4.6 Article

Multi-MHz retinal OCT

期刊

BIOMEDICAL OPTICS EXPRESS
卷 4, 期 10, 页码 1890-1908

出版社

OPTICAL SOC AMER
DOI: 10.1364/BOE.4.001890

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资金

  1. German Research Foundation [Emmy Noether DFG - HU 1006/2-1, DFG - HU 1006/3-1]
  2. European Union project FUN-OCT (FP7 HEALTH) [201880]
  3. European Union project FDML-Raman (FP7 ERC) [259158]

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We analyze the benefits and problems of in vivo optical coherence tomography (OCT) imaging of the human retina at A-scan rates in excess of 1 MHz, using a 1050 nm Fourier-domain mode-locked (FDML) laser. Different scanning strategies enabled by MHz OCT line rates are investigated, and a simple multi-volume data processing approach is presented. In-vivo OCT of the human ocular fundus is performed at different axial scan rates of up to 6.7 MHz. High quality non-mydriatic retinal imaging over an ultra-wide field is achieved by a combination of several key improvements compared to previous setups. For the FDML laser, long coherence lengths and 72 nm wavelength tuning range are achieved using a chirped fiber Bragg grating in a laser cavity at 419.1 kHz fundamental tuning rate. Very large data sets can be acquired with sustained data transfer from the data acquisition card to host computer memory, enabling high-quality averaging of many frames and of multiple aligned data sets. Three imaging modes are investigated: Alignment and averaging of 24 data sets at 1.68 MHz axial line rate, ultra-dense transverse sampling at 3.35 MHz line rate, and dual-beam imaging with two laser spots on the retina at an effective line rate of 6.7 MHz. (c) 2013 Optical Society of America

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