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    • 2. 发明申请
    • IMPLANTABLE OPTICAL GLUCOSE SENSING
    • 可植入光学葡萄糖感测
    • US20120059232A1
    • 2012-03-08
    • US13141936
    • 2009-12-24
    • Yossi GrossTehila HymanTamir Gil
    • Yossi GrossTehila HymanTamir Gil
    • A61B5/1455
    • A61B5/1459A61B5/14532A61B5/14556A61B5/14558A61B5/686A61B5/6862
    • Apparatus is provided, including a support (21) configured to be implanted within a body of a subject and a sampling region (30, 1430) coupled to the support (21). The apparatus is configured to passively allow passage through the sampling region (30, 1430) of at least a portion of fluid from the subject. The apparatus also includes an optical measuring device in optical communication with the sampling region (30, 1430). The optical measuring device comprises at least one light source (40) configured to transmit light through at least a portion of the fluid, and at least one sensor (42) configured to measure a parameter of the fluid by detecting light passing through the fluid. Other applications are also described.
    • 提供了一种设备,包括被配置为植入受试者的身体内的支撑件(21)和联接到支撑件(21)的取样区域(30,1430)。 该装置被配置为被动地允许通过来自受试者的至少一部分流体的取样区域(30,1430)。 该装置还包括与采样区域(30,1430)光学通信的光学测量装置。 所述光学测量装置包括被配置为透过至少一部分流体的光的至少一个光源(40)和被配置成通过检测穿过流体的光来测量流体参数的至少一个传感器(42)。 还描述了其它应用。
    • 3. 发明申请
    • IMPLANTABLE OPTICAL GLUCOSE SENSING
    • 可植入光学葡萄糖感测
    • US20100160749A1
    • 2010-06-24
    • US12344103
    • 2008-12-24
    • Yossi GROSSTehila HymanTamir Gil
    • Yossi GROSSTehila HymanTamir Gil
    • A61B5/1459
    • A61B5/14532A61B5/14558A61B5/1459A61B5/6846
    • Apparatus is provided, including a support configured to be implanted within a body of a subject and a sampling region coupled to the support. The apparatus is configured to passively allow passage through the sampling region of at least a portion of fluid from the subject. The apparatus also comprises an optical measuring device in optical communication with the sampling region. The optical measuring device comprises at least one light source configured to transmit light through at least a portion of the fluid, and at least one sensor configured to measure a parameter of the fluid by detecting light passing through the fluid. Other embodiments are also described.
    • 提供了一种装置,包括被配置为植入受试者的身体内的支撑体和连接到支撑件的采样区域。 该装置被配置为被动地允许通过来自受试者的至少一部分流体的采样区域。 该装置还包括与采样区域光学通信的光学测量装置。 所述光学测量装置包括至少一个光源,所述至少一个光源被配置为透过至少一部分所述流体的光;以及至少一个传感器,被配置为通过检测穿过所述流体的光来测量所述流体的参数。 还描述了其它实施例。
    • 4. 发明申请
    • Snapshot Spectral Imaging of the Eye
    • 快照光谱成像的眼睛
    • US20090225277A1
    • 2009-09-10
    • US12398255
    • 2009-03-05
    • Tamir Gil
    • Tamir Gil
    • A61B3/14
    • G01J3/0208A61B3/10A61B5/14555G01J3/02G01J3/0256G01J3/2823G01J3/36G01J2003/1213
    • Obtaining spectral images of an eye includes taking an optical system that images eye tissue onto a digital sensor array and optically fitting a multi-spectral filter array and the digital sensor array, wherein the multi-spectral filter array is disposed between the digital sensor array and an optics portion of the optical system. The resulting system facilitates acquisition of a snap-shot image of the eye tissue with the digital sensor array. The snap shot images support estimation of blood oxygen saturation in a retinal tissue. The resulting system can be based on a non-mydriatic fundus camera designed to obtain the retinal images without administration of pupil dilation drops.
