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公开(公告)号:EP4017386B1
公开(公告)日:2024-10-09
申请号:EP20858227.0
申请日:2020-08-21
IPC分类号: A61B17/34 , A61B5/02 , A61B1/313 , A61B90/30 , A61B1/04 , A61B90/11 , A61B90/14 , A61B1/06 , H04N23/50 , H04N23/56 , H04N23/57 , G03B15/14 , G03B15/05 , A61B5/00
CPC分类号: A61B90/30 , A61B2090/30920160201 , A61B90/361 , A61B2090/361820160201 , A61B17/3421 , A61B90/10 , G03B15/05 , G03B15/14 , G03B2215/056720130101 , A61B5/0084 , A61B5/6848 , A61B5/4064 , A61B2576/02620130101 , A61B5/02042 , A61B1/00096 , A61B1/042 , A61B1/0669 , A61B1/313 , H04N23/555 , H04N23/56 , H04N23/57
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公开(公告)号:EP4378371A1
公开(公告)日:2024-06-05
申请号:EP23209980.4
申请日:2023-11-15
CPC分类号: A61B1/00186 , G02B7/006 , A61B1/0646 , G02B23/2453 , A61B1/00096 , G02B26/008 , G02B23/2476
摘要: The invention concerns a filter switching device for an endoscopic camera head with at least three optical filters comprising an outer surface, with an optical path and a rotating element, wherein, by means of the rotating element, each optical filter is movable into and out of the optical path, wherein the filter switching device comprises a groove with a non-circular trajectory, so that the at least three optical filters are moveable by means of the non-circular trajectory of the groove and the rotating element. Furthermore, the invention concerns a camera head and a retrofit kit for retrofitting a camera head and/or an endoscope.
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公开(公告)号:EP3742955B1
公开(公告)日:2024-05-29
申请号:EP19743628.0
申请日:2019-01-03
CPC分类号: G03B37/04 , A61B1/05 , G03B15/14 , A61B1/00188 , A61B1/00096 , A61B1/00181 , A61B1/00177 , A61B1/045 , A61B1/00009 , A61B1/0676 , A61B1/0684 , G02B23/2423 , G02B23/2461 , G02B23/2484 , A61B1/0625
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公开(公告)号:EP4023139B1
公开(公告)日:2024-05-08
申请号:EP21182212.7
申请日:2021-06-29
CPC分类号: A61B1/051 , A61B1/0676 , A61B1/0684 , A61B1/053 , A61B1/00112 , A61B1/128 , G02B23/2423 , A61B1/00096 , H04N23/52 , H04N23/555 , H04N23/57
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公开(公告)号:EP4324382A3
公开(公告)日:2024-04-24
申请号:EP23199481.5
申请日:2014-05-09
申请人: EndoChoice, Inc.
发明人: GILREATH, Mark , PARKS, Will , LEVY, Avi , ASHERY, Yoram , KIRMA, Yaniv , SHIMONY, Anat , JACOBS, Charlie , WIETH, Stephan , GERSHOV, Yuri , KRIVOPISK, Leonid , LADD, Doug
IPC分类号: A61B1/06
CPC分类号: A61B1/00009 , A61B1/0005 , A61B1/00096 , A61B1/0011 , A61B1/00177 , A61B1/00181 , A61B1/051 , A61B1/0615 , A61B1/0676 , A61B1/0684 , G02B23/2484 , G02B23/2423 , G02B23/2461 , A61B1/00066 , A61B1/00194 , A61B1/0004
摘要: The invention relates to an endoscopy display system, comprising an endoscope system, comprising a distal tip, wherein the distal tip has a first image capturing component and a second image capturing component, and at least one actuator that, when activated, generates a video processing command, a controller, wherein the controller comprises a video processing system adapted to transmit at least one command to the first image capturing component and the second image capturing component, receive a first image feed from first image capturing component, receive a second image feed from the second image capturing component, and process the first image feed and the second image feed, and a display system, wherein said display system comprises a single monitor adapted to receive at least one processed image feed from the video processing system, and visually display a single integrated image feed that includes a portion of the first image feed and a portion of the second image feed.
