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    • 1. 发明授权
    • Systems and methods for monitoring subjects in potential physiological distress
    • 用于监测潜在生理困扰的受试者的系统和方法
    • US09492084B2
    • 2016-11-15
    • US11503350
    • 2006-08-10
    • Andrew BeharJeff CobbAlex DerchakBarry KeenanDave Darnall
    • Andrew BeharJeff CobbAlex DerchakBarry KeenanDave Darnall
    • A61B5/00G06F19/00
    • A61B5/0002A61B5/4866A61B5/4884A61B5/6804A61B5/7264A61B2560/0431G06F19/3418G16H80/00
    • The present invention provides systems and methods for monitoring in real time the physiological status of one or more subjects, especially subject engaged in potentially hazardous or dangerous activities. Systems include wearable items with one or more physiological sensors and a local data unit (LDU) operatively coupled to the sensors. The LDUs digitize and filter sensor data, extract physiological parameters, determine abnormal or not acceptable physiological conditions, and communicate to external monitoring facilities. The external facilities display status and data concerning monitored subjects. In preferred embodiments, communication between the LDUs and the external monitoring facilities dynamically adjusts to the condition of the subjects and to system changes such as subjects and external facilities entering and leaving and/or moving from place to place. The invention also provides program products for performing this invention's methods.
    • 本发明提供用于实时监测一个或多个受试者,特别是从事潜在危险或危险活动的受试者的生理状况的系统和方法。 系统包括具有一个或多个生理传感器的可穿戴物品和可操作地耦合到传感器的本地数据单元(LDU)。 LDU数字化和过滤传感器数据,提取生理参数,确定异常或不可接受的生理条件,并与外部监测设施进行通信。 外部设施显示有关受监控对象的状态和数据。 在优选实施例中,LDU和外部监视设备之间的通信根据被摄体的状态以及诸如被摄体和外部设备进入和离开和/或从一个地方移动到另一个地方的系统变化动态地调整。 本发明还提供了用于执行本发明方法的程序产品。
    • 2. 发明申请
    • Systems and methods for monitoring subjects in potential physiological distress
    • 用于监测潜在生理困扰的受试者的系统和方法
    • US20100274100A1
    • 2010-10-28
    • US11503350
    • 2006-08-10
    • Andrew BeharJeff CobbAlex DerchakBarry KeenanDave Darnall
    • Andrew BeharJeff CobbAlex DerchakBarry KeenanDave Darnall
    • A61B5/00
    • A61B5/0002A61B5/4866A61B5/4884A61B5/6804A61B5/7264A61B2560/0431G06F19/3418G16H80/00
    • The present invention provides systems and methods for monitoring in real time the physiological status of one or more subjects, especially subject engaged in potentially hazardous or dangerous activities. Systems include wearable items with one or more physiological sensors and a local data unit (LDU) operatively coupled to the sensors. The LDUs digitize and filter sensor data, extract physiological parameters, determine abnormal or not acceptable physiological conditions, and communicate to external monitoring facilities. The external facilities display status and data concerning monitored subjects. In preferred embodiments, communication between the LDUs and the external monitoring facilities dynamically adjusts to the condition of the subjects and to system changes such as subjects and external facilities entering and leaving and/or moving from place to place. The invention also provides program products for performing this invention's methods.
