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Fast Low-Noise Brillouin Spectroscopy Measurements of Elasticity for Corneal Crosslinking

机译:快速低噪声布里渊光谱法测量角膜交联的弹性

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The Brillouin scattering spectra of biological systems have shown to be inherently related to the intrinsic elasticity and molecular constants of tissues involved. Our approach of combining confocal microscopy and high-resolution Brillouin spectroscopy via a virtual imaging phase array enabled 10-microsecond single-pixel acquisition time without dedicated spatial filtering. Such an approach is adapted via a single-frequency fiber-coupled 780-nm wavelength laser, frequency stabilized by Rb-D2 absorption line, polarization extinction scheme, ASE filtering, heated Rb-vapor Rayleigh-scattering absorbent, and spectroscopic EMCCD camera, unified as CMS-VIPA: confocal virtual-imaging phase array microscope-spectrometer. Steady strengthening of corneal bulk modulus was observed via spectral shifts of Brillouin scattering from 5.0-5.2 GHz in untreated porcine eyes to 5.7-5.9 GHz in ones cross-linked in riboflavin plus UV-A light - at 0.7-0.9 GHz level of enhancement. The cross-linking depths reaching 300-400 microns were measured, as predicted by modeling. A noncontact Brillouin spectroscopic microscopy system for in-vivo corneal elasticity measurement is under development.
机译:生物系统的布里渊散射光谱已显示与所涉及组织的固有弹性和分子常数内在相关。我们通过虚拟成像相阵列将共聚焦显微镜和高分辨率布里渊光谱相结合的方法,无需专用的空间滤波,即可实现10微秒的单像素采集时间。通过单频光纤耦合780 nm波长激光器,通过Rb-D2吸收线使频率稳定,偏振消光方案,ASE滤波,加热的Rb蒸气瑞利散射吸收剂和光谱EMCCD摄像机对这种方法进行了修改作为CMS-VIPA:共聚焦虚拟成像相阵列显微镜光谱仪。通过在未经处理的猪眼中将布里渊散射从5.0-5.2 GHz移至在核黄素加UV-A光中交联的那些中,在0.7-0.9 GHz增强水平下,布里渊散射的光谱位移从5.7-5.9 GHz观察到了角膜容积模量的稳定增强。如通过建模预测的,测量了达到300-400微米的交联深度。用于体内角膜弹性测量的非接触式布里渊光谱显微镜系统正在开发中。

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