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3D printing method for freeform fabrication of optical phantoms simulating heterogeneous biological tissue

机译:用于模拟异质生物组织的光学体模的自由形式制造的3D打印方法

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The performance of biomedical optical imaging devices heavily relies on appropriate calibration. However, many of existing calibration phantoms for biomedical optical devices are based on homogenous materials without considering the multi-layer heterogeneous structures observed in biological tissue. Using such a phantom for optical calibration may result in measurement bias. To overcome this problem, we propose a 3D printing method for freeform fabrication of tissue simulating phantoms with multilayer heterogeneous structure. The phantom simulates not only the morphologic characteristics of biological tissue but also absorption and scattering properties. The printing system is based on a 3D motion platform with coordinated control of the DC motors. A special jet nozzle is designed to mix base, scattering, and absorption materials at different ratios. 3D tissue structures are fabricated through layer-by-layer printing with selective deposition of phantom materials of different ingredients. Different mixed ratios of base, scattering and absorption materials have been tested in order to optimize the printing outcome. A spectrometer and a tissue spectrophotometer are used for characterizing phantom absorption and scattering properties. The goal of this project is to fabricate skin tissue simulating phantoms as a traceable standard for the calibration of biomedical optical spectral devices.
机译:生物医学光学成像设备的性能在很大程度上取决于适当的校准。然而,许多现有的用于生物医学光学设备的校准体模均基于均质材料,而不考虑在生物组织中观察到的多层异质结构。使用这种体模进行光学校准可能会导致测量偏差。为了克服这个问题,我们提出了一种3D打印方法,用于自由形式制造具有多层异质结构的组织模拟体模。体模不仅模拟生物组织的形态特征,而且模拟吸收和散射特性。打印系统基于3D运动平台,并由直流电动机进行协调控制。一种特殊的喷嘴设计用于以不同比例混合基础材料,散射材料和吸收材料。 3D组织结构是通过逐层打印并选择性沉积不同成分的幻像材料而制成的。为了优化印刷效果,已经测试了基础材料,散射材料和吸收材料的不同混合比例。分光计和组织分光光度计用于表征幻像吸收和散射特性。该项目的目标是制造模拟人体模型的皮肤组织,作为生物医学光谱设备校准的可追溯标准。

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