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    • 5. 发明申请
    • OPTICAL COHERENCE REFLECTOMETRY WITH DEPTH RESOLUTION
    • 低分辨率光学KOHÄRENZREFLEKTROMETRIE
    • WO2010017954A2
    • 2010-02-18
    • PCT/EP2009005811
    • 2009-08-11
    • ZEISS CARL MEDITEC AGHACKER MARTINBARTH ROLANDBERGNER ROLANDBISSMANN WILFRIEDVON BUENAU RUDOLFEBERSBACH RALFKOSCHMIEDER INGOFERCHER ADOLF FRIEDRICHGRAJCIAR BRANISLAV
    • HACKER MARTINBARTH ROLANDBERGNER ROLANDBISSMANN WILFRIEDVON BUENAU RUDOLFEBERSBACH RALFKOSCHMIEDER INGOFERCHER ADOLF FRIEDRICHGRAJCIAR BRANISLAV
    • A61B3/10
    • A61B3/1005
    • A device for performing measurements on an eye (4), in particular for measuring the depth of the anterior chamber, the lens thickness, the corneal thickness or the axial length, wherein the device comprises an interferometer (10), focuses at least one measurement beam (7, 8) into the eye (4) along an optical axis (OA), records backscattered radiation and interferometrically generates a measurement signal displaying structures of the eye by time-domain, spectral-domain or Fourier-domain coherence reflectometry, has an adjustment apparatus (13; 16; 17; 19; 21) for laterally and/or axially displacing the focus in the eye (4) or for varying a polarization state of the measurement beam (7, 8) and has a control apparatus (22) which actuates the interferometer, wherein the control apparatus (22) generates a plurality of A-scan individual signals from the backscattered radiation, combines these to an A-scan measurement signal and is designed such that it actuates the adjustment apparatus (13; 16; 17; 19; 21) for displacing the position of the focus or for varying the polarization while recording the backscattered radiation from which the control apparatus (22) generates the A-scan individual signals is being recorded and backscattered radiation contributes to the A-scan measurement signal in a plurality of different positions of the focus or in a plurality of different polarization states of the measurement radiation (7, 8).
    • 装置,用于测量在眼睛上(4),特别是用于测量前房深度,透镜厚度,角膜厚度或轴向长度,所述装置包括在眼睛中的干涉仪(10),至少一个测量光束(7,8)沿光轴(OA) (4)聚焦接收反向散射的辐射,并且干涉由时域而产生,Spektraldomänen-或傅立叶域Kohärenzreflektrometrie指示测量的信号,调节装置的眼睛的结构,以便于聚焦的横向和/或轴向位移(13; 21 16; 17; 19) 在眼(4),或用于改变测量光束的偏振状态(7,8)和控制装置(22)驱动所述的干涉仪,所述从所述背散射辐射控制装置(22)产生的多个扫描的各个信号的,并 总结A扫描测量信号,并且适于将所述调节装置(13; 16; 17; 19; 21),用于移动所述 位置的焦点的,或到偏振变化的后向散射辐射的记录,从该控制装置(22)在焦点处或测量辐射的多个不同偏振状态的几个不同的位置产生的A扫描的各个信号,驱动器和后向散射辐射期间(7,8),用于 A扫描测量信号有贡献。
    • 6. 发明申请
    • DEVICE FOR INTERFEROMETRICALLY MEASURING THE EYE LENGTH AND THE ANTERIOR EYE SEGMENT
    • 用于测量干涉测量眼球长度和眼睛正截面
    • WO2012084170A1
    • 2012-06-28
    • PCT/EP2011006395
    • 2011-12-17
    • ZEISS CARL MEDITEC AGSCHMITT-MANDERBACH TOBIASBUBLITZ DANIELBERGNER ROLAND
    • SCHMITT-MANDERBACH TOBIASBUBLITZ DANIELBERGNER ROLAND
    • A61B3/10A61B3/12A61B5/00A61B5/107
    • A61B3/1005A61B3/102A61B3/117G01B9/02028
    • The invention relates to a solution for interferometrically measuring the eye length and the anterior eye segment after the optical axis of the measuring system has been aligned with the optical axis of an eye (5). The device according to the invention for interferometrically measuring the eye length and the anterior eye segment consists of an illumination source (1), at least one interferometric measuring array with external reference, diverse optical imaging systems, and a control and evaluation unit. The illumination source has high spatial coherence and low coherence of time. Preferably, light is emitted by the illumination device from the NIR range, having a wavelength of 700-1000 nm, for example. Furthermore, an optical imaging system is arranged in front of the eye such that the illumination light impinges on the eye as a nearly collimated beam. The device according to the invention relates to the field of ophthalmology, and is provided for the simultaneous interferometrical measurement of the eye length and the anterior eye segment, wherein the measuring device is characterized by high reliability and sensitivity.
    • 本发明涉及一种用于测量系统的向眼(5)已被对准的光轴的光轴后眼睛长度和前段的干涉测量中的溶液。 对于眼睛长度和前段的干涉测量本发明的装置包括一个光源(1),至少一个与外部基准,各种成像的光学系统和一个控制和评估单元干涉测量装置。 这里,照明源,以高空间和低的时间相干性。 优选地,照明光从近红外范围的源极,发射,例如,具有700-1000 nm的波长。 此外,成像光学系统被布置在所述照明光入射作为眼睛上的几乎准直的光束在眼睛的前方。 根据本发明的装置涉及眼科学领域,并且提供了一种用于眼睛长度和前段的同时干涉测量,其中所述测量装置的特征在于高的可靠性和灵敏度。