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    • 2. 发明申请
    • REAL TIME SELF-ADJUSTING CALIBRATION ALGORITHM
    • 实时自调整校准算法
    • WO2005065542A2
    • 2005-07-21
    • PCT/US2004/044086
    • 2004-12-23
    • MEDTRONIC MINIMED, INC.SHIN, John, J.PATEL, Nandita, N.KANDERIAN, Sami, Jr.WANG, LuYOON, Richard
    • SHIN, John, J.PATEL, Nandita, N.KANDERIAN, Sami, Jr.WANG, LuYOON, Richard
    • A61B5/00
    • A61B5/6849A61B5/0002A61B5/14532A61B5/14546A61B5/14865A61B5/1495A61B5/6848A61B2560/0223A61M2005/1726G06F19/00
    • A method of calibrating glucose monitor data includes collecting the glucose monitor data over a period of time at predetermined intervals. It also includes obtaining at least two reference glucose values from a reference source that temporally correspond with the glucose monitor data obtained at the predetermined intervals. Also included is calculating the calibration characteristics using the reference glucose values and corresponding glucose monitor data to regress the obtained glucose monitor data. And, calibrating the obtained glucose monitor data using the calibration characteristics is included. In preferred embodiments, the reference source is a blood glucose meter, and the at least two reference glucose values are obtained from blood tests. In additional embodiments, calculation of the calibration characteristics includes linear regression and, in particular embodiments, least squares linear regression. Alternatively, calculation of the calibration characteristics includes non-linear regression. Data integrity may be verified and the data may be filtered.
    • 校准葡萄糖监测数据的方法包括以预定间隔在一段时间内收集葡萄糖监测数据。 它还包括从参考源获得至少两个参考葡萄糖值,所述参考源在时间上对应于以预定间隔获得的葡萄糖监测数据。 还包括使用参考葡萄糖值和相应的葡萄糖监测数据计算校准特性以回收所获得的葡萄糖监测数据。 并且包括使用校准特性来校准所获得的葡萄糖监测数据。 在优选实施例中,参考源是血糖仪,并且从血液测试获得至少两个参考葡萄糖值。 在另外的实施例中,校准特性的计算包括线性回归,并且在特定实施例中包括最小二乘线性回归。 或者,校准特性的计算包括非线性回归。 可以验证数据完整性,并且可以对数据进行过滤。
    • 5. 发明申请
    • AUTOMOBILE PHYSIOLOGICAL MONITORING SYSTEM AND METHOD FOR USING THE SAME
    • 汽车生理监测系统及其使用方法
    • WO2009134622A1
    • 2009-11-05
    • PCT/US2009/040772
    • 2009-04-16
    • MEDTRONIC MINIMED, INC.ENEGREN, Bradley, J.PATEL, HimanshuMADZAR, BogdanYOON, Richard, K.NARANG, Ajit, S.
    • ENEGREN, Bradley, J.PATEL, HimanshuMADZAR, BogdanYOON, Richard, K.
