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    • 5. 发明申请
    • HUMAN FATIGUE ASSESSMENT DEVICE AND HUMAN FATIGUE ASSESSMENT METHOD
    • 人体疲劳评估装置和人体疲劳评估方法
    • US20110288424A1
    • 2011-11-24
    • US13142604
    • 2010-10-26
    • Etsuko KanaiMasami FunakuraYasuyoshi WatanabeMasaaki TanakaYoshihito ShigiharaKei Mizuno
    • Etsuko KanaiMasami FunakuraYasuyoshi WatanabeMasaaki TanakaYoshihito ShigiharaKei Mizuno
    • A61B5/02
    • A61B5/16A61B5/024A61B5/0261A61B5/0476A61B5/048A61B5/14551A61B5/18A61B5/4035
    • A human fatigue assessment device capable of performing highly accurate fatigue assessment is provided. The human fatigue assessment device (100) includes: a physiological signal measuring unit (101) which measures a pulse wave signal of a user; a feature value extracting unit (102) which extracts first feature values each of which is obtained from a systolic posterior component of the pulse wave signal measured by the physiological signal measuring unit (101); a storage unit (103) in which the first feature values extracted to by the feature value extracting unit (102) are stored; and a fatigue determining unit (104) which determines whether or not the user is fatigued, using the first feature values extracted by the feature value extracting unit (102), in which the fatigue determining unit (104) compares a first feature value among the first feature values extracted by the feature value extracting unit (102) and at least one of the first feature values stored in the storage unit (103), to determine whether or not the user is fatigued.
    • 提供能够进行高精度疲劳评估的人体疲劳评估装置。 人体疲劳评价装置(100)包括:测量用户的脉搏波信号的生理信号测量单元(101); 特征值提取单元(102),其提取从生理信号测量单元(101)测量的脉搏波信号的收缩后分量获得的第一特征值; 存储由特征值提取单元(102)提取的第一特征值的存储单元(103); 以及疲劳确定单元(104),其使用由所述特征值提取单元(102)提取的所述第一特征值来确定所述用户是否疲劳,其中所述疲劳确定单元(104)比较所述第一特征值 由特征值提取单元(102)提取的第一特征值和存储在存储单元(103)中的第一特征值中的至少一个,以确定用户是否疲劳。
    • 8. 发明申请
    • DEVICE CONTROL DEVICE AND DEVICE CONTROL METHOD
    • 装置控制装置和装置控制方法
    • US20100179441A1
    • 2010-07-15
    • US12663342
    • 2008-06-06
    • Etsuko KanaiMasami FunakuraYasutaka MaedaMakiko Noda
    • Etsuko KanaiMasami FunakuraYasutaka MaedaMakiko Noda
    • A61B5/024A61B5/00G01K1/00
    • A61B5/18A61B5/02116A61B5/0245A61B5/7207A61B5/7239A61B5/7296A61B2560/0252
    • A device control device for controlling an on-vehicle device based on a vital sign of a user, the device control device including: a vital sign measurement unit (101) configured to measure, in time series, the vital sign of the user; a parameter extraction unit (102) configured to extract time-series parameter values for evaluating current statuses of the user based on the vital sign measured continuously by the vital sign measurement unit (101); a determination unit (120) configured to determine whether a factor of a change in the vital sign is a change in a health condition of the user or a change in an environment temperature around the user, based on the parameter values extracted by the parameter extraction unit; and a control unit (130) configured to control the on-vehicle device based on a result of the determination made by the determination unit (120).
    • 一种用于基于用户的生命体征来控制车载设备的设备控制设备,所述设备控制设备包括:生命体测量单元,被配置为按时间序列测量用户的生命体征; 参数提取单元,被配置为基于由所述生命体测量单元(101)连续测量的生命体征来提取用于评估所述用户的当前状态的时间序列参数值; 确定单元,被配置为基于由参数提取提取的参数值来确定生命体征变化的因子是用户的健康状况的变化还是使用者周围环境温度的变化 单元; 以及控制单元(130),被配置为基于由所述确定单元(120)进行的确定的结果来控制所述车载设备。
    • 9. 发明申请
    • ENVIRONMENT CONTROL DEVICE, ENVIRONMENT CONTROL METHOD, ENVIRONMENT CONTROL PROGRAM, AND ENVIRONMENT CONTROL SYSTEM
    • 环境控制设备,环境控制方法,环境控制程序和环境控制系统
    • US20090124926A1
    • 2009-05-14
    • US12096163
    • 2006-11-17
    • Masami FunakuraEtsuko KanaiYasutaka Maeda
    • Masami FunakuraEtsuko KanaiYasutaka Maeda
    • A61B5/00
    • F24F11/30F24F11/62F24F11/65F24F2110/50
    • Comfortable sensation of living bodies is estimated, considering individual differences in biological information on the living bodies staying or residing in a common space, and stimulation contents is properly controlled. A stimulation generator 300 generates a stimulation to be applied to users. Biological information acquirers 101a and 101b acquire time-series data of biological information on the users. Parameter extractors 102a and 102b extract a parameter which is changed with a lapse of time by analyzing the time-series data. Thermal sensation estimators 103a and 103b estimate statuses of the users to the stimulation generated by the stimulation generator 300, based on the parameter extracted by the parameter extractors 102a and 102b. A multi-user thermal sensation processor 105 integrates estimation results on the users estimated by the thermal sensation estimators 103a and 103b into a single estimation result. A stimulation controller 104 controls the stimulation generator 300 based on the integrated estimation result.
    • 估计身体的舒适感,考虑到生物体内存在或居住在共同空间的生物信息的个体差异,刺激成分被适当控制。 刺激发生器300产生要施加到用户的刺激。 生物信息获取器101a和101b获取关于用户的生物信息的时间序列数据。 参数提取器102a和102b通过分析时间序列数据来提取随时间变化的参数。 热感觉估计器103a和103b基于由参数提取器102a和102b提取的参数来估计用户对由刺激发生器300产生的刺激的状态。 多用户感热处理器105将由热感觉估计器103a和103b估计的用户的估计结果集成为单个估计结果。 刺激控制器104基于积分估计结果控制刺激发生器300。