发明名称 Device for optical coherence tomography
摘要 In certain embodiments, a device for optical coherence tomography (OCT) includes a signal detection device and a computer arrangement. The signal detection device is designed to detect an interference signal (G(ω)) for an object to be imaged in an optical frequency range (ω). The computer arrangement is designed to determine intermediate signals (G1(k), G2(k)) in a spatial frequency range (k) from the intermediate interference signal (G(ω)), whereby each of the intermediate signals (G1(k), G2(k)) is dispersion-compensated for a different depth (z1, z2) of the object. A locally resolved image signal (FFT1, FFT2) is determined for each of the intermediate signals (G1(k), G2(k)) by applying a Fourier transformation to the particular intermediate signal (G1(k), G2(k)). A tomography signal (G(z)) is determined from the image signals (FFT1, FFT2).
申请公布号 US9243889(B2) 申请公布日期 2016.01.26
申请号 US201414567995 申请日期 2014.12.11
申请人 Wavelight GmbH 发明人 Massow Ole;Wisweh Henning
分类号 G01B11/02;G01B9/02;A61B3/10;G01N21/47 主分类号 G01B11/02
代理机构 代理人
主权项 1. A method for optical coherence tomography (OCT), comprising: detecting, by a signal detection device, an interference signal (G(ω)) for an object to be imaged in an optical frequency range (ω); calculating, by a computer arrangement, for each depth of a plurality of different depths (z1, z2) of the object, association instructions (M1, M2) that correspond to the particular depth (z1, z2) and the dispersion caused by the object; determining, by the computer arrangement, a plurality of intermediate signals (G1(k), G2(k)) in a spatial frequency range (k) from the interference signal (G(ω)) using the corresponding association instructions (M1, M2), each of the intermediate signals (G1(k), G2(k)) is dispersion-compensated for the different depths (z1, z2) of the object; applying by the computer arrangement, a Fourier transformation to each intermediate signal (G1(k), G2(k)) to determine a locally resolved image signal (FFT1, FFT2) for each of the intermediate signals (G1(k), G2(k)); and determining, by the computer arrangement, a tomography signal (G(z)) from the image signals (FFT1, FFT2).
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