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    • 24. 发明申请
    • SELF-CONTAINED REGIONAL OXIMETRY
    • 自含区域氧化测定
    • WO2014159723A3
    • 2014-11-27
    • PCT/US2014024906
    • 2014-03-12
    • NONIN MEDICAL INC
    • ISAACSON PHILIP OJOHNSON TIMOTHY LPRIOR MATTHEW
    • A61B5/1455
    • A61B5/14552A61B5/0002A61B5/01A61B2560/0431A61B2562/185
    • A handheld device includes a contact surface, an optical module, a processor, a display module, and a user operable switch. The optical module is disposed on the contact surface. The optical module has at least one optical emitter and at least one optical detector. The at least one optical detector has a light shield associated with the contact surface. The light shield is configured to exclude ambient light from the contact surface when the contact surface abuts tissue of a patient. The processor is coupled to the optical module and configured to execute instructions for determining a measure of oximetry corresponding to the tissue. The display module is coupled to the processor and is configured to indicate the measure of oximetry. The user operable switch is configured to activate at least one of the processor, the optical module, and the display module.
    • 手持设备包括接触表面,光学模块,处理器,显示模块和用户可操作开关。 光学模块设置在接触表面上。 光学模块具有至少一个光学发射器和至少一个光学检测器。 该至少一个光学检测器具有与接触表面相关联的遮光罩。 遮光罩被配置成当接触表面抵靠患者的组织时从接触表面排除环境光。 处理器耦合到光学模块并且被配置为执行用于确定对应于组织的血氧测量的指示的指令。 显示模块耦合到处理器并被配置为指示血氧测量的量度。 用户可操作开关被配置为激活处理器,光学模块和显示模块中的至少一个。
    • 25. 发明申请
    • SELF-IDENTIFYING OXIMETRY SENSOR SYSTEM
    • 自识别OXIMETRY传感器系统
    • WO2014066752A1
    • 2014-05-01
    • PCT/US2013/066802
    • 2013-10-25
    • NONIN MEDICAL, INC.
    • ISAACSON, Philip O.
    • A61B5/1455
    • A61B5/742A61B5/14542A61B5/14551A61B5/1495A61B5/684A61B2560/0223A61B2562/085
    • A system includes a plurality of sensors and a monitor. Each sensor of the plurality of sensors has a sensor output corresponding to a physiological measurement. Each sensor has a parameter associated with the sensor output. The monitor has a monitor processor, a display, and multiple channels. Each channel is configured to receive a sensor output from a sensor of the plurality of sensors. The monitor processor is configured to execute a set of instructions and configured to depict the physiological measurement using the display. The sensor output is configured using the parameter associated with the sensor output. The parameter corresponds to at least one of the channel associated with the sensor and a code received using the channel.
    • 系统包括多个传感器和监视器。 多个传感器中的每个传感器具有对应于生理测量的传感器输出。 每个传感器都有与传感器输出相关的参数。 显示器具有监视器处理器,显示器和多个通道。 每个通道被配置为从多个传感器的传感器接收传感器输出。 监视器处理器被配置为执行一组指令并且被配置为使用显示器来描绘生理测量。 使用与传感器输出相关的参数来配置传感器输出。 该参数对应于与传感器相关联的通道中的至少一个以及使用该通道接收的代码。
    • 26. 发明申请
    • AGE CALIBRATION FOR TISSUE OXIMETRY
    • 年龄校准用于组织氧化
    • WO2013059335A2
    • 2013-04-25
    • PCT/US2012/060634
    • 2012-10-17
    • NONIN MEDICAL, INC.
    • ULRICH, FranzLOBBESTAEL, Aaron, Alfred
    • A61B5/1455A61B5/1495
    • A61B5/7271A61B5/14552A61B5/14553A61B5/1495A61B5/742A61B2560/0223
    • A system includes a sensor, a processor, and an output module. The sensor can have at least one light emitter and at least one light detector. The processor can be coupled to the sensor and have instructions configured to determine a calibration value using light attenuation corresponding to a light path through a tissue associated with a light emitter and a light detector of the sensor. The processor can be configured to calculate oxygen saturation in the tissue using a signal provided by the sensor. The output module can be coupled to the processor and configured to render a compensated oxygen saturation. The compensated oxygen saturation can be determined using the calibration value and the calculated oxygen saturation.
    • 系统包括传感器,处理器和输出模块。 传感器可以具有至少一个光发射器和至少一个光检测器。 处理器可以耦合到传感器并且具有被配置为使用对应于通过与发光器和传感器的光检测器相关联的组织的光路的光衰减来确定校准值的指令。 处理器可以被配置为使用由传感器提供的信号来计算组织中的氧饱和度。 输出模块可以耦合到处理器并且被配置为渲染补偿的氧饱和度。 可以使用校准值和计算的氧饱和度来确定补偿的氧饱和度。