    • 本发明提供用于实时监测一个或多个受试者,特别是从事潜在危险或危险活动的受试者的生理状况的系统和方法。 系统包括具有一个或多个生理传感器的可穿戴物品和可操作地耦合到传感器的本地数据单元(LDU)。 LDU数字化和过滤传感器数据,提取生理参数,确定异常或不可接受的生理条件,并与外部监测设施进行通信。 外部设施显示有关受监控对象的状态和数据。 在优选实施例中,LDU和外部监视设备之间的通信根据被摄体的状况以及诸如主体和外部设备进入和离开和/或从一个地方移动到另一个地方的系统变化动态地调整。 本发明还提供了用于执行本发明方法的程序产品。
    • 3. 发明授权
    • Real-time self-calibrating sensor system and method
    • 实时自校准传感器系统及方法
    • US08249683B2
    • 2012-08-21
    • US12826497
    • 2010-06-29
    • Lu WangRajiv ShahWayne A. MorganBarry Keenan
    • Lu WangRajiv ShahWayne A. MorganBarry Keenan
    • A61B5/05A61B5/00
    • A61B5/1495A61B5/0031A61B5/14532A61B5/1468A61B5/1473A61B5/14865A61B2560/0223A61M2005/1726
    • A system and method for calibrating a sensor of a characteristic monitoring system in real time utilizes a self-calibration module for periodic determination of, and compensation for, the IR drop across unwanted resistances in a cell. A current-interrupt switch is used to open the self-calibration module circuit and either measure the IR drop using a high-frequency (MHz) ADC module, or estimate it through linear regression of acquired samples of the voltage across the sensor's working and reference electrodes (Vmeasured) over time. The IR drop is then subtracted from the closed-circuit value of Vmeasured to calculate the overpotential that exists in the cell (Vimportant). Vimportant may be further optimized by subtracting the value of the open-circuit voltage (Voc) across the sensor's working and reference electrodes. The values of Vmeasured and Vimportant are then controlled by respective first and second control units to compensate for the IR drop.
    • 用于校准特征监测系统的传感器的系统和方法实时地利用自校准模块来周期性地确定和补偿细胞中不需要的电阻的IR降。 使用电流中断开关来打开自校准模块电路,并使用高频(MHz)ADC模块测量IR降压,或通过传感器工作和参考电压的采集样本的线性回归进行估计 电极(Vmeasured)随着时间的推移。 然后从Vmeasured的闭路电流值中减去IR降,以计算存在于电池(Vimportant)中的超电势。 可以通过减去传感器的工作参考电极和参考电极之间的开路电压(Voc)的值来进一步优化V重量。 然后由相应的第一和第二控制单元控制V测量和V重量的值以补偿IR下降。
    • 4. 发明授权
    • Real-time self-calibrating sensor system and method
    • 实时自校准传感器系统及方法
    • US07774038B2
    • 2010-08-10
    • US11323216
    • 2005-12-30
    • Lu WangRajiv ShahWayne A. MorganBarry Keenan
    • Lu WangRajiv ShahWayne A. MorganBarry Keenan
    • A61B5/05A61B5/00G01N33/50G01N33/487
    • A61B5/1495A61B5/0031A61B5/14532A61B5/1468A61B5/1473A61B5/14865A61B2560/0223A61M2005/1726
    • A system and method for calibrating a sensor of a characteristic monitoring system in real time utilizes a self-calibration module for periodic determination of, and compensation for, the IR drop across unwanted resistances in a cell. A current-interrupt switch is used to open the self-calibration module circuit and either measure the IR drop using a high-frequency (MHz) ADC module, or estimate it through linear regression of acquired samples of the voltage across the sensor's working and reference electrodes (Vmeasured) over time. The IR drop is then subtracted from the closed-circuit value of Vmeasured to calculate the overpotential that exists in the cell (Vimportant). Vimportant may be further optimized by subtracting the value of the open-circuit voltage (Voc) across the sensor's working and reference electrodes. The values of Vmeasured and Vimportant are then controlled by respective first and second control units to compensate for the IR drop.
