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    • 8. 发明授权
    • Calibration device for a spectrophotometric system
    • 分光光度计校准装置
    • US08077312B2
    • 2011-12-13
    • US12092778
    • 2006-11-03
    • Paul B. BenniAndrew KerseyKrystian Gieryk
    • Paul B. BenniAndrew KerseyKrystian Gieryk
    • G01J3/42
    • G01D18/00
    • A method and apparatus for calibrating an NIRS system which includes a sensor portion and for evaluating an NIRS system for proper functioning is provided that includes an enclosure with at least two windows disposed in a wall of the enclosure. The windows allow the light source and one or more detectors of an NIRS system sensor to interface with the enclosure. One window is dedicated to the light source while each light detector has a window dedicated thereto. Thus, the enclosure includes a number of windows equal to the number of light detectors in the NIRS system sensor plus one. The inner surface of the wall(s) of the enclosure is of a light-absorbing color; e.g., black. A diffuse reflectance member of a light-reflecting color, e.g., white, is disposed in the enclosure spaced apart from the surface with the windows disposed therein.
    • 提供了一种用于校准包括传感器部分并且用于评估NIRS系统以用于正常功能的NIRS系统的方法和装置,其包括具有设置在外壳的壁中的至少两个窗口的外壳。 窗户允许光源和NIRS系统传感器的一个或多个检测器与外壳接口。 一个窗口专用于光源,而每个光检测器具有专用于其的窗口。 因此,外壳包括与NIRS系统传感器中的光检测器数量相等的多个窗口。 外壳的壁的内表面具有吸光颜色; 例如黑色。 诸如白色的反射反射颜色的漫反射构件设置在与其中设置有窗口的表面间隔开的外壳中。
    • 9. 发明申请
    • Calibration Device for a Spectrophotometric System
    • 分光光度计校准装置
    • US20080285029A1
    • 2008-11-20
    • US12092778
    • 2006-11-03
    • Paul B. BenniAndrew KerseyKrystian Gieryk
    • Paul B. BenniAndrew KerseyKrystian Gieryk
    • G12B13/00
    • G01D18/00
    • A method and apparatus for calibrating an NIRS system which includes a sensor portion (42) and for evaluating an NIRS system for proper functioning is provided that includes an enclosure (40) with at least two windows (16,18) disposed in a wall of the enclosure (40) The windows (16,18) allow the light source (22) and one or more detectors (24) of an NIRS system sensor (42) to interface with the enclosure (40) One window (16) is dedicated to the light source (22) while each light detector (24) has a window (18) dedicate thereto Thus, the enclosure (40) includes a number of windows (16,18) equal to the number of light detectors (24) in the NIRS system sensor plus one The inner surface of the wall(s) of the enclosure (40 is of a light-absorbing color, e.g., black A diffuse reflectance member (28) of a light-reflecting color, e.g., white, is disposed in the enclosure (40) spaced apart from the surface with the windows (16,18) disposed therein
    • 提供了一种用于校准NIRS系统的方法和装置,其包括传感器部分(42)并用于评估NIRS系统的正常功能,其包括具有至少两个窗口(16,18)的外壳(40),所述至少两个窗口(16,18) 外壳(40)窗口(16,18)允许NIRS系统传感器(42)的光源(22)和一个或多个检测器(24)与外壳(40)连接。一个窗口(16)是专用的 每个光检测器(24)具有专用的窗口(18),因此,外壳(40)包括多个窗口(16,18),其等于光检测器(24)的数量, NIRS系统传感器加一个外壳(40)具有光吸收颜色(例如,黑色的反射颜色(例如白色)的漫反射构件(28))的内表面是 设置在与其中设置有窗口(16,18)的表面间隔开的外壳(40)中
    • 10. 发明授权
    • Indicators for a spectrophotometric system
    • 分光光度计系统的指标
    • US08761851B2
    • 2014-06-24
    • US12096132
    • 2006-12-06
    • Paul B. BenniBo ChenAndrew Kersey
    • Paul B. BenniBo ChenAndrew Kersey
    • A61B5/00
    • A61B5/6814A61B5/0073A61B5/14553A61B5/4076A61B5/742
    • A near-infrared spectrophotometric system (e.g., a cerebral oximeter) includes a sensor portion and a monitor portion. The monitor portion includes a processor that runs an algorithm which utilizes the amount of detected light to determine the value of the oxygen concentration (e.g., the absolute level of oxygen concentration). The monitor portion also includes a visual display that displays the determined oxygen concentration values in various formats. The monitor portion may also include an audible device (e.g., a speaker), that provides audible indications of the determined oxygen concentration values. Various visual indicators may include, for example, color-coded graphs of the determined oxygenation values to alert the system user, for example, whether one hemisphere of the brain, or one or more regions of the brain, is in danger of adverse and potentially permanent damage. Also, data may be pre-processed by selecting the most clinically concerning sensor value (e.g., the sensor with the lowest value), and displaying only that sensor value and its identification on the display screen. Alternatively, an average value of multiple sensor measurements may be displayed. This reduces screen clutter and increases the speed of interpretation by the system user. Also, all sensor values may be averaged, and the average value displayed. The determined oxygenation values may also be provided in an audible format.
    • 近红外分光光度计(例如,脑血氧计)包括传感器部分和监视部分。 监视器部分包括运行算法的处理器,其利用检测到的光量来确定氧浓度的值(例如,氧浓度的绝对水平)。 监视器部分还包括以各种格式显示所确定的氧浓度值的视觉显示器。 监视器部分还可以包括提供所确定的氧浓度值的可听指示的可听设备(例如扬声器)。 各种视觉指标可以包括例如所确定的氧合值的颜色编码图,以警告系统用户,例如,脑的一个半球或脑的一个或多个区域是否具有不利和可能的危险 永久性损坏 此外,可以通过选择临床上最临近的传感器值(例如,具有最低值的传感器)来预处理数据,并且仅在该显示屏上显示该传感器值及其识别。 或者,可以显示多个传感器测量的平均值。 这减少了屏幕杂乱并增加了系统用户的解读速度。 此外,所有传感器值可以被平均,并且显示平均值。 所确定的氧合值也可以以可听到的格式提供。