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Diffusion-sensitive Fourier-domain optical coherence tomography

机译:扩散敏感傅里叶域光学相干断层扫描

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Diffusion-sensitive optical coherence tomography (DS-OCT) is presented as a functional extension to OCT. Fluctuations of signal intensity and phase, which are caused by Brownian motion, are analysed by an autocorrelation function similar to dynamic light scattering measurements. Based on an ultra-fast Fourier-domain OCT, DS-OCT can determine quantitatively diffusion properties with high depth resolution, e.g. the hydrodynamic diameter of colloidal suspensions .rnPerformance of DS-OCT is demonstrated with polystyrene particle suspensions and compared to conventional DLS measurements. Applications for DS-OCT may be found in the measurement of particle size distributions of inhomogeneous samples or measurements of diffusion properties at boundary surfaces. Additionally, the method has the capability to become a useful benefit in clinical diagnostics, especially in ophthalmology, where the molecular compositions and pathological changes of anterior eye components could be detected.
机译:扩散敏感光学相干断层扫描(DS-OCT)是对OCT的功能扩展。由布朗运动引起的信号强度和相位波动通过类似于动态光散射测量的自相关函数进行分析。基于超快速傅里叶域OCT,DS-OCT可以定量确定具有高深度分辨率的扩散特性,例如胶体悬浮液的流体动力学直径。rn-DS-OCT的性能在聚苯乙烯颗粒悬浮液中得到了证明,并与常规DLS测量进行了比较。 DS-OCT的应用可以在不均匀样品的粒度分布测量或边界表面扩散特性的测量中找到。另外,该方法具有成为临床诊断中有用的益处的能力,特别是在眼科学中,其中可以检测前眼成分的分子组成和病理变化。

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