    • A61B5/00B60K28/06
    • A61B5/14532A61B5/0031A61B5/1112A61B5/1468A61B5/1473A61B2560/045B60K28/063B60K28/066G06F19/00
    • An automobile monitoring system to monitor user body characteristics, includes at least one sensor to monitor at least one user body characteristic. The at least one sensor is operatively coupled to a body of a user to monitor the at least one user body characteristic while the user is operating an automobile. The at least one user body characteristic is at least a glucose level of the user's body. At least one transmitter is operatively coupled to the at least one sensor to communicate sensor data obtained from the at least one sensor while the user is operating the automobile. Automobile electronics are operatively coupled to the at least one transmitter to receive sensor data from the at least one sensor while the user is operating the automobile. The automobile electronics provide the sensor data to the user while the user is operating the automobile. A mobile telephone is operatively coupled to the automobile electronics, wherein the automobile electronics initiate a communication via the mobile telephone based on the sensor data received from the at least one sensor. An automobile monitoring system to monitor user body characteristics includes at least one sensor to monitor at least one user body characteristic. The at least one sensor is operatively coupled to a body of a user to monitor the at least one user body characteristic while the user is operating an automobile. The at least one user body characteristic is at least a glucose level of the user's body. At least one transmitter is operatively coupled to the at least one sensor to communicate sensor data obtained from the at least one sensor while the user is operating the automobile. Automobile electronics are operatively coupled to the at least one transmitter to receive sensor data from the at least one sensor while the user is operating the automobile. The automobile electronics provide the sensor data to the user while the user is operating the automobile. A global positioning system (GPS) is operatively coupled to the automobile electronics to determine a current location of the user. The automobile electronics limit the user from operating the automobile to travel beyond a distance based on the sensor data received from the at least one sensor. An automobile monitoring system to monitor user body characteristics includes at least one sensor to monitor at least one user body characteristic. The at least one sensor is operatively coupled to a body of a user to monitor the at least one user body characteristic while the user is operating an automobile. The at least one user body characteristic is at least a glucose level of the user's body. At least one transmitter is operatively coupled to the at least one sensor to communicate sensor data obtained from the at least one sensor while the user is operating the automobile. Automobile electronics are operatively coupled to the at least one transmitter to receive sensor data from the at least one sensor while the user is operating the automobile. The automobile electronics provide the sensor data to the user while the user is operating the automobile. A global positioning system (GPS) is operatively coupled to the automobile electronics to determine a current location of the user. The automobile electronics provide a nearest destination from the current location of the user for the user to travel to based on the sensor data received from the at least one sensor.
    • 监视用户身体特征的汽车监控系统包括至少一个用于监视至少一个用户身体特征的传感器。 所述至少一个传感器可操作地联接到使用者的身体,以在用户操作汽车时监视所述至少一个用户身体的特征。 所述至少一个使用者身体特征至少是使用者身体的葡萄糖水平。 至少一个发射器可操作地耦合到所述至少一个传感器,以在用户操作汽车的同时传送从所述至少一个传感器获得的传感器数据。 汽车电子设备可操作地耦合到至少一个发射器,以在用户操作汽车时从至少一个传感器接收传感器数据。 汽车电子设备在用户操作汽车时向用户提供传感器数据。 移动电话可操作地耦合到汽车电子设备,其中汽车电子设备基于从至少一个传感器接收的传感器数据,经由移动电话发起通信。 监控用户身体特征的汽车监控系统包括至少一个用于监视至少一个用户身体特征的传感器。 所述至少一个传感器可操作地联接到使用者的身体,以在用户操作汽车时监视所述至少一个用户身体的特征。 所述至少一个使用者身体特征至少是使用者身体的葡萄糖水平。 至少一个发射器可操作地耦合到所述至少一个传感器,以在用户操作汽车的同时传送从所述至少一个传感器获得的传感器数据。 汽车电子设备可操作地耦合到至少一个发射器,以在用户操作汽车时从至少一个传感器接收传感器数据。 汽车电子设备在用户操作汽车时向用户提供传感器数据。 全球定位系统(GPS)可操作地耦合到汽车电子装置以确定用户的当前位置。 基于从至少一个传感器接收的传感器数据,汽车电子设备限制用户操作汽车行驶超过一定距离。 监控用户身体特征的汽车监控系统包括至少一个用于监视至少一个用户身体特征的传感器。 所述至少一个传感器可操作地联接到使用者的身体,以在用户操作汽车时监视所述至少一个用户身体的特征。 所述至少一个使用者身体特征至少是使用者身体的葡萄糖水平。 至少一个发射器可操作地耦合到所述至少一个传感器,以在用户操作汽车的同时传送从所述至少一个传感器获得的传感器数据。 汽车电子设备可操作地耦合到至少一个发射器,以在用户操作汽车时从至少一个传感器接收传感器数据。 汽车电子设备在用户操作汽车时向用户提供传感器数据。 全球定位系统(GPS)可操作地耦合到汽车电子装置以确定用户的当前位置。 根据从至少一个传感器接收的传感器数据,汽车电子设备从用户的当前位置提供最近的目的地,供用户前往。