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    • 2. 发明授权
    • Method and apparatus for detecting and analyzing variations in a physiologic parameter
    • 用于检测和分析生理参数变化的方法和装置
    • US08509869B2
    • 2013-08-13
    • US12467003
    • 2009-05-15
    • Clark R. Baker, Jr.Paul D. Mannheimer
    • Clark R. Baker, Jr.Paul D. Mannheimer
    • A61B5/00
    • A61B5/14551
    • The present disclosure is generally directed to identifying and/or analyzing high resolution variations in a measured physiologic parameter, such as blood oxygen saturation (SpO2) measured using pulse oximetry. Present embodiments may include a system including a sensor comprising an emitter capable of emitting light at different wavelengths into a tissue bed, and a detector capable of detecting the light from the emitter after dispersion and/or reflection by the tissue bed. Further, the system may include a pulse oximeter capable of receiving signals from the sensor that are indicative of characteristics of the light detected by the detector, and utilizing the signals to estimate blood oxygen saturation values over time at a high resolution to facilitate detection of variations in the blood oxygen saturation values that are smaller in magnitude than an accuracy, display precision, and/or calibration of the blood oxygen saturation values.
    • 本公开通常涉及鉴定和/或分析测量的生理参数中的高分辨率变化,例如使用脉搏血氧测定法测量的血氧饱和度(SpO2)。 本实施例可以包括包括传感器的系统,该传感器包括能够将不同波长的光发射到组织床中的发射器,以及能够在由组织床分散和/或反射之后检测来自发射体的光的检测器。 此外,该系统可以包括能够接收来自传感器的信号的脉搏血氧计,其指示由检测器检测到的光的特性,并且利用该信号以高分辨率随时间推定血氧饱和度值,以便于检测变化 在血氧饱和度值的范围内比血氧饱和度值的精度,显示精度和/或校准更小。
    • 6. 发明授权
    • Forehead sensor placement
    • 前额传感器放置
    • US07899509B2
    • 2011-03-01
    • US11495792
    • 2006-07-28
    • Paul D. MannheimerDon HannulaDonald E. BeboutMichael Patrick O'Neil
    • Paul D. MannheimerDon HannulaDonald E. BeboutMichael Patrick O'Neil
    • A61B5/1455
    • A61B5/6814A41D20/00A61B5/01A61B5/14552
    • Forehead oximetry sensor devices and methods for determining physiological parameters using forehead oximetry sensors. One method includes placing an oximetry sensor on the forehead of a patient, such that the sensor is placed on the lower forehead region, above the eyebrow with the sensor optics placed lateral of the iris and proximal the temple; and operating the pulse oximeter to obtain the physiological parameter. In one aspect, the method also includes providing and placing a headband over the oximetry sensor, or alternately, the sensor is a headband-integrated sensor. The headband has an elastic segment sized to fit around the patient's head. The headband also includes a non-elastic segment that is smaller than and attached with the elastic segment. The non-elastic segment is sized to span a portion of the elastic segment when the elastic segment is stretched. In addition, the non-elastic segment is larger than the portion of the elastic segment it spans when the elastic segment is not stretched. When the headband or the headband-integrated sensor is sufficiently tight, it delivers a pressure in the range higher than the venous pressure and lower than the capillary pressure to the forehead of the patient.
    • 前额血氧饱和度传感器装置和使用前额血氧饱和度传感器确定生理参数的方法。 一种方法包括将血氧定量传感器放置在患者的前额上,使得传感器被放置在眉毛上方的下部前额区域上,传感器光学器件位于虹膜的侧面并且靠近神经元; 并操作脉搏血氧计获得生理参数。 在一个方面,该方法还包括提供并将头带放置在血氧测定传感器上方,或者替代地,传感器是头带集成传感器。 头带具有尺寸适合围绕患者头部的弹性段。 头带还包括小于弹性片段并且与弹性片段连接的非弹性片段。 当弹性段被拉伸时,非弹性段的尺寸设定成跨过弹性区段的一部分。 此外,非弹性部分大于当弹性片段未拉伸时它所跨过的弹性片段的部分。 当头带或头带一体式传感器足够紧密时,其传递的压力在高于静脉压的范围内并且低于毛细管压力到患者的额头。