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    • 2. 发明申请
    • EYE IMAGING APPARATUS AND SYSTEMS
    • 眼睛成像装置和系统
    • WO2015142331A8
    • 2016-10-20
    • PCT/US2014031263
    • 2014-03-19
    • VISUNEX MEDICAL SYSTEMS CO LTDSU WEI
    • SU WEIXU LI
    • A61B3/10A61B3/14
    • A61B3/14A61B3/1208A61B3/132A61B8/10
    • Various embodiments of an eye imaging apparatus are disclosed. In some embodiments, the eye imaging apparatus may comprise a light source, an image sensor, a hand-held computing device, and an adaptation module. The adaptation module comprises a microcontroller and a signal processing unit configured to adapt the hand¬ held computing device to control the light source and the image sensor. In some embodiments, the imaging apparatus may comprise an exterior imaging module to image an anterior segment of the eye and/or a front imaging module to image a posterior segment of the eye. The eye imaging apparatus may be used in an eye imaging medical system. The images of the eye may be captured by the eye imaging apparatus, transferred to an image computing module, stored in an image storage module, and displayed in an image review module.
    • 公开了一种眼睛成像设备的各种实施例。 在一些实施例中,眼睛成像设备可以包括光源,图像传感器,手持计算设备和适配模块。 适配模块包括微控制器和信号处理单元,其被配置为使手持计算设备适配以控制光源和图像传感器。 在一些实施例中,成像设备可以包括外部成像模块以对眼睛的前部和/或前部成像模块进行成像以对眼睛的后部成像。 眼睛成像装置可以用于眼睛成像医疗系统。 眼睛的图像可以由眼睛成像装置捕获,转移到存储在图像存储模块中的图像计算模块,并且被显示在图像审查模块中。
    • 5. 发明申请
    • OPTICAL COHERENCE ELASTOGRAPHY TO ASSESS BIOMECHANICS AND DETECT PROGRESSION OF OCULAR AND OTHER TISSUES DEGENERATIVE DISEASES
    • 评估生物力学的光学相干弹性学和检测其他组织变性疾病的进展
    • WO2016077173A1
    • 2016-05-19
    • PCT/US2015/059472
    • 2015-11-06
    • UNIVERSITY OF HOUSTON SYSTEM
    • LARIN, Kirill V.LI, JiasongSINGH, ManmohanWU, ChenAGLYAMOV, Salavat
    • A61B3/10A61B5/00
    • A61B3/0025A61B3/102A61B3/16A61B3/165A61B5/0051A61B5/0053A61B5/0066A61B5/0093A61B5/0097A61B8/10A61B8/485A61B2576/00
    • An excitation force (internal or external) and phase-sensitive optical coherence elastography (OCE) system, used in conjunction with a data analyzing algorithm, is capable of measuring and quantifying biomechanical parameters of tissues in situ and in vivo . The method was approbated and demonstrated on an example of the system that combines a pulsed ultrasound system capable of producing an acoustic radiation force on the crystalline lens surface and a phase-sensitive optical coherence tomography (OCT) system for measuring the lens displacement caused by the acoustic radiation force. The method allows noninvasive and nondestructive quantification of tissue mechanical properties. The noninvasive measurement method also utilizes phase-stabilized swept source optical coherence elastography (PhS-SSOCE) to distinguish between tissue stiffness, such as that attributable to disease, and effects on measured stiffness that result from external factors, such as pressure applied to the tissue. Preferably, the method is used to detect tissue stiffness and to evaluate the presence of its stiffness even if it is affected by other factors such as intraocular pressure (IOP) in the case of cornea, sclera, or the lens. This noninvasive method can evaluate the biomechanical properties of the tissues in vivo for detecting the onset and progression of degenerative or other diseases (such as keratoconus).
