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    • 84. 发明授权
    • System and method for auto-focusing in optical coherence tomography
    • 光学相干断层扫描中自动聚焦的系统和方法
    • US08842287B2
    • 2014-09-23
    • US13335175
    • 2011-12-22
    • Siavash YazdanfarSora KimChulmin Joo
    • Siavash YazdanfarSora KimChulmin Joo
    • G01B9/02
    • G01B9/02091G01B9/02044G01B9/02063G01B9/02064G01B9/02068
    • A system, in one embodiment, includes an optical coherence tomography (OCT) imaging system having a light source configured to emit light. The OCT imaging system further includes a beam splitter configured to receive the light from the light source, split the light into a first light portion directed along a sample arm comprising a sample and a second light portion directed along a reference arm comprising a reference mirror, receive a first reflected light portion from the sample arm and a second reflected light portion from the reference arm, combine the first and second reflected light portions to obtain an interference signal at a detector. Further, the OCT imaging system includes a controller having logic configured to perform an auto-focusing process to determine the optimal position for a lens in the sample arm in order to bring the sample into focus.
    • 在一个实施例中,系统包括具有被配置为发光的光源的光学相干断层摄影(OCT)成像系统。 OCT成像系统还包括分束器,其被配置为接收来自光源的光,将光分成沿着包括样本的样本臂引导的第一光部分和沿着包括参考反射镜的参考臂引导的第二光部分, 从采样臂接收第一反射光部分和从参考臂的第二反射光部分,组合第一和第二反射光部分以在检测器处获得干涉信号。 此外,OCT成像系统包括具有被配置为执行自动聚焦处理以确定样本臂中的透镜的最佳位置以便使样本聚焦的逻辑的控制器。
    • 85. 发明申请
    • Method and System for Optical Coherence Tomography
    • 光学相干断层扫描的方法和系统
    • US20140218740A1
    • 2014-08-07
    • US14009363
    • 2012-03-30
    • Rainer NebosisGeert Wellens
    • Rainer NebosisGeert Wellens
    • G01B9/02
    • G01B9/02091A61B5/0066A61B2560/0437G01B9/02063G01B9/02085G01B9/02089G01N21/4795
    • The present invention relates to a method as well as a corresponding system (50) for optical coherence tomography in which a first image (60) is acquired in the region of a first plane of an object (1) by means of an optical coherence tomography equipment, and the first image (60) is displayed on a display device (52).To facilitate a reliable and time-saving examination with straightforward handling, provision is made that a second plane of the object (1) is selected on the basis of the first image (60) that is displayed on the display device (52), wherein the second plane of the object (1) is different from the first plane of the object (1), and a second image (61) is acquired in the region of the selected second plane of the object (1) by means of the optical coherence tomography equipment.
    • 本发明涉及一种用于光学相干断层摄影的相应系统(50),其中通过光学相干断层扫描在物体(1)的第一平面的区域中获取第一图像(60) 设备,并且第一图像(60)被显示在显示设备(52)上。 为了便于直接处理的可靠且省时的检查,提供了基于显示在显示装置(52)上的第一图像(60)选择对象(1)的第二平面,其中, 物体(1)的第二平面不同于物体(1)的第一平面,并且在物体(1)的所选择的第二平面的区域中通过光学器件(1)获取第二图像(61) 相干层析成像设备。
    • 88. 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。
    • 89. 发明申请
    • DYNAMIC AUTOFOCUS METHOD AND SYSTEM FOR ASSAY IMAGER
    • 动态自动方法和系统用于测量图像
    • US20130235388A1
    • 2013-09-12
    • US13853492
    • 2013-03-29
    • ILLUMINA, INC.
    • Darren R. SegaleJohn A. MoonHongji Ren
    • G01B11/24
    • C12Q1/6818C12Q1/6874G01B9/02063G01B11/24G01N21/6428G01N21/6458G02B21/244H04N5/23212
    • Method of detecting surface features of a microarray. The method includes providing a microarray to an optical scanner, wherein the microarray includes a surface having features. The method also includes carrying out a scanning process using the optical scanner, wherein the scanning process includes: (i) acquiring images of sequential regions on the surface, wherein a defocus spread is applied to the optical scanner during the acquiring, (ii) determining a focus score for the images, (iii) adjusting the optical scanner to a different defocus spread based on the focus score, and (iv) repeating (i) through (iii) at the different defocus spread, thereby acquiring images of further sequential regions on the surface. The method also includes analyzing the images to distinguish different target molecules at the features of the microarray. The images that are analyzed were acquired at the defocus spread and at the different defocus spread during the scanning process.
    • 检测微阵列表面特征的方法。 该方法包括向光学扫描器提供微阵列,其中微阵列包括具有特征的表面。 该方法还包括使用光学扫描器进行扫描处理,其中扫描过程包括:(i)获取表面上的顺序区域的图像,其中在获取期间将散焦扩展应用于光学扫描仪,(ii)确定 用于图像的焦点得分,(iii)基于焦点得分将光学扫描仪调整到不同的散焦展开,以及(iv)在不同的散焦展开下重复(i)至(iii),从而获取进一步的顺序区域的图像 在表面上。 该方法还包括分析图像以区分微阵列特征处的不同靶分子。 在散焦展开期间以及在扫描过程中的不同散焦点处获取被分析的图像。