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    • 1. 发明授权
    • Refractive treatment device with slit illumination
    • 带狭缝照明的折射治疗装置
    • US07810927B2
    • 2010-10-12
    • US11937162
    • 2007-11-08
    • Gerard AntkowiakMarco HanftElke EbertKarsten FestagJuergen Ledermann
    • Gerard AntkowiakMarco HanftElke EbertKarsten FestagJuergen Ledermann
    • A61B3/10
    • A61B3/135A61F9/0079A61F9/00825A61F2009/00872
    • A solution by which an examination of the cornea for possible encapsulations, air bubbles, or other irregularities following a refractive surgery can be carried out directly at the treatment device instead of the patient having to be transferred to an examination device.The additional slit illumination system includes two slit projector units substantially symmetrically mounted at an angle of about 40° to the optical axis of the refractive treatment device, and fixed and focused on the eye of the patient to be examined. The slit projector units include a light source, a projection optical system, and beam forming and/or conducting optical components.Although intended for surgical microscopes, it can also be used for other opthalmologic treatment devices that would benefit from a slit projection system for the examination before, during, or after the treatment procedure.
    • 可以在治疗装置上直接进行屈光手术后可能的封装,气泡或其他不规则的角膜检查的解决方案,而不是必须转移到检查装置的患者。 附加狭缝照明系统包括两个狭缝投影单元,其基本对称地以与折射治疗装置的光轴成约40°的角度安装,并且固定并聚焦在待检查患者的眼睛上。 狭缝投影仪单元包括光源,投影光学系统以及光束形成和/或导电光学部件。 虽然是用于手术显微镜,但也可用于其他眼科治疗装置,这些装置可以从用于在治疗过程之前,之中或之后进行检查的狭缝投影系统中受益。
    • 2. 发明申请
    • REFRACTIVE TREATMENT DEVICE WITH SLIT ILLUMINATION
    • 具有裂缝照射的折射率处理装置
    • US20080123051A1
    • 2008-05-29
    • US11937162
    • 2007-11-08
    • Gerard AntkowiakMarco HanftElke EbertKarsten FestagJuergen Ledermann
    • Gerard AntkowiakMarco HanftElke EbertKarsten FestagJuergen Ledermann
    • A61B3/135A61B3/10
    • A61B3/135A61F9/0079A61F9/00825A61F2009/00872
    • A solution by which an examination of the cornea for possible encapsulations, air bubbles, or other irregularities following a refractive surgery can be carried out directly at the treatment device instead of the patient having to be transferred to an examination device.The additional slit illumination system includes two slit projector units substantially symmetrically mounted at an angle of about 40° to the optical axis of the refractive treatment device, and fixed and focused on the eye of the patient to be examined. The slit projector units include a light source, a projection optical system, and beam forming and/or conducting optical components.Although intended for surgical microscopes, it can also be used for other opthalmologic treatment devices that would benefit from a slit projection system for the examination before, during, or after the treatment procedure.
    • 可以在治疗装置上直接进行屈光手术后可能的封装,气泡或其他不规则的角膜检查的解决方案,而不是必须转移到检查装置的患者。 附加狭缝照明系统包括两个狭缝投影单元,其基本对称地以与折射治疗装置的光轴成约40°的角度安装,并且固定并聚焦在待检查患者的眼睛上。 狭缝投影仪单元包括光源,投影光学系统以及光束形成和/或导电光学部件。 虽然是用于手术显微镜,但也可用于其他眼科治疗装置,这些装置可以从用于在治疗过程之前,之中或之后进行检查的狭缝投影系统中受益。
    • 8. 发明申请
    • OPHTHALMOLOGIC BIOMETRIC OR IMAGE GENERATING SYSTEM AND METHOD FOR DETECTION AND EVALUATION OF MEASURED DATA
    • 用于检测和评估测量数据的眼科生物学或图像生成系统和方法
    • US20110069279A1
    • 2011-03-24
    • US12886155
    • 2010-09-20
    • Martin HackerThomas PabstRalf EbersbachGerard AntkowiakWilfried BissmannMatthias Reich
    • Martin HackerThomas PabstRalf EbersbachGerard AntkowiakWilfried BissmannMatthias Reich
    • A61B3/10
    • A61B3/102
    • An ophthalmological biometric or image-producing system and method for detection and analysis of measurement data including a measurement arrangement with an illumination unit for illuminating the eye with at least one measurement beam, a signal detection unit for the detection of the light portions scattered or reflected back from the eye, a central control unit with an output unit, and a pattern generating unit which includes an optical scan unit, a control unit as well as a position sensor for measuring the realized deflections of the optical scan unit, whereby control unit, optical scan unit and position sensor can form a control circuit. Thereby, the position sensor, except for the connection within the possible control circuit, includes a connection to a unit of the measurement arrangement for optimizing measurement value logging or to the central control unit for correcting the biometric measurements or tomograms.
