Huber R, Wojtkowski M, Fujimoto J G
Opt Express. 2006 Apr 17;14(8):3225-37. doi: 10.1364/oe.14.003225.
We demonstrate a new technique for frequency-swept laser operation--Fourier domain mode locking (FDML)--and its application for swept-source optical coherence tomography (OCT) imaging. FDML is analogous to active laser mode locking for short pulse generation, except that the spectrum rather than the amplitude of the light field is modulated. High-speed, narrowband optical frequency sweeps are generated with a repetition period equal to the fundamental or a harmonic of cavity round-trip time. An FDML laser is constructed using a long fiber ring cavity, a semiconductor optical amplifier, and a tunable fiber Fabry-Perot filter. Effective sweep rates of up to 290 kHz are demonstrated with a 105 nm tuning range at 1300 nm center wavelength. The average output power is 3mW directly from the laser and 20 mW after post-amplification. Using the FDML laser for swept-source OCT, sensitivities of 108 dB are achieved and dynamic linewidths are narrow enough to enable imaging over a 7 mm depth with only a 7.5 dB decrease in sensitivity. We demonstrate swept-source OCT imaging with acquisition rates of up to 232,000 axial scans per second. This corresponds to 906 frames/second with 256 transverse pixel images, and 3.5 volumes/second with a 256x128x256 voxel element 3-DOCT data set. The FDML laser is ideal for swept-source OCT imaging, thus enabling high imaging speeds and large imaging depths.
我们展示了一种用于扫频激光操作的新技术——傅里叶域锁模(FDML)及其在扫频源光学相干断层扫描(OCT)成像中的应用。FDML类似于用于产生短脉冲的主动激光锁模,不同之处在于调制的是光场的频谱而非幅度。高速、窄带光学频率扫描以等于腔往返时间的基频或谐波的重复周期产生。一个FDML激光器由一个长光纤环形腔、一个半导体光放大器和一个可调谐光纤法布里 - 珀罗滤波器构成。在中心波长为1300nm时,实现了高达290kHz的有效扫描速率以及105nm的调谐范围。激光器直接输出的平均功率为3mW,经后置放大后为20mW。使用FDML激光器进行扫频源OCT成像时,实现了108dB的灵敏度,动态线宽足够窄,能够在7mm深度上成像,且灵敏度仅下降7.5dB。我们展示了每秒高达232,000次轴向扫描采集速率的扫频源OCT成像。这对应于256个横向像素图像时的906帧/秒,以及具有256x128x256体素元素的3 - DOCT数据集时的3.5体积/秒。FDML激光器是扫频源OCT成像的理想选择,从而能够实现高成像速度和大成像深度。