    • 与数据分析算法结合使用的激发力(内部或外部)和相敏光学相干弹性成像(OCE)系统能够测量和定量原位和体内组织的生物力学参数。 该方法被认为并证明了该系统的一个实例,其结合了能够在晶状体表面上产生声辐射力的脉冲超声系统和相敏光学相干断层扫描(OCT)系统,用于测量由 声辐射力。 该方法允许组织机械性质的无创和非破坏性定量。 非侵入性测量方法还利用相位稳定扫描光学相干弹性成像(PhS-SSOCE)来区分组织刚度,例如可归因于疾病的组织刚度,以及由外部因素(例如施加到组织上的压力)引起的测量刚度的影响 。 优选地,该方法用于检测组织刚度并评估其刚度的存在,即使其受角膜,巩膜或透镜的情况下的其他因素如眼内压(IOP)的影响。 这种非侵入性方法可以评估体内组织的生物力学性质,以检测退行性或其他疾病(如圆锥角膜)的发生和发展。
    • 7. 发明申请
    • TOPOGRAPHY MODULE FOR OPTHALMOLOGICAL DEVICES WITH A DISTANCE-INDEPENDENT KERATOMETER AND METHOD FOR THE USE THEREOF
    • TOPOGRAPHIE模块与距离无关角膜曲率测量装置及其使用方法的眼科器件
    • WO2015185682A3
    • 2016-01-21
    • PCT/EP2015062494
    • 2015-06-04
    • ZEISS CARL MEDITEC AG
    • REICH MATTHIASFUCHS RICO
    • A61B3/107
    • A61B3/107A61B3/10A61B3/1005A61B3/1035A61B8/10A61F2009/00882G01B11/2513
    • The invention relates to a module for ophthalmological devices which enable said ophthalmological devices to carry out keratometry and topography measurements of the eye. The proposed topography module is provided for ophthalmological devices with a distance-in dependent keratometer. According to the invention, the topography module, which is used to generate the luminous pattern, is arranged in a fixed or moveable manner in the beam path between the ophthalmological device and the eye. The provided control unit is provided to control the topography module for generating luminous patterns. The provided evaluation unit is also suitable to carry out keratometric as well as topographic evaluations of the reflection images of an eye, captured and transmitted by the detection unit. The solution of said invention enables ophthalmological devices, which are equipped with a distance-independent keratometer, to carry out additional topographical measurements on the eye.
    • 本发明涉及一种用于通过该眼用装置然后能够实现下一个角膜曲率也地形测量在眼睛上的眼科装置的模块。 所提出的地形模块提供了眼用装置与一个独立的距离角膜曲率测量装置。 根据本发明,是服务地形模块固定或可移动地布置在所述眼科装置和眼睛之间的光路发光图案的产生。 现有的控制单元是根据所述位置,用于产生光图案的形貌模块来控制。 此外,本评估单元适于分析由所述检测单元拍摄的图像和眼睛角膜两者的发送反射图像和地形。 与本解决方案是可能的具有一距离有关的角膜曲率计测定装置眼科装置附加地实现在眼睛地形测量。
    • 8. 发明申请
    • DISPOSABLE EYEPIECE SYSTEM FOR AN ULTRASONIC EYE SCANNING APPARATUS
    • 用于超声波眼睛扫描仪的可替代眼镜系统
    • WO2015127417A1
    • 2015-08-27
    • PCT/US2015/017213
    • 2015-02-24
    • ARCSCAN, INC.
    • HEATH, GaryLEVIEN, Andrew, K.WATSON, John, D.
    • A61B8/10
    • A61B8/10A61B8/4209A61B8/4422
    • A disposable eye piece system, including the eye piece and other disposable components, for a precision ultrasonic scanning apparatus is disclosed. The eye piece includes a fill port, a vent port and a drain port molded into the base of the eye piece. An RF Identification chip may be molded into the plastic base of the eye piece or, alternately into the conformable face seal of the eye piece. The components of a disposable eye piece system form an integrated disposable package that can be assembled, packaged, transported and used while maintaining the eye piece and saline solution in a sterile condition. The protective shipping container 1) protects the eye piece from damage, human contact and exposure to ambient air during shipping and storage and 2) allows the scanning physician or technician to attach the eye piece to the scanning machine without compromising the sterile condition of the eye piece.
    • 公开了一种用于精密超声波扫描装置的包括眼部件和其它一次性部件的一次性眼罩系统。 眼部件包括模制到眼部底部的填充口,排气口和排出口。 RF识别芯片可以模制到眼部件的塑料底座中,或者可以模制成眼部件的适形表面密封件。 一次性眼睛片系统的组件形成一体化的一次性包装,其可以组装,包装,运输和使用,同时将眼膜和盐溶液保持在无菌状态。 保护性运输容器1)保护眼部件在运输和储存过程中免受损坏,人体接触和暴露于环境空气中; 2)允许扫描医师或技术人员将眼睛部件附着在扫描机上,而不会影响眼睛的无菌状况 片。