    • 用于校准特征监测系统的传感器的系统和方法实时地利用自校准模块来周期性地确定和补偿细胞中不需要的电阻的IR降。 使用电流中断开关来打开自校准模块电路,并使用高频(MHz)ADC模块测量IR降压,或通过传感器工作和参考电压的采集样本的线性回归进行估计 电极(Vmeasured)随着时间的推移。 然后从Vmeasured的闭路电流值中减去IR降,以计算存在于电池(Vimportant)中的超电势。 可以通过减去传感器的工作参考电极和参考电极之间的开路电压(Voc)的值来进一步优化V重量。 然后由相应的第一和第二控制单元控制V测量和V重量的值以补偿IR下降。
    • 6. 发明申请
    • Real-time self-calibrating sensor system and method
    • 实时自校准传感器系统及方法
    • US20070163894A1
    • 2007-07-19
    • US11323216
    • 2005-12-30
    • Lu WangRajiv ShahWayne MorganBarry Keenan
    • Lu WangRajiv ShahWayne MorganBarry Keenan
    • G01F1/64A61B5/05G01N17/00G01N31/00C12N9/00C25B11/00
    • A61B5/1495A61B5/0031A61B5/14532A61B5/1468A61B5/1473A61B5/14865A61B2560/0223A61M2005/1726
    • A system and method for calibrating a sensor of a characteristic monitoring system in real time utilizes a self-calibration module for periodic determination of, and compensation for, the IR drop across unwanted resistances in a cell. A current-interrupt switch is used to open the self-calibration module circuit and either measure the IR drop using a high-frequency (MHz) ADC module, or estimate it through linear regression of acquired samples of the voltage across the sensor's working and reference electrodes (Vmeasured) over time. The IR drop is then subtracted from the closed-circuit value of Vmeasured to calculate the overpotential that exists in the cell (Vimportant). Vimportant may be further optimized by subtracting the value of the open-circuit voltage (Voc) across the sensor's working and reference electrodes. The values of Vmeasured and Vimportant are then controlled by respective first and second control units to compensate for the IR drop.
    • 用于校准特征监测系统的传感器的系统和方法实时地利用自校准模块来周期性地确定和补偿细胞中不需要的电阻的IR降。 使用电流中断开关来打开自校准模块电路,并使用高频(MHz)ADC模块测量IR降压,或通过传感器工作和参考电压的采集样本的线性回归进行估计 电极(Vmeasured)随着时间的推移。 然后从Vmeasured的闭路电流值中减去IR降,以计算存在于电池(Vimportant)中的超电势。 可以通过减去传感器的工作参考电极和参考电极之间的开路电压(Voc)的值来进一步优化V重量。 然后由相应的第一和第二控制单元控制V测量和V重量的值以补偿IR下降。
    • 9. 发明授权
    • Real-time self-calibrating sensor system and method
    • 实时自校准传感器系统及方法
    • US09125607B2
    • 2015-09-08
    • US13340562
    • 2011-12-29
    • Lu WangRajiv ShahWayne A. MorganBarry Keenan
    • Lu WangRajiv ShahWayne A. MorganBarry Keenan
    • A61B5/1473A61B5/1468A61B5/1495A61B5/1486A61B5/00A61B5/145A61M5/172
    • A61B5/1495A61B5/0031A61B5/14532A61B5/1468A61B5/1473A61B5/14865A61B2560/0223A61M2005/1726
    • A system and method for calibrating a sensor of a characteristic monitoring system in real time utilizes a self-calibration module for periodic determination of, and compensation for, the IR drop across unwanted resistances in a cell. A current-interrupt switch is used to open the self-calibration module circuit and either measure the IR drop using a high-frequency (MHz) ADC module, or estimate it through linear regression of acquired samples of the voltage across the sensor's working and reference electrodes (Vmeasured) over time. The IR drop is then subtracted from the closed-circuit value of Vmeasured to calculate the overpotential that exists in the cell (Vimportant). Vimportant may be further optimized by subtracting the value of the open-circuit voltage (Voc) across the sensor's working and reference electrodes. The values of Vmeasured and Vimportant are then controlled by respective first and second control units to compensate for the IR drop.
    • 用于校准特征监测系统的传感器的系统和方法实时地利用自校准模块来周期性地确定和补偿细胞中不需要的电阻的IR降。 使用电流中断开关来打开自校准模块电路,并使用高频(MHz)ADC模块测量IR降压,或通过传感器工作和参考电压的采集样本的线性回归进行估计 电极(Vmeasured)随着时间的推移。 然后从Vmeasured的闭路电流值中减去IR降,以计算存在于电池(Vimportant)中的超电势。 可以通过减去传感器的工作参考电极和参考电极之间的开路电压(Voc)的值来进一步优化V重量。 然后由相应的第一和第二控制单元控制V测量和V重量的值以补偿IR下降。