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    • 3. 发明授权
    • Non-invasive measurement of blood analytes using photodynamics
    • US06650915B2
    • 2003-11-18
    • US10012902
    • 2001-10-22
    • Wilson RouttMark J. Rice
    • Wilson RouttMark J. Rice
    • A61B500
    • A61B5/1455A61B3/12A61B5/14532A61B5/14558
    • The determination of blood glucose in an individual is carried out by projecting illuminating light into an eye of the individual to illuminate the retina with the light having wavelengths that are absorbed by rhodopsin and with the intensity of the light varying in a prescribed temporal manner. The light reflected from the retina is detected to provide a signal corresponding to the intensity of the detected light, and the detected light signal is analyzed to determine the changes in form from that of the illuminating light. For a biased sinusoidal illumination, these changes can be expressed in terms of harmonic content of the detected light. The changes in form of the detected light are related to the ability of rhodopsin to absorb light and regenerate, which in turn is related to the concentration of blood glucose, allowing a determination of the relative concentration of blood glucose. Other photoreactive analytes can similarly be determined by projecting time varying illuminating light into the eye, detecting the light reflected from the retina, and analyzing the detected light signal to determine changes in form of the signal due to changes in absorptivity of a photoreactive analyte.
    • 4. 发明授权
    • Non-invasive measurement of blood analytes using photodynamics
    • 使用光动力学对血液分析物进行非侵入性测量
    • US06889069B2
    • 2005-05-03
    • US10642104
    • 2003-08-15
    • Wilson RouttMark J. Rice
    • Wilson RouttMark J. Rice
    • A61B3/12A61B5/00
    • A61B5/1455A61B3/12A61B5/14532A61B5/14558
    • The determination of blood glucose in an individual is carried out by projecting illuminating light into an eye of the individual to illuminate the retina with the light having wavelengths that are absorbed by rhodopsin and with the intensity of the light varying in a prescribed temporal manner. The light reflected from the retina is detected to provide a signal corresponding to the intensity of the detected light, and the detected light signal is analyzed to determine the changes in form from that of the illuminating light. For a biased sinusoidal illumination, these changes can be expressed in terms of harmonic content of the detected light. The changes in form of the detected light are related to the ability of rhodopsin to absorb light and regenerate, which in turn is related to the concentration of blood glucose, allowing a determination of the relative concentration of blood glucose. Other photoreactive analytes can similarly be determined by projecting time varying illuminating light into the eye, detecting the light reflected from the retina, and analyzing the detected light signal to determine changes in form of the signal due to changes in absorptivity of a photoreactive analyte.
    • 个体中的血糖的测定通过将照射光投射到个体的眼睛中来进行,以用具有被视紫红质吸收的波长的光照射视网膜,并且光的强度以规定的时间方式变化。 检测从视网膜反射的光以提供对应于检测到的光的强度的信号,并且分析检测到的光信号以确定形式与照明光的变化。 对于偏置正弦照明,这些变化可以用检测到的光的谐波含量表示。 检测光的形式变化与视紫红质吸收光和再生的能力有关,而这又与血糖浓度有关,从而可以测定血糖的相对浓度。 其他光反应性分析物也可以类似地通过将照射光投射到眼睛中,检测从视网膜反射的光,并分析所检测的光信号来确定由于光反应性分析物的吸收性变化引起的信号形式的变化来确定。
    • 6. 发明授权
    • Identification of protective covers for medical imaging devices
    • 识别医疗成像设备的保护盖
    • US06537207B1
    • 2003-03-25
    • US09958280
    • 2001-10-05
    • Mark J. RiceSteve Spanoudis
    • Mark J. RiceSteve Spanoudis
    • A61B100
    • A61B1/00142A61B1/00055A61B2560/0276
    • A protective cover for medical imaging devices of the type having a probe with an optical system at a distal end includes a sheath of plastic material formed to enclose at least a portion of the probe and a transparent head secured to the sheath at a distal end of the cover. The transparent head provides a transparent window at the distal end of the probe to allow light to enter the probe and be imaged in a normal manner. Indicia are formed on the transparent head and are imaged by the medical imaging device. The image is then analyzed to determine if the indicia as shown in the image correspond to a preselected pattern, which may be one of a group of patterns which provide indications concerning the nature of the cover. If a pattern is recognized, the information corresponding to that pattern can be provided to an operator; if no pattern is recognized or if the pattern corresponds to an improper cover for the particular imaging device, a warning can be provided to the operator or the device disabled. The protective cover can be disposed after use with a patient, and a new cover applied to enclose the portions of the probe that will contact another patient, thereby minimizing potential spread of infection.
    • 用于具有在远端具有光学系统的探针的类型的医疗成像装置的保护盖包括塑料材料的护套,所述护套被形成为封闭探针的至少一部分,并且在远端处固定到护套的透明头 封面。 透明头在探针的远端提供透明窗口,以允许光进入探针并以正常方式成像。 标记形成在透明头上,并由医学成像装置成像。 然后分析图像以确定图像中所示的标记是否对应于预选图案,其可以是提供关于盖的性质的指示的一组图案之一。 如果识别出图案,则可以向操作者提供与该图案相对应的信息; 如果没有识别出图案,或者如果图案对应于特定成像装置的不正确的盖子,则可以向操作者或装置提供警告。 保护盖可以在使用后与患者配置,并且应用新的盖子以封闭将接触另一患者的探针部分,从而最小化感染的潜在扩散。