Yasuno Yoshiaki, Madjarova Violeta Dimitrova, Makita Shuichi, Akiba Masahiro, Morosawa Atsushi, Chong Changho, Sakai Toru, Chan Kin-Pui, Itoh Masahide, Yatagai Toyohiko
Opt Express. 2005 Dec 26;13(26):10652-64. doi: 10.1364/opex.13.010652.
A two- and three-dimensional swept source optical coherence tomography (SS-OCT) system, which uses a ready-to-ship scanning light source, is demonstrated. The light source has a center wavelength of 1.31 mum, -3 dB wavelength range of 110 nm, scanning rate of 20 KHz, and high linearity in frequency scanning. This paper presents a simple calibration method using a fringe analysis technique for spectral rescaling. This SS-OCT system is capable of realtime display of two-dimensional OCT and can obtain three-dimensional OCT with a measurement time of 2 s. In vivo human anterior eye segments are investigated two- and three-dimensionally. The system sensitivity is experimentally determined to be 114 dB. The three-dimensional OCT volumes reveal the structures of the anterior eye segments, which are difficult to observe in two-dimensional OCT images.
展示了一种二维和三维扫频光源光学相干断层扫描(SS-OCT)系统,该系统使用了一种现成的扫描光源。该光源的中心波长为1.31μm,-3dB波长范围为110nm,扫描速率为20kHz,并且在频率扫描方面具有高线性度。本文提出了一种使用条纹分析技术进行光谱重新缩放的简单校准方法。该SS-OCT系统能够实时显示二维OCT,并能在2秒的测量时间内获得三维OCT。对活体人类眼前节进行了二维和三维研究。通过实验确定该系统的灵敏度为114dB。三维OCT容积揭示了眼前节的结构,这些结构在二维OCT图像中难以观察到。