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公开(公告)号:US20130128050A1
公开(公告)日:2013-05-23
申请号:US13302984
申请日:2011-11-22
申请人: Farzin AGHDASI , Wei SU , Lei WANG
发明人: Farzin AGHDASI , Wei SU , Lei WANG
IPC分类号: H04N7/18
CPC分类号: H04N7/181 , G06K9/3241 , G06K9/6292 , G06T7/254 , G06T7/292 , G06T2200/24 , G06T2207/30232 , G06T2207/30236 , G06T2207/30241
摘要: Disclosed are methods, systems, computer readable media and other implementations, including a method that includes determining, from image data captured by a plurality of cameras, motion data for multiple moving objects, and presenting, on a global image representative of areas monitored by the plurality of cameras, graphical indications of the determined motion data for the multiple objects at positions on the global image corresponding to geographic locations of the multiple moving objects. The method further includes presenting captured image data from one of the plurality of cameras in response to selection, based on the graphical indications presented on the global image, of an area of the global image presenting at least one of the graphical indications for at least one of the multiple moving objects captured by the one of the plurality of cameras.
摘要翻译: 公开了方法,系统,计算机可读介质和其他实施方式,包括一种方法,其包括从由多个摄像机捕获的图像数据确定用于多个移动物体的运动数据,以及在全局图像上呈现代表由 多个相机,对应于多个移动物体的地理位置的全球图像上的位置处的多个对象的所确定的运动数据的图形指示。 所述方法还包括响应于所述全局图像上呈现的全局图像的区域,基于所述全局图像上呈现的图形指示,响应于所述多个照相机中的一个相机的呈现至少一个图形指示的至少一个 的多个摄像机中的一个拍摄的多个移动物体。
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公开(公告)号:US20180084996A1
公开(公告)日:2018-03-29
申请号:US15563388
申请日:2016-03-31
CPC分类号: A61B3/14 , A61B3/0025 , A61B3/0033 , A61B3/0041 , A61B3/15 , A61B5/0013 , A61B5/6898 , A61B2560/0431
摘要: Various embodiments of a wireless imaging apparatus are disclosed. The wireless imaging apparatus can comprise an optical imaging system, a light source and a modified mobile device. In some embodiments, the optical imaging system can be positioned outside the modified mobile device. In some embodiments, the wireless imaging apparatus can further comprise a microcontroller, and at least one of an input port, an output port, a control button, and an output signal of the modified mobile device can be connected to the microcontroller and configured to control an image capturing process. Various embodiments disclose a method to control an imaging process of a wireless imaging apparatus comprising a light source, an optical imaging system, a modified mobile device and a microcontroller.
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公开(公告)号:US20160073877A1
公开(公告)日:2016-03-17
申请号:US14952293
申请日:2015-11-25
CPC分类号: A61B8/10 , A61B3/0016 , A61B3/0025 , A61B3/0033 , A61B3/0058 , A61B3/117 , A61B3/12 , A61B3/125 , A61B3/14 , A61B3/145 , A61B8/4416 , A61B8/4427 , A61B8/463 , A61B8/467 , A61B8/52 , A61B50/13 , A61B50/30 , A61B50/31 , A61B90/70 , A61B2050/311 , A61B2560/0431 , G02B7/023 , G02B7/04 , H04N1/00246
摘要: 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.
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4.
公开(公告)号:US20150146170A1
公开(公告)日:2015-05-28
申请号:US14614305
申请日:2015-02-04
申请人: Wei SU
发明人: Wei SU
CPC分类号: A61B3/14 , A61B3/0008 , A61B3/0025 , A61B3/1208 , A61B3/125 , A61B3/132 , A61B3/145 , A61B3/152 , A61B3/158 , A61B5/0013 , A61B2560/0475 , A61B2576/02
摘要: An eye imaging apparatus can include a housing, an optical imaging system in the housing, and a light source in the housing to illuminate an eye. The optical imaging system can include an optical window at a front end of the housing with a concave front surface for receiving the eye as well as an imaging lens disposed rearward the optical window. The apparatus can comprise a light conditioning element configured to receive light from the light source and direct said light to the eye. The apparatus can further include an image sensor in the housing disposed to receive an image of the eye from the optical imaging system. In various embodiments, light conditioning element includes at least one multi-segment surface. In some embodiments, the housing is provided with at least one hermitic seal, for example, with the optical window. In some embodiments, time sequential illumination is employed.
