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Design and testing of a novel microscopic photon correlation spectrometer with higher accuracy

机译:新型高精度光子相关光谱仪的设计与测试

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A novel microscopic photon correlation spectrometer has been designed and developed in order to employ photon correlation spectroscopy to investigate dynamic properties within a microscopic volume. It shows a spatial resolution scale of about 0.5 micrometres and a relaxation timescale of milliseconds. The variance of the scattering vector is less than 5% even at a smaller scattering angle. Furthermore, a standard performance test using 94 ± 13 nm polystyrene latex beads has been performed on the apparatus. The autocorrelation function value at the first channel is higher than 0.8, that indicates a higher signal-to-noise ratio and a good coherent detection. CONTIN analysis gives the latex beads size at 94 ± 2 nm. Different angle scattering results give the translation diffusion coefficient (4.57 ± 0.08) * 10~(-8) cm~2 s~(-1) at 293.15 K, that agrees with the theory very well. Besides, scattering spectroscopy using different pinhole sizes determines the optimized configuration for the spectrometer with higher accuracy. All these document that the designed system works much more accurately than previous systems and may probe dynamic information from different local sites of a single living cell non-invasively.
机译:为了使用光子相关光谱法研究微观体积内的动态特性,已经设计和开发了一种新型的微观光子相关光谱仪。它显示了约0.5微米的空间分辨率范围和毫秒级的松弛时间范围。即使在较小的散射角下,散射矢量的方差也小于5%。此外,已经在该设备上进行了使用94±13 nm聚苯乙烯乳胶珠的标准性能测试。第一个通道的自相关函数值大于0.8,这表示较高的信噪比和良好的相干检测。 CONTIN分析得出乳胶珠的尺寸为94±2 nm。不同的角度散射结果给出了在293.15 K处的平移扩散系数(4.57±0.08)* 10〜(-8)cm〜2 s〜(-1),与理论非常吻合。此外,使用不同针孔尺寸的散射光谱仪可以更高的精度确定光谱仪的优化配置。所有这些文献表明,所设计的系统比以前的系统更准确地工作,并且可以无创地探查来自单个活细胞不同本地位置的动态信息。

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