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    • 2. 发明申请
    • OPTICAL HOLOGRAPHIC DEVICE AND METHOD WITH ALINGNMENT MEANS
    • 光学手术装置和方法与辅助手段
    • WO2008035274A1
    • 2008-03-27
    • PCT/IB2007/053746
    • 2007-09-17
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.SCHUURMANS, Frank, J., P.CROMPVOETS, Floris, M., H.
    • SCHUURMANS, Frank, J., P.CROMPVOETS, Floris, M., H.
    • G11B7/0065G11B7/08
    • G11B7/0065G11B7/083
    • The present invention relates to an optical holographic device and a corresponding method for reading out a data page recorded in a holographic recording medium (106) and carrying data modulated using a block modulation code, according to which a data page is divided into a number of blocks and a code constraint is applied defining the number of data symbols in a block having a predetermined symbol value. In order to avoid for storing any alignment marks for determining the alignment of the blocks of the block modulation code, a device is proposed having alignment means (115) for determining the alignment of the blocks in a detected imaged data page by iteratively determining, for a different alignment of the blocks in each iteration, whether for said alignments said code constraint is fulfilled or not, and decoding means (116) for decoding the block modulated data from said detected imaged data page based on the determined alignment of the blocks.
    • 本发明涉及一种光学全息设备和相应的方法,用于读出记录在全息记录介质(106)中的数据页并携带使用块调制码调制的数据,根据该方法,数据页被分成多个 应用块和代码约束来定义具有预定符号值的块中的数据符号数。 为了避免存储用于确定块调制码的块的对准的任何对准标记,提出了一种具有对准装置(115)的装置,用于通过迭代地确定检测到的成像数据页中的块的对准来确定 基于所确定的块的对准,解码装置(116),用于对所述检测到的成像数据页中的块调制数据进行解码,以及解码装置(116)。
    • 4. 发明申请
    • SYSTEM FOR DARK-FIELD IMAGING OF TARGET AREAS BELOW AN OBJECT SURFACE
    • 目标区域在目标区域下方的暗场成像系统
    • WO2005015179A1
    • 2005-02-17
    • PCT/IB2004/051327
    • 2004-07-29
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.VAN BEEK, Michael, C.SCHUURMANS, Frank, J., P.
    • VAN BEEK, Michael, C.SCHUURMANS, Frank, J., P.
    • G01N21/47
    • A61B5/0059G01N21/21G01N21/4795G01N2021/8822
    • A monitoring system for dark-field imaging of a target area (72) below a surface (70) of an object, e.g., capillary vessel under the surface of the skin of a patient, comprises an illumination optical system (31), an imaging system (35), and a selective optical interception system for suppressing illumination light returning from the region between the surface of the object and the target area. The interception system may comprise crossed polarizers (32, 37) in the illumination and imagining paths, respectively, and/or an aperture stop (51) arranged to intercept a central portion of the returning imaging beam. Alternatively, the illumination and imaging paths subtend an angle and the illumination focus and the imaging focus are displaced relative to each other. The monitoring system may be comprised in an analysis apparatus further comprising a spectroscopy system having an excitation system and a detection system.
    • 用于对象物表面(70)下方的目标区域(72)的暗场成像的监视系统,例如患者皮肤表面下的毛细血管,包括照明光学系统(31),成像 系统(35),以及用于抑制从物体表面与目标区域之间的区域返回的照明光的选择性光学拦截系统。 拦截系统可以包括分别在照明和想象路径中的交叉偏振器(32,37)和/或布置成拦截返回成像束的中心部分的孔径光阑(51)。 或者,照明和成像路径对着一个角度,并且照明焦点和成像焦点相对于彼此移位。 监视系统可以包括在还包括具有激励系统和检测系统的光谱系统的分析装置中。