apparatus for monitoring a state of a living body based on information constituted by adding an auxiliary data capable of determining a measuring state when biometric information is measured to a biometric state value. A biometric information detecting apparatus of the invention includes a biometric sensor for measuring biometric information for a predetermined time period, A/D conversion means for acquiring a sampling data by subjecting an output of the biometric sensor to A/D conversion, storing means for storing the sampling data, frequency analyzing means for subjecting the sampling data stored to the storing means to a frequency analysis and storing a result of the analysis to the storing portion, biometric state value calculating means for calculating a biometric state value from the result of the frequency analysis stored to the storing means, SN ratio calculating means for calculating an SN ratio from the result of the frequency analysis stored to the storing means, determining means for determining a reliability of the biometric state value based on whether the SN ratio exceeds a predetermined threshold, and measured data preserving means for correlating to store a result of determining the reliability and the biometric state value.
    • 本发明涉及一种生物特征信息检测装置,用于根据通过将生物体信息测量时能够确定测量状态的辅助数据与生物体状态值相加而构成的信息来监测生物体的状态。 本发明的生物体信息检测装置包括:生物体传感器,用于测量预定时间段内的生物信息; A / D转换装置,用于通过对生物传感器的输出进行A / D转换来获取采样数据;存储装置, 采样数据,频率分析装置,用于对存储装置存储的采样数据进行频率分析并将分析结果存储到存储部分;生物测定状态值计算装置,用于根据频率的结果计算生物特征状态值 分析存储到存储装置,SN比率计算装置,用于从存储的存储装置的频率分析的结果计算SN比;确定装置,用于基于SN比是否超过预定阈值来确定生物特征状态值的可靠性; ,以及测量数据保存装置,用于相关以存储确定的结果 可靠性和生物特征状态值。
    • 7. 发明授权
    • Biometric information detecting apparatus
    • 生物特征信息检测装置
    • US07928830B2
    • 2011-04-19
    • US11596515
    • 2005-04-27
    • Keisuke TsubataKoichi MoriyaShinichiro Miyahara
    • Keisuke TsubataKoichi MoriyaShinichiro Miyahara
    • G06F7/04H04L12/28A61B5/00G06K9/00G10L21/00
    • A61B5/02455
    • A biometric information detecting apparatus has a biometric sensor for measuring biometric information for a predetermined time period. An A/D conversion portion acquires a sampling data by subjecting an output of the biometric sensor to A/D conversion. A storing portion stores the sampling data. A frequency analyzing portion subjects the sampling data stored in the storing portion to a frequency analysis and stores a result of the frequency analysis to in storing portion. A biometric state value calculating portion calculates a biometric state value from the result of the frequency analysis stored in the storing portion. An SN ratio calculating portion calculates an SN ratio from the result of the frequency analysis stored in the storing portion. A determining portion determines a reliability of the biometric state value based on whether the calculated SN ratio exceeds a predetermined threshold. A measured data storing portion associates a result of the reliability determination with the biometric state value and stores the result of the reliability determination and the biometric state value.
    • 生物体信息检测装置具有用于在预定时间段内测量生物特征信息的生物特征传感器。 A / D转换部通过对生物传感器的输出进行A / D转换来获取采样数据。 存储部存储采样数据。 频率分析部分将存储在存储部分中的采样数据进行频率分析,并将频率分析的结果存储在存储部分中。 生物体状态值计算部根据存储在存储部中的频率分析的结果来计算生物体状态值。 SN比计算部分根据存储在存储部分中的频率分析的结果来计算SN比。 确定部分基于所计算的SN比是否超过预定阈值来确定生物特征状态值的可靠性。 测量数据存储部分将可靠性确定的结果与生物测定状态值相关联,并存储可靠性确定和生物测定状态值的结果。