Drexler W, Morgner U, Kärtner F X, Pitris C, Boppart S A, Li X D, Ippen E P, Fujimoto J G
Opt Lett. 1999 Sep 1;24(17):1221-3. doi: 10.1364/ol.24.001221.
Ultrahigh-resolution optical coherence tomography (OCT) by use of state of the art broad-bandwidth femtosecond laser technology is demonstrated and applied to in vivo subcellular imaging. Imaging is performed with a Kerr-lens mode-locked Ti:sapphire laser with double-chirped mirrors that emits sub-two-cycle pulses with bandwidths of up to 350 nm, centered at 800 nm. Longitudinal resolutions of ~1mum and transverse resolution of 3mum, with a 110-dB dynamic range, are achieved in biological tissue. To overcome depth-of-field limitations we perform zone focusing and image fusion to construct a tomogram with high transverse resolution throughout the image depth. To our knowledge this is the highest longitudinal resolution demonstrated to date for in vivo OCT imaging.
利用最先进的宽带飞秒激光技术的超高分辨率光学相干断层扫描(OCT)已得到验证,并应用于体内亚细胞成像。成像使用具有双啁啾镜的克尔透镜锁模钛宝石激光器进行,该激光器发射中心波长为800nm、带宽高达350nm的亚两个周期脉冲。在生物组织中实现了纵向分辨率约为1μm、横向分辨率为3μm以及110dB的动态范围。为了克服景深限制,我们进行区域聚焦和图像融合,以构建在整个图像深度具有高横向分辨率的断层图像。据我们所知,这是迄今为止体内OCT成像所展示的最高纵向分辨率。