发明名称 Optical tomographic imaging method and optical tomographic imaging apparatus
摘要 An optical tomographic imaging method of picking up a cross-sectional image of an object comprises scanning a predetermined region of the object with spots of a plurality of measurement lights in the same direction so as to irradiate different positions of the object with different spots, detecting interference signals formed by the plurality of return lights reflected or scattered by the object and a plurality of corresponding reference lights reflected by a reference mirror, and executing an arithmetic process on the detected interference signals based on a displacement amount between the different spot positions using interference signals corresponding to at least two of the spots out of the respective interference signals. The region to be scanned has a length smaller than the sum of diameters of the spots in a direction perpendicular to the scanning direction.
申请公布号 US9044165(B2) 申请公布日期 2015.06.02
申请号 US200913133250 申请日期 2009.12.18
申请人 CANON KABUSHIKI KAISHA 发明人 Yuasa Takashi;Sugita Mitsuro
分类号 H04N7/18;A61B3/10;A61B5/00;G01B9/02 主分类号 H04N7/18
代理机构 Fitzpatrick, Cella, Harper & Scinto 代理人 Fitzpatrick, Cella, Harper & Scinto
主权项 1. An imaging method for picking up an optical coherence tomographic image of an object using combined lights obtained by combining a plurality of return lights from the object irradiated with the plurality of measurement lights with the plurality of reference lights corresponding to the plurality of measurement lights, respectively, the method comprising: a step of irradiating different spot positions in the object with the plurality of measurement lights; a step of scanning the plurality of measurement lights such that irradiation spots of the plurality of measurement lights are apart in a direction intersecting with a main scanning direction, by a length not greater than the sum of diameters of the spots; a step of forming the optical coherence tomographic image of the object based on the combined lights and a displacement amount between the different spot positions in a plane scanned with the plurality of measurement lights; a step of detecting interference signals from the respective combined lights; and a step of executing an arithmetic process on the detected interference signals based on a displacement amount between different spot positions, using interference signals corresponding to at least two of the spot positions out of the interference signals corresponding to the respective spot positions and the displacement amount between the at least two spot positions, to thereby improve the signal-to-noise ratio as compared to using only one of the interference signals corresponding to the at least two spot positions.
地址 Tokyo JP