- 专利标题: Large field of view multi-camera endoscopic apparatus with omni-directional illumination
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申请号: US15120527申请日: 2015-02-24
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公开(公告)号: US10334163B2公开(公告)日: 2019-06-25
- 发明人: Ömer Cogal , Yusuf Leblebici
- 申请人: ECOLE POLYTECHNIQUE FEDERALE DE LAUSANNE (EPFL)
- 申请人地址: CH Lausanne
- 专利权人: ECOLE POLYTECHNIQUE FEDERALE DE LAUSANNE (EPFL)
- 当前专利权人: ECOLE POLYTECHNIQUE FEDERALE DE LAUSANNE (EPFL)
- 当前专利权人地址: CH Lausanne
- 代理机构: Andre Roland S.A.
- 代理商 Nikolaus Schibli
- 优先权: WOPCT/IB2014/059273 20140226; WOPCT/IB2014/059299 20140227
- 国际申请: PCT/IB2015/051379 WO 20150224
- 国际公布: WO2015/128801 WO 20150903
- 主分类号: H04N5/232
- IPC分类号: H04N5/232 ; A61B1/00 ; A61B1/04 ; A61B1/05 ; A61B1/07 ; G06T3/40 ; H04N5/225 ; G03B15/03 ; G03B37/00 ; H04N5/235 ; H04N5/243 ; H04N5/247 ; A61B1/045 ; G03B37/04
摘要:
A multi-camera hemispherical very wide field of view imaging apparatus with omnidirectional illumination capability comprises a cylindrical body (4, 4.a, 4.b), a hemispherical mechanical frame (2) arranged on one end of the cylindrical body (4, 4.a, 4.b), a plurality of imaging channels (3), each imaging channel (3) comprising at least an image sensor and related optics with a fixed focus appropriate for endoscopic imaging, the plurality of imaging channels (3) being distributed over the hemispherical mechanical frame (2), a light source arranged center-down at a back part of the plurality of imaging channels (3) and inside or at the end of the cylindrical body (4, 4.a, 4.b). Each imaging channel (3) comprises a plurality of lightning channels (1) around their center, each of the plurality of lightning channels (1) comprising at least one microfiber light guide having a determined angle of curvature arranged to transmit the light from the light source. The imaging apparatus further comprises a control and processing circuit (5) comprising a camera control unit (6), an illumination control unit (7), an illumination unit (8), a sample and capture unit (9), an image processing unit (10) and an output interface (11) to a PC. The camera control unit (6) is configured to power each of the plurality of imaging channels (3) and make automatic gain compensation for each imaging channel (3), the illumination control unit (7) is configured for automatic intensity dimming, the sample and capture unit (9) is an interface circuit for correct sampling, extraction and capturing frames of individual imaging channels (3), the image processing unit (10) is configured for constructing a spherical panoramic image by applying a determined algorithm, and the output interface (11) is arranged to output the spherical panoramic image to a system configured to visualize it.
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