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公开(公告)号:EP4331468A3
公开(公告)日:2024-04-17
申请号:EP24152029.5
申请日:2020-02-27
申请人: 3Shape A/S
发明人: FOGED, Morten Vendelbo , VANNAHME, Christoph , PEDERSEN, Michael , JENSEN, Søren Greve , OLEGOVYCH, Dmytro Chupryna , HANSEN, Esben Rosenlund , JELLINGGAARD, Anders Robert , JENSEN, Peter Dahl Ejby , KROGH, Kasper , SUNDBERG, Oliver
CPC分类号: A61B1/00101 , A61B1/0676 , A61B5/0088 , A61C9/0053 , H04N23/555 , A61B1/00096 , A61B1/24 , A61B1/00172 , A61B1/227 , A61B1/00179 , A61B1/043 , A61B1/0638 , A61B1/00194 , A61B1/0005 , A61B1/00009 , A61B1/00105
摘要: Disclosed is an intra-oral scanning system comprising a replaceable scanning-tip, a scanner device configured to replaceably mount the replaceable scanning-tip, an infrared light source configured to emit infrared light, the infrared light source residing in or on the replaceable scanning-tip, whereby the scanning tip provides the infrared light to the teeth; and an optical element located at the distal end of the scanning-tip with a reflective surface inside the scanning-tip such that when the optical element receives light from a white light source located in the scanning device, the scanning tip provides white light to the teeth, wherein the optical element is configured for receiving the white light as back-reflected from the teeth, such that when the optical element receives the white light from teeth, the scanning-tip provides the white light to a first image sensor in the scanning device, wherein the optical element is configured to reflect the white light such that it passes to a first set of pixels on a first image sensor, and the optical element is configured to reflect the infrared light such that it passes to a second set of pixels on the first image sensor.
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公开(公告)号:EP3412216A1
公开(公告)日:2018-12-12
申请号:EP16889395.6
申请日:2016-11-30
申请人: Olympus Corporation
发明人: TSURUTA, Teppei , NISHINA, Kenichi
CPC分类号: A61B1/0011 , A61B1/00043 , A61B1/00096 , A61B1/00114 , A61B1/05 , A61B8/08 , A61B8/12 , A61B8/467
摘要: In a method of manufacturing an endoscope according to the present invention, a heat-shrinkable tube is produced by folding a first molded body in which a notch portion is formed by forming a cutout from directions facing each other in a part of an elastically deformable tube and aligning end portions thereof, each of a plurality of bundle portions formed by branching some of a plurality of signal lines is inserted into each cylindrical portion of this heat-shrinkable tube to be covered by heat shrinkage, and thereafter, a channel is inserted into a gap formed by the plurality of cylindrical portions, and one end of the channel is connected to a distal end constituting portion.
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公开(公告)号:EP3195808B1
公开(公告)日:2018-11-28
申请号:EP15834482.0
申请日:2015-03-09
申请人: Olympus Corporation
CPC分类号: A61B8/12 , A61B1/00096 , A61B1/0051 , A61B1/015 , A61B8/4483 , B06B1/0622
摘要: Each of all ultrasound transducers constituting an ultrasound transducer group 48 of an ultrasound transmitting/receiving portion 14 is connected to a circuit board 49 via electrical wiring 50 so that all the ultrasound transducers can transmit/receive ultrasound. Therefore, even if a second ultrasound transducer group 48b which causes ultrasound to be reflected in a housing 41 occurs due to a shape (inclination and an amount of projection), influence and the like of an outer circumferential portion 42a of an opening portion 42 of the housing 41, a first ultrasound transducer group 48a capable of emitting ultrasound from the opening portion 42 is appropriately secured.
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公开(公告)号:EP2213222B1
公开(公告)日:2018-11-28
申请号:EP10151752.2
申请日:2010-01-27
申请人: FUJIFILM Corporation
发明人: KOMUKAI, Makito
CPC分类号: G01N21/6456 , A61B1/00096 , A61B1/00186 , A61B1/043 , A61B1/0638 , A61B5/0071 , A61B5/0075 , A61B5/0084 , G01N2021/6432
摘要: Before a fluorescent labeling agent is administered on an observation area, the observation area is irradiated with an excitation light for fluorescence quenching. An image taking unit (3) captures two fluorescence images at a predetermined time interval during the irradiation with the excitation light. The first fluorescence image is written to a first frame memory (17a), and a second fluorescence image is written to a second frame memory (17b). An image processing circuit (18) reads out the two fluorescence images, and calculates a difference in light intensity between the two fluorescence images. A judgment circuit (26) judges whether or not fluorescence from a fluorescent dye that has already existed in the observation area is quenched based on the difference in light intensity.
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公开(公告)号:EP2789291B1
公开(公告)日:2018-10-17
申请号:EP14162978.2
申请日:2001-11-09
CPC分类号: A61B5/0059 , A61B1/00096 , A61B1/0017 , A61B1/043 , A61B1/07 , A61B5/0062 , A61B5/0071 , A61B5/0084 , G02B21/0036 , G02B21/0048 , G02B21/0064
摘要: An endoscopic probe can be provided for spectrally encoding a sample. The exemplary probe can include a lens element (32) configured to provide there through electro-magnetic radiation, and a dispersive arrangement (34, 36, 38) configured to receive at least one portion of the electro-magnetic radiation and forward a dispersed radiation to at least one section of the sample (30) from which information is being obtained. The probe can also include means for scanning an image formed by the lens element (32) of the at least one section of the sample (30). The electro-magnetic radiation can be provided by a wavelength tunable light source emitting a monochromatic radiation whose wavelength is scanned with time.
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