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    • 2. 发明授权
    • Tissue oxygenation monitoring in heart failure
    • 心力衰竭组织氧合监测
    • US08571620B2
    • 2013-10-29
    • US12797816
    • 2010-06-10
    • Can CinbisJames K. CarneyJonathan L. KuhnDavid A. Anderson
    • Can CinbisJames K. CarneyJonathan L. KuhnDavid A. Anderson
    • A61B5/00
    • A61N1/36557
    • A medical device system and associated method are used for monitoring a heart failure patient. A medical device for monitoring delivery of a therapy includes a sensor sensing an optical sensor signal corresponding to light attenuation by a volume of body tissue of a patient, a therapy delivery module to deliver a therapy, and a processor configured to compute a first tissue oxygenation measurement from the optical sensor signal prior to initiating delivery of the therapy, compute a second tissue oxygenation measurement from the optical sensor signal subsequent to initiating delivery of the therapy, compare the first and the second tissue oxygenation measurements, and determine whether the delivered therapy was successful in response to the first tissue oxygenation measurement and the second tissue oxygenation measurement.
    • 医疗器械系统和相关方法用于监测心力衰竭患者。 用于监测治疗递送的医疗装置包括传感器,其感测对应于患者的身体组织的体积的光衰减的光学传感器信号,用于递送治疗的治疗递送模块和被配置为计算第一组织氧合的处理器 在开始递送治疗之前从光学传感器信号进行的测量,在开始递送治疗之后从光学传感器信号计算第二组织氧合测量,比较第一和第二组织氧合测量,并确定递送的治疗是否为 成功地响应于第一次组织氧合测量和第二次组织氧合测量。
    • 4. 发明申请
    • METHOD AND APPARATUS FOR CALIBRATING AN ABSOLUTE OXYGEN SATURATION SENSOR
    • 用于校准绝对氧气饱和传感器的方法和装置
    • US20130109938A1
    • 2013-05-02
    • US13283930
    • 2011-10-28
    • Jonathan L. Kuhn
    • Jonathan L. Kuhn
    • A61B5/1495A61B5/1455
    • A61B5/14551A61B5/1495
    • A method for using a medical device comprising an optical sensor to measure calibrated oxygen saturation in a body tissue uses a standard spectral response of blood established for multiple of oxygen saturations and a standard spectral response of a reference material. The standard responses are established using a spectrometer. The spectral power output of the optical sensor is measured using a spectrometer. The optical sensor output signal response to the reference material is obtained. A processor computes a device-specific calibration curve for the medical device using the measured spectral power output and the standard spectral response of blood and computes an optical gain using the standard spectral response of the reference material and the measured spectral power output of the optical sensor. The device-specific calibration curve and optical gain of the optical sensor are stored in a memory of the medical device.
    • 使用包括光学传感器来测量身体组织中的校准氧饱和度的医疗装置的方法使用针对多个氧饱和度建立的血液的标准光谱响应和参考材料的标准光谱响应。 使用光谱仪建立标准响应。 使用光谱仪测量光学传感器的光谱功率输出。 获得对参考材料的光学传感器输出信号响应。 处理器使用测量的光谱功率输出和血液的标准光谱响应来计算医疗设备的设备特定校准曲线,并使用参考材料的标准光谱响应和光学传感器的测量光谱功率输出来计算光学增益 。 光学传感器的器件专用校准曲线和光学增益被存储在医疗设备的存储器中。
    • 6. 发明申请
    • Tissue Oxygenation Monitoring in Heart Failure
    • 心力衰竭组织氧合监测
    • US20100317942A1
    • 2010-12-16
    • US12797816
    • 2010-06-10
    • Can CinbisJames K. CarneyJonathan L. KuhnDavid A. Anderson
    • Can CinbisJames K. CarneyJonathan L. KuhnDavid A. Anderson
    • A61B5/00
    • A61N1/36557
    • A medical device system and associated method are used for monitoring a heart failure patient. A medical device for monitoring delivery of a therapy includes a sensor sensing an optical sensor signal corresponding to light attenuation by a volume of body tissue of a patient, a therapy delivery module to deliver a therapy, and a processor configured to compute a first tissue oxygenation measurement from the optical sensor signal prior to initiating delivery of the therapy, compute a second tissue oxygenation measurement from the optical sensor signal subsequent to initiating delivery of the therapy, compare the first and the second tissue oxygenation measurements, and determine whether the delivered therapy was successful in response to the first tissue oxygenation measurement and the second tissue oxygenation measurement.
    • 医疗器械系统和相关方法用于监测心力衰竭患者。 用于监测治疗递送的医疗装置包括传感器,其感测对应于患者的身体组织的体积的光衰减的光学传感器信号,用于递送治疗的治疗递送模块和被配置为计算第一组织氧合的处理器 在开始递送治疗之前从光学传感器信号进行的测量,在开始递送治疗之后从光学传感器信号计算第二组织氧合测量,比较第一和第二组织氧合测量,并确定递送的治疗是否为 成功地响应于第一次组织氧合测量和第二次组织氧合测量。