    • 获得眼睛的光谱图像包括拍摄将眼睛组织成像到数字传感器阵列上的光学系统,以及光学拟合多光谱滤光器阵列和数字传感器阵列,其中多光谱滤光器阵列设置在数字传感器阵列和 光学系统的光学部分。 所得到的系统便于利用数字传感器阵列获取眼睛组织的快照图像。 快照图像支持视网膜组织中血氧饱和度的估计。 所得到的系统可以基于设计用于获得视网膜图像的非散瞳眼底照相机,而不施加瞳孔扩张液滴。
    • 5. 发明授权
    • Snapshot spectral imaging of the eye
    • 快照光谱成像的眼睛
    • US08109634B2
    • 2012-02-07
    • US12398255
    • 2009-03-05
    • Tamir Gil
    • Tamir Gil
    • A61B3/14A61B3/10A61B3/00
    • G01J3/0208A61B3/10A61B5/14555G01J3/02G01J3/0256G01J3/2823G01J3/36G01J2003/1213
    • Obtaining spectral images of an eye includes taking an optical system that images eye tissue onto a digital sensor array and optically fitting a multi-spectral filter array and the digital sensor array, wherein the multi-spectral filter array is disposed between the digital sensor array and an optics portion of the optical system. The resulting system facilitates acquisition of a snap-shot image of the eye tissue with the digital sensor array. The snap shot images support estimation of blood oxygen saturation in a retinal tissue. The resulting system can be based on a non-mydriatic fundus camera designed to obtain the retinal images without administration of pupil dilation drops.
    • 获得眼睛的光谱图像包括拍摄将眼睛组织成像到数字传感器阵列上的光学系统,以及光学拟合多光谱滤光器阵列和数字传感器阵列,其中多光谱滤光器阵列设置在数字传感器阵列和 光学系统的光学部分。 所得到的系统便于利用数字传感器阵列获取眼睛组织的快照图像。 快照图像支持视网膜组织中血氧饱和度的估计。 所得到的系统可以基于设计用于获得视网膜图像的非散瞳眼底照相机,而不施加瞳孔扩张液滴。
    • 6. 发明申请
    • Transcleral opthalmic illumination method and system
    • 经视眼光照射法和系统
    • US20070159600A1
    • 2007-07-12
    • US10552269
    • 2004-04-08
    • Tamir GilOded WigdersonAmit SassonZvi Nizani
    • Tamir GilOded WigdersonAmit SassonZvi Nizani
    • A61B3/10
    • A61B3/12A61B3/0008A61B3/13
    • A method and apparatus for illuminating the interior of the eye through the sclera without any contact to the eye. The apparatus contains a lamp element and optics that focus the light on the eye sclera. One or more fiber optics bundles may be used to convey the light from the light source close to the illuminated eye, ending with condensing optical elements. Alternatively, light could be conveyed by sharing the optics of an imaging system. It is useful for observing or imaging the interior of the eye, the retina, or the choroid. The observation or the imaging of the interior of the eye, the retina, or the choroid by applying the disclosed illumination method can be done in conjunction with any system that includes optics for that purpose, e.g., fundus cameras and ophthalmoscopes, without using those systems' illumination elements.
    • 一种用于通过巩膜照射眼睛内部而不与眼睛接触的方法和装置。 该装置包括将光聚焦在眼睛巩膜上的灯元件和光学元件。 可以使用一个或多个光纤束来将来自光源的光传递到靠近被照射的眼睛,以聚光光学元件结束。 或者,可以通过共享成像系统的光学器件来传送光。 用于观察或成像眼睛,视网膜或脉络膜的内部。 通过应用所公开的照明方法对眼睛,视网膜或脉络膜内部的观察或成像可以结合包括用于该目的的光学系统的任何系统,例如眼底照相机和眼镜,而不使用这些系统 '照明元素。