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    • 2. 发明申请
    • WIRELESS NON-INVASIVE ANALYTE MEASUREMENT DEVICE AND METHOD OF USE
    • 无线非入侵分析仪测量装置及其使用方法
    • WO2008014130A2
    • 2008-01-31
    • PCT/US2007/073460
    • 2007-07-13
    • OCULIR, INC.BURD, John, F.WILLIAMS, Paul
    • BURD, John, F.WILLIAMS, Paul
    • G06Q50/00G06Q10/00A61B5/00
    • G06Q50/22A61B5/0002A61B5/14532Y02A90/22
    • Systems and method for tracking measurements from a wireless measurement device are provided. A tracking server is in communication with wireless measurement devices deployed in the field and periodically receives usage reports from the measurement devices to ensure timely measurements by the user and to monitor usage of the measurement devices to ensure compliance. The wireless measurement device is configured to measure one or more analyte levels or concentrations, presence, and/or absence of one or more analytes of the user. The fact of the measurement and the results of the measurement are provided to the tracking server via a wireless communication network. The tracking server stores the information for historical tracking of measurement data usage data. The tracking server may send alerts to a predetermined list of people to notify them when the user is not using the measurement device or when the number of authorized uses needs to be replenished.
    • 提供了用于跟踪来自无线测量装置的测量的系统和方法。 跟踪服务器与现场部署的无线测量设备进行通信,并定期从测量设备接收使用报告,以确保用户及时进行测量并监控测量设备的使用情况以确保符合性。 无线测量装置被配置为测量用户的一种或多种分析物的一种或多种分析物水平或浓度,存在和/或不存在。 通过无线通信网络向跟踪服务器提供测量的事实和测量结果。 跟踪服务器存储用于测量数据使用数据的历史跟踪的信息。 跟踪服务器可以向预定的人员列表发送警报,以便在用户不使用测量设备时或当需要补充授权用途的数量时通知他们。
    • 3. 发明申请
    • METHODS AND DEVICE FOR NON-INVASIVE ANALYTE MEASUREMENT
    • 用于非入侵分析仪测量的方法和设备
    • WO2004099824A2
    • 2004-11-18
    • PCT/US2004/012893
    • 2004-04-27
    • OCULIR, INC.BURD, John, F.SELL, WilliamFRADEN, JacobKRAMER, Charles, E.KRANTZ, GaryCHAPMAN, Bart
    • BURD, John, F.SELL, WilliamFRADEN, JacobKRAMER, Charles, E.KRANTZ, GaryCHAPMAN, Bart
    • G02B
    • A61B5/1455A61B5/14532A61B5/14546
    • The present invention is related to non-invasive methods and instruments to detect the level of analyte concentrations in the tissue of a subject. The spectra of mid-infrared radiation emitted from a subject's body are altered corresponding to the concentration of various compounds within the radiating tissue. In one aspect of the invention, an instrument floods a body surface of the subject, such as the subject's eye, with radiation in the mid-infrared range and measures analyte concentrations based on mid-infrared radiation reflected back to the instrument. In another aspect of the invention, an instrument measures the level of mid-infrared radiation from the subject's body surface, such as the eye, and determines a specific analyte's concentration based on said analyte's distinctive mid-infrared radiation signature. A preferred aspect of the invention is related to non-invasive methods and instruments to detect the level of analyte concentrations in the tissue of a subject by measuring electromagnetic radiation signatures from the subject's conjunctiva. The spectra of mid-infrared radiation emitted from a subject's body are altered corresponding to the concentration of various compounds within the radiating tissue. In one aspect of the preferred embodiment of the invention, an instrument floods the conjunctiva of the subject with electromagnetic radiation in the mid-infrared range and measures analyte concentrations based on mid-infrared radiation reflected back to the instrument.
    • 本发明涉及用于检测受试者组织中分析物浓度水平的非侵入性方法和仪器。 从受试者身体发射的中红外辐射的光谱根据辐射组织内各种化合物的浓度而改变。 在本发明的一个方面中,仪器用对象眼睛的中心红外范围的辐射使物体的身体表面泛滥,并且基于反射回仪器的中红外辐射来测量分析物浓度。 在本发明的另一方面,仪器测量来自受试者的身体表面(例如眼睛)的中红外辐射的水平,并且基于所述分析物的独特的中红外辐射特征确定特定分析物的浓度。 本发明的优选方面涉及通过测量来自受试者结膜的电磁辐射特征来检测受试者组织中分析物浓度水平的非侵入性方法和仪器。 从受试者身体发射的中红外辐射的光谱根据辐射组织内各种化合物的浓度而改变。 在本发明的优选实施例的一个方面,仪器用中红外范围内的电磁辐射泛滥受试者的结膜,并且基于反射回仪器的中红外辐射来测量分析物浓度。