    • 一种用于检测和分析测量数据的眼科生物测定或图像产生系统和方法,所述测量数据包括具有用于利用至少一个测量光束照射眼睛的照明单元的测量装置,用于检测散射或反射的光部分的信号检测单元 从眼睛回来的具有输出单元的中央控制单元,以及包括光学扫描单元,控制单元以及用于测量所实现的光学扫描单元的偏转的位置传感器的图案生成单元,由此控制单元, 光学扫描单元和位置传感器可以形成一个控制电路。 由此,除了可能的控制电路内的连接之外,位置传感器包括与用于优化测量值记录的测量装置的单元的连接或者用于校正生物测量或断层图像的中央控制单元的连接。
    • 9. 发明授权
    • OCT-based ophthalmological measuring system
    • OCT眼科测量系统
    • US08845097B2
    • 2014-09-30
    • US13812113
    • 2011-07-02
    • Martin HackerThomas PabstRalf EbersbachGerard Antkowiak
    • Martin HackerThomas PabstRalf EbersbachGerard Antkowiak
    • A61B3/14A61B3/10A61B3/00
    • A61B3/102A61B3/1005A61B5/0066
    • An ophthalmological measuring system for determining distances and/or for tomographic imaging of ocular structures, based on an OCT method. The measuring system includes a light source with a spectral centroid (λ), an interferometric measuring device, a scanner system, which in addition to the lateral deflection of the sample beam also has axial modulations with a frequency (f) in the sample arm, and a control and evaluation unit. The scanner performs a lateral, two-dimensional deflection of the sample beam with the aid of one or even two separate mirror elements and can in particular have axial modulation amplitudes zM>>λ/2. The system can also be used for scanner systems in other fields that use an OCT method, in particular a swept-source OCT method.
    • 一种眼科测量系统,用于基于OCT方法确定眼结构的距离和/或层析成像。 测量系统包括具有光谱中心(λ)的光源,干涉测量装置,扫描仪系统,除了样品束的横向偏转之外,还具有样品臂中频率(f)的轴向调制, 以及控制和评估单位。 扫描仪借助于一个或甚至两个分离的镜元件执行样品束的横向,二维偏转,并且具体可以具有轴向调制幅度zM>>λ/ 2。 该系统还可以用于其他使用OCT方法的领域的扫描仪系统,特别是扫频源OCT方法。
    • 10. 发明申请
    • OCT-BASED OPHTHALMOLOGICAL MEASURING SYSTEM
    • 基于OCT的眼科测量系统
    • US20130120711A1
    • 2013-05-16
    • US13812113
    • 2011-07-02
    • Martin HackerThomas PabstRalf EbersbachGerard Antkowiak
    • Martin HackerThomas PabstRalf EbersbachGerard Antkowiak
    • A61B3/10
    • A61B3/102A61B3/1005A61B5/0066
    • An ophthalmological measuring system for determining distances and/or for tomographic imaging of ocular structures, based on an OCT method. The measuring system includes a light source with a spectral centroid (λ), an interferometric measuring device, a scanner system, which in addition to the lateral deflection of the sample beam also has axial modulations with a frequency (f) in the sample arm, and a control and evaluation unit. The scanner performs a lateral, two-dimensional deflection of the sample beam with the aid of one or even two separate mirror elements and can in particular have axial modulation amplitudes zM>>λ/2. The system can also be used for scanner systems in other fields that use an OCT method, in particular a swept-source OCT method.
    • 一种眼科测量系统,用于基于OCT方法确定眼结构的距离和/或层析成像。 测量系统包括具有光谱中心(λ)的光源,干涉测量装置,扫描仪系统,除了样品束的横向偏转之外,还具有样品臂中的频率(f)的轴向调制, 以及控制和评估单位。 扫描仪借助于一个或甚至两个分离的镜元件执行样品束的横向,二维偏转,并且特别地具有轴向调制幅度zM>>λ/ 2。 该系统还可以用于其他使用OCT方法的领域的扫描仪系统,特别是扫频源OCT方法。