摘要翻译: 眼睛成像设备可以包括壳体,壳体中的光学成像系统,以及壳体中的照明眼睛的光源。 光学成像系统可以包括在壳体的前端处的光学窗口,其具有用于接收眼睛的凹形前表面以及设置在光学窗口后方的成像透镜。 该装置可以包括配置成从光源接收光并将所述光引导到眼睛的光调节元件。 该装置还可以包括设置成从光学成像系统接收眼睛的图像的壳体中的图像传感器。 在各种实施例中,光调节元件包括至少一个多段表面。 在一些实施例中,壳体设置有至少一个密封,例如与光学窗口。 在一些实施例中,采用时间顺序照明。
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公开(公告)号:US20160367134A1
公开(公告)日:2016-12-22
申请号:US15186402
申请日:2016-06-17
申请人: Wei SU
发明人: Wei SU
CPC分类号: A61B3/102 , A61B3/12 , A61B3/14 , G02B21/0012 , G02B21/002
摘要: Disclosed herein is an optical coherence tomography (OCT) imaging system having a wide field of view and comprising a handheld imaging probe. The handheld imaging probe can comprise a first imaging module and an OCT imaging module. The first imaging module can have a first illumination path and a separated first imaging path. The first imaging module can comprise an optical window configured to be in contact with a sample. The OCT imaging module can comprise a scanning MEMS mirror and a beam splitting dichroic mirror. The OCT imaging system can comprise at least one polarization maintaining fiber to reduce motion effect to stabilize and increase the OCT image quality. The handheld imaging probe can further comprise one or more lenses achromatized for optical dispersion for the light beams within a wavelength range of an OCT light source and for a field of view of the OCT imaging module.
摘要翻译: 本文公开了具有宽视场并且包括手持成像探针的光学相干断层摄影(OCT)成像系统。 手持成像探针可以包括第一成像模块和OCT成像模块。 第一成像模块可以具有第一照明路径和分离的第一成像路径。 第一成像模块可以包括被配置为与样品接触的光学窗口。 OCT成像模块可以包括扫描MEMS镜和分束二向色镜。 OCT成像系统可以包括至少一个保偏光纤以减少运动效应以稳定和增加OCT图像质量。 手持式成像探针还可以包括一个或多个用于在OCT光源的波长范围内以及用于OCT成像模块的视场的光束的光学色散消色差的透镜。
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6.
公开(公告)号:US20160213250A1
公开(公告)日:2016-07-28
申请号:US15007101
申请日:2016-01-26
申请人: Wei SU
发明人: Wei SU
CPC分类号: A61B3/125 , A61B3/15 , A61B46/10 , A61B50/30 , A61B2017/00902 , A61B2050/005 , A61B2050/0051 , A61B2050/0054 , A61B2050/0066 , A61B2050/0084 , A61B2050/3015
摘要: Disclosed herein is a disposable cap for an eye imaging apparatus with an optical window and related methods. The disposable cap can comprise an optically transparent window cover, a ridge, a side wall and a locking element. The window cover can comprise a convex back surface to match a concave shape of the optical window. The ridge of the disposable cap can extend distally and radially outward from the window cover and the side wall can extend proximally and radially outwardly from the ridge. The locking element can comprise one or more radially inward projections and one or more radially outward releasing tabs. A disposable packaging shell of the disposable cap also disclosed. Disclosed herein is also a plug-in disposable system comprising the disposable cap and the disposable packaging shell, configured to enable the disposable cap to be attached to and detached from the eye imaging apparatus.
摘要翻译: 本文公开了一种用于具有光学窗口和相关方法的眼睛成像设备的一次性盖。 一次性盖可以包括光学透明的窗盖,脊,侧壁和锁定元件。 窗口盖可以包括凸起的后表面以匹配光学窗口的凹形形状。 一次性盖的脊可以从窗盖向远侧和径向向外延伸,并且侧壁可以从脊向近侧和径向向外延伸。 锁定元件可以包括一个或多个径向向内的突出部和一个或多个径向向外的释放突片。 还公开了一次性盖的一次性包装外壳。 本文公开了一种插入式一次性系统,其包括一次性盖和一次性包装外壳,其被配置为使得一次性盖能够附接到眼睛成像设备并从眼睛成像设备拆下。
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公开(公告)号:US20160029887A1
公开(公告)日:2016-02-04
申请号:US14881070
申请日:2015-10-12
申请人: Wei SU
发明人: Wei SU
CPC分类号: A61B3/14 , A61B3/0008 , A61B3/0025 , A61B3/1208 , A61B3/125 , A61B3/132 , A61B3/145 , A61B3/152 , A61B3/158 , A61B5/0013 , A61B2560/0475 , A61B2576/02
摘要: An eye imaging apparatus can include a housing, an optical imaging system in the housing, and a light source in the housing to illuminate an eye. The optical imaging system can include an optical window at a front end of the housing with a concave front surface for receiving the eye as well as an imaging lens disposed rearward the optical window. The apparatus can comprise a light conditioning element configured to receive light from the light source and direct said light to the eye. The apparatus can further include an image sensor in the housing disposed to receive an image of the eye from the optical imaging system. In various embodiments, light conditioning element includes at least one multi-segment surface. In some embodiments, the housing is provided with at least one hermitic seal, for example, with the optical window. In some embodiments, time sequential illumination is employed.
