METHOD FOR NON-INVASIVE BLOOD GLUCOSE MONITORING AND METHOD FOR ANALYSING BIOLOGICAL MOLECULE
    2.
    发明申请
    METHOD FOR NON-INVASIVE BLOOD GLUCOSE MONITORING AND METHOD FOR ANALYSING BIOLOGICAL MOLECULE 有权
    非侵入性血液葡萄糖监测方法及分析生物分子的方法

    公开(公告)号:US20120277557A1

    公开(公告)日:2012-11-01

    申请号:US13457517

    申请日:2012-04-27

    IPC分类号: A61B3/10 G06F19/00

    CPC分类号: A61B5/14532 A61B5/14558

    摘要: A method for non-invasive blood glucose monitoring includes the following steps. At least one ray of light is emitted from at least one light source. The light emitted from the light source is leaded into an eyeball and focused on the eyeball through a first beam splitter. The reflected light reflected from the eyeball is transmitted through the first beam splitter to a set of photo detectors. Optical rotatory distribution (ORD) information and absorption energy information of the reflected light transmitted to the set of photo detectors are measured. ORD difference and absorption energy difference resulting from the light emitted from the light source and the reflected light transmitted to the set of photo detectors are obtained. Glucose information is obtained by analyzing the ORD difference and the absorption energy difference, and since glucose information has a corresponding relationship with blood glucose information, blood glucose information may be read.

    摘要翻译: 非侵入性血糖监测方法包括以下步骤。 至少一个光线从至少一个光源发射。 从光源发射的光线通过第一分束器引入眼球并聚焦在眼球上。 从眼球反射的反射光通过第一分束器传输到一组光检测器。 测量透射到该组光电检测器的反射光的旋光分布(ORD)信息和吸收能量信息。 获得由从光源发射的光和透射到该组光检测器的反射光产生的ORD差和吸收能差。 通过分析ORD差异和吸收能量差异获得葡萄糖信息,由于葡萄糖信息与血糖信息具有对应关系,因此可以读取血糖信息。

    Optical recording medium and polymethine complex for use in the recording layer of the optical recording medium
    3.
    发明申请
    Optical recording medium and polymethine complex for use in the recording layer of the optical recording medium 审中-公开
    用于光记录介质的记录层的光记录介质和聚甲炔配合物

    公开(公告)号:US20070059641A1

    公开(公告)日:2007-03-15

    申请号:US11514846

    申请日:2006-09-05

    IPC分类号: G11B7/24

    摘要: The present invention relates to a polymethine complex and an optical recording medium using said polymethine complex. Through using the polymethine complex formed by combining a polymethine cation with a heat-inhibiting anion as the optical recording material in the optical recording medium, not only the heat inference caused by thermal decomposition of the dyes during high speed optical recording can be reduced or avoided, but also absorption coefficient, sensitivity and recording speed in the region of ultraviolet and visible light of 300˜800 nm wavelength can be increased. The optical recording medium according to the present invention can achieve high-speed writing and reading with Pi errors less than 280 in case that the reflective layer of the optical recording medium has a minimal thickness of 50 nm. Furthermore, the optical recording medium according to the present invention may comprise the polymethine complex as the sole optical recording material such that the optical recording medium can be recovered for reuse, which will reduce the cost of manufacture. The optical recording medium according to the present invention also permits that both red laser recording and blue laser recording are performed synchronically.

    摘要翻译: 本发明涉及聚甲炔配合物和使用所述聚甲炔配合物的光学记录介质。 通过使用通过将聚甲炔阳离子与抑热阴离子结合形成的聚甲炔络合物作为光学记录介质中的光学记录材料,不仅可以减少或避免在高速光学记录期间由染料的热分解引起的热推定 ,而且可以增加紫外线和300〜800nm波长可见光区域的吸收系数,灵敏度和记录速度。 根据本发明的光记录介质可以在光记录介质的反射层具有50nm的最小厚度的情况下实现高于小于280的Pi误差的高速写入和读取。 此外,根据本发明的光记录介质可以包括作为唯一光记录材料的聚甲炔配合物,使得光记录介质可以回收再利用,这将降低制造成本。 根据本发明的光记录介质还允许同时执行红色激光记录和蓝色激光记录两者。