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    • 13. 发明授权
    • Non-invasive blood glucose sensors using a magneto-resonance absorption method and measurement methods thereof
    • 使用磁共振吸收法的无创血糖传感器及其测量方法
    • US07635331B2
    • 2009-12-22
    • US11177351
    • 2005-07-11
    • Dong-kyun KimJong-hwa WonEvgeny Alexandrovich Protasov
    • Dong-kyun KimJong-hwa WonEvgeny Alexandrovich Protasov
    • A61B5/00A61B5/05G01V3/00
    • A61B5/055A61B5/14532G01N24/08
    • A non-invasive blood glucose measurement method using a magneto-resonance absorption method. A constant magnetic field is applied using a pair of permanent magnets, the magnetic field having a uniform strength. A triangular waveform low frequency modulation magnetic field is applied using a low frequency generator and a pair of low frequency coils, the low frequency modulation magnetic field having a uniform strength. A weak acoustic wave modulation magnetic field is applied using an acoustic wave generator and a pair of acoustic wave coils. Electromagnetic waves are applied to a detector in which a finger is positioned to produce a nuclear magneto-resonance, the electromagnetic waves having a frequency varying in a specific frequency band step by step, the applying being done using a high frequency generator and a sensor coil. A magneto-resonance absorption signal produced by spin-lattice relaxation of protons in a tissue of the finger because of the nuclear magneto-resonance is detected. A magneto-resonance spin-lattice relaxation time of the finger from the magneto-resonance absorption signal is determined. A blood glucose concentration in a human body is determined from a correlation between a pre-determined blood glucose concentration in the human body and the determined magneto-resonance spin-lattice relaxation time.
    • 一种使用磁共振吸收法的无创血糖测量方法。 使用一对永磁体施加恒定的磁场,该磁场具有均匀的强度。 使用低频发生器和一对低频线圈施加三角波形低频调制磁场,低频调制磁场具有均匀的强度。 使用声波发生器和一对声波线圈施加弱的声波调制磁场。 电磁波被施加到其中手指被定位以产生核磁共振的检测器,电磁波在特定频带中逐步变化的频率,使用高频发生器和传感器线圈 。 检测由于核磁共振而在手指的组织中由质子的自旋 - 晶格弛豫产生的磁共振吸收信号。 确定手指从磁共振吸收信号的磁共振自旋 - 晶格弛豫时间。 根据人体中预先确定的血糖浓度与确定的磁共振旋转晶格弛豫时间之间的相关性来确定人体血糖浓度。
    • 14. 发明申请
    • Image resolution enhancing apparatus and method
    • 图像分辨率增强装置及方法
    • US20070157727A1
    • 2007-07-12
    • US11599486
    • 2006-11-15
    • Jong-hwa WonSung-hoon Choa
    • Jong-hwa WonSung-hoon Choa
    • G01P15/00
    • G09G3/02G09G3/346G09G2340/0421
    • An image resolution enhancing apparatus and method are provided. The image resolution enhancing apparatus includes: a scanner, a synchronous detector, a wave generator, a high voltage amplifier, a resonant frequency detector, a multiplier which multiplies the resonant frequency of the scanner which is detected by the resonant frequency detector by the horizontal resolution of a display screen; a frequency oscillator which oscillates at a pixel frequency which corresponds to the multiplication result of the multiplier; and a pulse generator which generates a pulse which corresponds to the pixel frequency oscillations of the frequency oscillator and outputs the generated pulse to the wave generator, wherein the wave generator adds the pulse generated by the pulse generator to the wave to generate a composite wave.
    • 提供了一种图像分辨率增强装置和方法。 图像分辨率增强装置包括:扫描仪,同步检测器,波发生器,高电压放大器,谐振频率检测器,将由谐振频率检测器检测的扫描仪的谐振频率乘以水平分辨率的乘法器 的显示屏幕; 频率振荡器,其以对应于乘法器的乘法结果的像素频率振荡; 以及脉冲发生器,其产生对应于所述频率振荡器的像素频率振荡的脉冲,并将所生成的脉冲输出到所述波发生器,其中所述波发生器将由所述脉冲发生器产生的脉冲加到所述波中以产生复合波。
    • 15. 发明申请
    • Device for the non-invasive measurement of blood glucose concentration by millimeter waves and method thereof
    • 用毫米波无创测量血糖浓度的装置及其方法
    • US20060025664A1
    • 2006-02-02
    • US11154558
    • 2005-06-17
    • Dong-kyun KimJong-hwa WonVyacheslav MeriakriEvgenii Chigrai
    • Dong-kyun KimJong-hwa WonVyacheslav MeriakriEvgenii Chigrai
    • A61B5/00
    • A61B5/14532
    • A device and method for the non-invasive measurement of blood glucose concentrations by millimeter waves. The device includes a millimeter wave generator; a TE10 mode rectangular waveguide transmitting a millimeter wave generated by the millimeter wave generator; and a plane parallel plate chosen to yield a minimal point of the power reflection coefficient of the millimeter wave incident to and reflected from the dielectric object under test via the TE10 mode rectangular waveguide and the plane parallel plate. The device also includes power detectors detecting the powers of the incident wave generated by the millimeter wave generator and the reflected wave from the dielectric object via the plane parallel plate; a temperature sensor measuring a temperature of the dielectric object; and a reader reading the minimum power reflection coefficient and a corresponding frequency from the incident and reflected wave detected by the power detectors.
    • 用毫米波非侵入式测量血糖浓度的装置和方法。 该装置包括毫米波发生器; 传输由毫米波发生器产生的毫米波的TE10模式矩形波导; 并且选择平面平行板,以产生通过TE10模式矩形波导和平面平行板入射到被测介质物体并从其反射的毫米波的功率反射系数的最小点。 该装置还包括功率检测器,其通过平面平行板检测由毫米波发生器产生的入射波的功率和来自电介质物体的反射波; 测量介电物体的温度的温度传感器; 以及从功率检测器检测到的入射和反射波读取最小功率反射系数和相应频率的读取器。
    • 19. 发明授权
    • Optical device module
    • 光器件模块
    • US06396981B1
    • 2002-05-28
    • US09561920
    • 2000-05-01
    • Jong-hwa WonYun-ho JeongJong-ho Choi
    • Jong-hwa WonYun-ho JeongJong-ho Choi
    • G02B632
    • G02B6/4214G02B6/4206
    • An optical device module including an optical fiber for transmitting light, an optical device for receiving light transmitted through the optical fiber, and a lens member installed between the optical fiber and the optical device, for focusing the light emitted from the optical fiber to the optical device, the lens member having a flat plane facing the optical device and a semi-spherical convex plane facing an end of the optical fiber, and the lens member including a concave portion having a predetermined curvature, for transmitting incident light, formed in the center of the convex plane, a light transmitting region corresponding to the concave portion provided in the center of the flat plane, a first reflecting portion formed on the portion of the convex plane excluding the concave portion, and a second reflecting portion formed on the portion of the flat plane excluding the light transmitting region.
    • 一种包括用于传输光的光纤的光学器件模块,用于接收通过光纤传输的光的光学器件和安装在光纤和光学器件之间的透镜部件,用于将从光纤发射的光聚焦到光学器件 装置,具有面向光学装置的平面的透镜构件和面对光纤的端部的半球形凸面,并且透镜构件包括具有预定曲率的凹部,用于透射形成在中心的入射光 与设置在平面中央的凹部对应的透光区域,形成在除了凹部以外的凸面的部分上形成的第一反射部和形成在该平面的一部分上的第二反射部 除了透光区域之外的平面。