Pitris C, Bouma B, Shiskov M, Tearney G
Opt Express. 2003 Jan 27;11(2):120-4. doi: 10.1364/oe.11.000120.
Spectrally encoded confocal microscopy (SECM) is a novel approach for obtaining high resolution, depth-sectioned images of microstructure within turbid samples. By encoding one spatial dimension in wavelength, imaging probes can be greatly simplified compared to standard scanning confocal microscopes, potentially enabling endoscopic implementation. The use of a diffraction grating for spectral encoding, however, skews the optical axis through the probe, thus complicating the design of narrow diameter instruments. In this Letter, we describe a novel use of a single-optical-axis element based on high index-of-refraction prisms and a transmission holographic grating for the design of narrow diameter SECM devices. Confocal images obtained with a 10.0 mm probe demonstrate a transverse resolution of 1.1 microm and a field of view of 650 microm.
光谱编码共聚焦显微镜(SECM)是一种用于获取浑浊样品内部微观结构的高分辨率深度切片图像的新方法。通过在波长上对一个空间维度进行编码,与标准扫描共聚焦显微镜相比,成像探头可以大大简化,这有可能实现内窥镜应用。然而,使用衍射光栅进行光谱编码会使光轴偏离探头,从而使窄直径仪器的设计变得复杂。在本信函中,我们描述了一种基于高折射率棱镜和透射全息光栅的单光轴元件在窄直径SECM设备设计中的新用途。使用10.0毫米探头获得的共聚焦图像显示横向分辨率为1.1微米,视野为650微米。