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Detection of organic nanoparticles within tissues using optical iterative method

机译:使用光学迭代方法检测组织内有机纳米颗粒

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Various techniques for recovering optical parameters were developed over the years. However each has its limitations, constraints and disadvantages (e.g. accuracy, computational speed, sample assembly, distinguishing between the different parameters, etc.). This research suggests an optical technique for extracting the reduced scattering coefficient (μ'_s) of substances by examining the light transmission through or reflection from them. It uses the multiple planes Gerchberg- Saxton (G-S) algorithm to reconstruct the light phase created by the substance. At the end of the algorithm, μ'_s can be estimated from the standard deviation (STD) of the retrieved phase of the reemitted light. We will use the theory to compute the phase's STD that directly correlated to the optical properties of different substances. Two possible applications for this technique, out of many others, are nanoparticles (NPs) penetration depth determination, for promoting topical medications, and detection of milk components quantitative signature as en route to milk content monitoring tool. For the former application, three materials were fabricated into NPs and all presented an activity enhancement with their size reduction. Then the NPs were applied on tissues and detected by our technique. For the latter, different milk content concentrations were examined resulting with different STD values suggesting it can be used as indicator for the milk component concentrations.
机译:多年来开发了用于恢复光学参数的各种技术。然而,每个都具有其限制,约束和缺点(例如,准确性,计算速度,样本组件,区分不同参数等)。该研究表明,通过检查光传输或从它们的反射来提取物质的减小的散射系数(μ'_s)的光学技术。它使用多个平面Gerchberg-Saxton(G-S)算法来重建由物质产生的光相。在算法结束时,可以从Reemited光的检索阶段的标准偏差(STD)估计μ'_。我们将使用该理论计算与不同物质的光学性质直接相关的相位的STD。这种技术的两种可能的应用是纳米颗粒(NPS)穿透深度测定,用于促进局部药物,以及乳成分定量签名的检测为牛奶含量监测工具。对于前一种应用,将三种材料制成NPS,并呈现出尺寸减少的活性增强。然后将NPS应用于组织并通过我们的技术检测。对于后者,检查不同的乳含量浓度,得到不同的STD值,表明它可以用作乳成分浓度的指示剂。

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