Toytman I, Simanovskii D, Palanker D
Hansen Experimental Physics Laboratory, Stanford University, CA 94305-4085, USA.
Opt Express. 2009 Apr 27;17(9):7339-47. doi: 10.1364/oe.17.007339.
New system for a wide-field CARS microscopy is demonstrated, including two schemes of non-phase-matching illumination. Several advantages including high Stokes pulse energy, pulse-to-pulse stability and inherent synchronization between pump and Stokes pulses were brought by use of methane-filled Raman converter. Spatial resolution of the system with axially symmetric illumination, 0.5 microm, was found to correspond to diffraction limit of the imaging objective. Selective sensitivity to lipid-rich myelin sheaths in the nerve tissue has been demonstrated and confirmed by comparison with histological samples stained with myelin-specific dye. Single-shot imaging capability of the system has been demonstrated with a speckling-free illumination on a monolayer of 3 microm polystyrene beads.
展示了一种用于宽场相干反斯托克斯拉曼散射(CARS)显微镜的新系统,包括两种非相位匹配照明方案。使用充甲烷的拉曼转换器带来了几个优点,包括高斯托克斯脉冲能量、脉冲间稳定性以及泵浦脉冲和斯托克斯脉冲之间的固有同步性。发现具有轴对称照明的系统的空间分辨率为0.5微米,与成像物镜的衍射极限相对应。通过与用髓磷脂特异性染料染色的组织学样本进行比较,已证明并证实了该系统对神经组织中富含脂质的髓鞘具有选择性敏感性。通过对3微米聚苯乙烯珠单层进行无散斑照明,展示了该系统的单次成像能力。