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    • 101. 发明授权
    • Multichannel gas analyzer and method of use
    • 多通道气体分析仪及其使用方法
    • US4817013A
    • 1989-03-28
    • US922043
    • 1986-10-17
    • James E. CorenmanJames R. BraigDaniel S. GoldbergerEmil P. RojasJames H. Stone
    • James E. CorenmanJames R. BraigDaniel S. GoldbergerEmil P. RojasJames H. Stone
    • G01N21/31G01N21/35G01N21/64
    • G01N21/3504G01N2021/3129G01N2201/121
    • An improved gas analyzer system (FIG. 1) and method of use for detecting and displaying the constituent gases of a respiratory gas stream, the system comprising an optical bench (109) through which a respiratory gas flows and in which measurements of the gas are taken; analog input circuits (122) for receiving signals output from the optical bench (109); analog processing circuits (124) for processing signals output from the analog input circuits (122); display processing circuits (128) for processing the signals output from the analog processing circuits (124) and other system circuitry; pixel logic circuits/analog outputs (130) for processing signals output from the display processing circuitry (128) and providing analog output ports; a five button panel (148), an alarm-knob board (144), and a speaker driver (152) for operator interface and activation of audible and visual alarms; a CRT driver for driving the CRT; and a power supply (158) for powering the system.
    • 一种改进的气体分析器系统(图1)和用于检测和显示呼吸气流的组成气体的方法,该系统包括一个光学平台(109),呼吸气体通过该工作台流动,其中气体的测量是 采取 模拟输入电路(122),用于接收从光学平台(109)输出的信号; 模拟处理电路(124),用于处理从模拟输入电路(122)输出的信号; 显示处理电路(128),用于处理从模拟处理电路(124)和其它系统电路输出的信号; 用于处理从显示处理电路(128)输出的信号并提供模拟输出端口的像素逻辑电路/模拟输出(130) 五按钮面板(148),报警旋钮板(144)和扬声器驱动器(152),用于操作者界面和激活声音和视觉报警器; 用于驱动CRT的CRT驱动器; 以及用于为系统供电的电源(158)。
    • 110. 发明授权
    • Method for adjusting a blood analyte measurement
    • 用于调节血液分析物测量的方法
    • US06825044B2
    • 2004-11-30
    • US10301927
    • 2002-11-21
    • Peng ZhengJennifer H. GableW. Dale HallKenneth G. WitteJames R. Braig
    • Peng ZhengJennifer H. GableW. Dale HallKenneth G. WitteJames R. Braig
    • G01N2164
    • A61B5/14532A61B5/1455A61B5/1491
    • A device and method for determining analyte concentrations within a material sample are provided. A modulating temperature gradient is induced in the sample and resultant, emitted infrared radiation is measured at selected analyte absorbance peaks and reference wavelengths. The modulating temperature gradient is controlled by a surface temperature modulation. A transfer function relating the surface temperature modulation to a modulation of the measured infrared radiation is provided. Phase and magnitude differences in the transfer function are detected. These phase and magnitude differences, having a relationship to analyte concentration, are measured, correlated and processed to determine analyte concentration in the material sample. A method for adjusting an analyte measurement is provided. The method provides a hydration correction process for calibration and correction whereby analyte concentrations within the material sample may be determined. The hydration correction process is particularly suitable for determining blood analyte concentrations within human tissue.
    • 提供了用于确定材料样品中的分析物浓度的装置和方法。 在样品中诱导调制温度梯度,并在所选分析物的吸收峰和参考波长处测量发射的红外辐射。 调制温度梯度由表面温度调制控制。 提供了将表面温度调制与测量的红外辐射的调制相关联的传递函数。 检测传递函数的相位和幅度差异。 测量,相关和处理与分析物浓度有关的这些相位和幅度差异,以确定材料样品中的分析物浓度。 提供了一种用于调节分析物测量的方法。 该方法提供用于校准和校正的水合校正过程,从而可以确定材料样品中的分析物浓度。 水合校正过程特别适用于测定人体组织内的血液分析物浓度。