摘要翻译: 眼睛成像设备可以包括壳体,壳体中的光学成像系统,以及壳体中的照明眼睛的光源。 光学成像系统可以包括在壳体的前端处的光学窗口,其具有用于接收眼睛的凹形前表面以及设置在光学窗口后方的成像透镜。 该装置可以包括配置成从光源接收光并将所述光引导到眼睛的光调节元件。 该装置还可以包括设置成从光学成像系统接收眼睛的图像的壳体中的图像传感器。 在各种实施例中,光调节元件包括至少一个多段表面。 在一些实施例中,壳体设置有至少一个密封,例如与光学窗口。 在一些实施例中,采用时间顺序照明。
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公开(公告)号:US20160007850A1
公开(公告)日:2016-01-14
申请号:US14860422
申请日:2015-09-21
申请人: Wei SU
发明人: Wei SU
CPC分类号: A61B3/14 , A61B3/0008 , A61B3/0025 , A61B3/1208 , A61B3/125 , A61B3/132 , A61B3/145 , A61B3/152 , A61B3/158 , A61B5/0013 , A61B2560/0475 , A61B2576/02
摘要: An eye imaging apparatus can include a housing, an optical imaging system in the housing, and a light source in the housing to illuminate an eye. The optical imaging system can include an optical window at a front end of the housing with a concave front surface for receiving the eye as well as an imaging lens disposed rearward the optical window. The apparatus can comprise a light conditioning element configured to receive light from the light source and direct said light to the eye. The apparatus can further include an image sensor in the housing disposed to receive an image of the eye from the optical imaging system. In various embodiments, light conditioning element includes at least one multi-segment surface. In some embodiments, the housing is provided with at least one hermitic seal, for example, with the optical window. In some embodiments, time sequential illumination is employed.
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9.
公开(公告)号:US20080072279A1
公开(公告)日:2008-03-20
申请号:US11857775
申请日:2007-09-19
申请人: Fuyou MIAO , Hongke ZHANG , Sidong ZHANG , Shen YANG , Wei SU , Yan REN , Zuzhou ZHENG , Yajuan QIN , Shuai GAO , Jianglin WANG , Ying LIU
发明人: Fuyou MIAO , Hongke ZHANG , Sidong ZHANG , Shen YANG , Wei SU , Yan REN , Zuzhou ZHENG , Yajuan QIN , Shuai GAO , Jianglin WANG , Ying LIU
IPC分类号: H04L9/00
CPC分类号: H04W80/04 , H04L63/029
摘要: A method for a MIPv6 packet traversing a firewall includes: acquiring filtering information containing the home address of a Mobile Node (MN) from an MIPv6 packet initiating communication; establishing a filtering rule according to the filtering information; and filtering a sequent MIPv6 packet according to the filtering rule. A firewall according to the above method is also provided. According to the present invention, it may be guaranteed that a MIPv6 pack may reliably traverse a firewall in various cases. Moreover, in the case that an MN and a CN do not know whether there is a firewall between them and do not know the location of the firewall, the normal communication may still ensure not to be interrupted when the address of the MN changes.
摘要翻译: 穿过防火墙的MIPv6分组的方法包括:从MIPv6分组发起通信获取包含移动节点(MN)的归属地址的过滤信息; 根据过滤信息建立过滤规则; 并根据过滤规则过滤后续的MIPv6报文。 还提供了根据上述方法的防火墙。 根据本发明,可以确保在各种情况下MIPv6包可以可靠地穿过防火墙。 此外,在MN和CN不知道它们之间是否存在防火墙并且不知道防火墙的位置的情况下,当MN的地址改变时,正常通信仍然可以确保不被中断。
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公开(公告)号:US20160073878A1
公开(公告)日:2016-03-17
申请号:US14952262
申请日:2015-11-25
CPC分类号: A61B8/10 , A61B3/0016 , A61B3/0025 , A61B3/0033 , A61B3/0058 , A61B3/117 , A61B3/12 , A61B3/125 , A61B3/14 , A61B3/145 , A61B8/4416 , A61B8/4427 , A61B8/463 , A61B8/467 , A61B8/52 , A61B50/13 , A61B50/30 , A61B50/31 , A61B90/70 , A61B2050/311 , A61B2560/0431 , G02B7/023 , G02B7/04 , H04N1/00246
摘要: 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.
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