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    • 2. 发明授权
    • System for the improved imaging of eye structures
    • 用于改善眼结构成像的系统
    • US08801184B2
    • 2014-08-12
    • US13696030
    • 2011-04-23
    • Martin HackerRudolf Murai von BünauBurkhard Wagner
    • Martin HackerRudolf Murai von BünauBurkhard Wagner
    • A61B3/14A61B3/00
    • A61B3/102A61B3/107A61B5/0066G01N21/4795G01N2021/1787
    • A system for the improved imaging of eye structures based on optical coherence tomography. The system includes an interferometric measuring arrangement, which has an optical element arranged in the measurement arm or reference arm for influencing the polarization state of the light before the light is interferometrically superimposed, a scanning unit arranged in the measurement arm for implementing OCT scans, a detector for recording the produced interference pattern, and an evaluating and documenting unit. At least two different polarization states of the light are produced. The interference patterns produced in the interferometric measuring arrangement are recorded and forwarded to the evaluating and documenting unit which reconstructs OCT scans from the transmitted interference patterns, combines the OCT scans, and presents and/or stores the resulting OCT signals. The system can be used for pachymetry in addition to the pre- and post-operative imaging for analysis and measurement.
    • 一种基于光学相干断层扫描的改善眼结构成像的系统。 该系统包括干涉测量装置,其具有布置在测量臂或参考臂中的光学元件,用于在光被干涉地叠加之前影响光的偏振状态;布置在测量臂中用于实现OCT扫描的扫描单元, 用于记录产生的干涉图案的检测器,以及评估和记录单元。 产生光的至少两种不同的偏振态。 在干涉测量装置中产生的干涉图案被记录并转发给评估和记录单元,其从发射的干涉图案重建OCT扫描,组合OCT扫描,并呈现和/或存储所得到的OCT信号。 除了用于分析和测量的术前和术后成像,该系统可用于深度测量。
    • 4. 发明授权
    • Short coherence interferometer
    • 短相干干涉仪
    • US08717576B2
    • 2014-05-06
    • US12680722
    • 2008-09-26
    • Martin Hacker
    • Martin Hacker
    • G01B9/02
    • G01B9/02028A61B3/1005A61B3/102A61B3/113G01B9/02021G01B9/02035G01B9/02081G01B9/02091G01B2290/45G01B2290/70G01N21/4795G01N2021/1787
    • A short coherence interferometer apparatus for measuring multiple axially spaced regions of a specimen, in particular the eye, which has at least one measuring beam path, through which multiple individual measuring beams are incident on the specimen, and one reference beam path, through which a reference beam runs, with which the individual measuring beams are superimposed and brought into interference. The individual measuring beams are axially offset to one another upon incidence on the specimen by an amount which is adapted to the axial spacing. The interferometer apparatus superimposes each individual measuring beam with the reference beam in an interfering manner and conducts it to a detector associated with the particular individual measuring beam. The individual measuring beams are combined into a mixture in which they have varying phasing in the superposition with the reference beam.
    • 一种用于测量样本,特别是眼睛的多个轴向间隔的区域的短相干干涉仪装置,其具有至少一个测量光束路径,多个单独的测量光束通过该光束路径入射在样本上,以及一个参考光束路径, 参考光束运行,各个测量光束通过它们叠加并引起干扰。 当在试样上入射适当于轴向间距的量时,各个测量光轴彼此轴向偏移。 干涉仪装置以干扰的方式将每个单独的测量光束与参考光束重叠,并将其传导到与特定的各个测量光束相关联的检测器。 单独的测量光束被组合成混合物,在该混合物中它们与参考光束叠加时具有变化的相位。
    • 6. 发明申请
    • METHOD FOR THE MODEL-BASED DETERMINATION OF THE BIOMETRY OF EYES
    • 用于基于模型的眼睛生物测定方法
    • US20130301009A1
    • 2013-11-14
    • US13884827
    • 2011-11-09
    • Martin HackerFerid Bajramovic
    • Martin HackerFerid Bajramovic
    • A61B3/10
    • A61B3/102A61B3/1005G01B9/02063G01B9/02089G01B9/02091
    • For the model-based determination of the biometry of eyes, the eye is illuminated by a light source via a scanning unit, the focus of the measuring light beam in the eye is moved or shifted laterally and/or axially via an adjusting device and the light fractions back-scattered by the boundary surfaces and from the tissue of the eye via an interferometer are detected by a sensor and relayed to a control and evaluation unit by which a parametric eye model which describes at least two boundary surfaces present in the eye is adapted to the scan or scans. The invention relates to the field of ophthalmology and serves in particular for the optical determination of the biometry of eyes by application of two-dimensional optical coherence tomography images. However, the method is not limited to the use of coherence tomography nor to the utilisation of optical measurements.
    • 对于基于模型的眼睛生物测定的确定,通过扫描单元由光源照射眼睛,眼睛中的测量光束的焦点通过调节装置横向和/或轴向移动或移动,并且 由传感器检测由边界表面和眼睛组织经由干涉仪反向散射的轻分数,并将其转发到控制和评估单元,通过该控制和评估单元描述存在于眼睛中的至少两个边界表面的参数眼模型是 适用于扫描或扫描。 本发明涉及眼科领域,特别用于通过应用二维光学相干断层摄影图像来光学确定眼睛生物测量。 然而,该方法不限于使用相干断层摄影,也不限于使用光学测量。
    • 8. 发明申请
    • METHOD AND ARRANGEMENT FOR SELECTING AN IOL AND/OR THE SURGICAL PARAMETERS WITHIN THE FRAMEWORK OF THE IOL IMPLANTATION ON THE EYE
    • 用于在眼底植入植入物框架内选择IOL和/或手术参数的方法和装置
    • US20120310337A1
    • 2012-12-06
    • US13483938
    • 2012-05-30
    • Martin HackerMartin KuehnerRico FuchsMatthias Reich
    • Martin HackerMartin KuehnerRico FuchsMatthias Reich
    • A61F2/16
    • A61B3/0025A61B2034/108A61F2/1613G06F19/00G16H50/50
    • Selection of an appropriate intraocular lens (IOL) and/or the applicable surgical parameters for optimizing the results of refractive procedures on the eye. Features of the IOL are crucial for the selection and/or adjustment of the optimal IOL, but so is the IOL selection method (and parameters) from a surgical perspective. For the method, corresponding output parameters are determined from predetermined, estimated, or measured input parameters and/or their mean values, wherein at least two input parameters are varied with one another and which have at least one input parameter as a distribution function. The resulting function is optimized by means of corresponding target values and the determined distribution function of one or more output parameters is used as a decision aid. The present solution is used for selecting an appropriate IOL and/or the applicable surgical parameters and is applicable in the field of eye surgery for implanting IOLs.
    • 选择适当的眼内晶状体(IOL)和/或用于优化眼睛屈光程序结果的适用手术参数。 IOL的特征对于最佳IOL的选择和/或调整至关重要,而从手术角度来说,IOL选择方法(和参数)也是至关重要的。 对于该方法,相应的输出参数由预定的,估计的或测量的输入参数和/或它们的平均值确定,其中至少两个输入参数彼此变化并且具有至少一个输入参数作为分布函数。 所得到的函数通过相应的目标值进行优化,并且将一个或多个输出参数的确定的分布函数用作决策辅助。 本解决方案用于选择适当的IOL和/或适用的外科手术参数,并且可用于眼部手术植入IOL的领域。