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用于漫射光学成像的几何结构复杂的3D打印体模。

Geometrically complex 3D-printed phantoms for diffuse optical imaging.

作者信息

Dempsey Laura A, Persad Melissa, Powell Samuel, Chitnis Danial, Hebden Jeremy C

机构信息

Medical Physics and Biomedical Engineering Department, University College London, WC1E 6BT, London, UK.

出版信息

Biomed Opt Express. 2017 Feb 23;8(3):1754-1762. doi: 10.1364/BOE.8.001754. eCollection 2017 Mar 1.

Abstract

Tissue-equivalent phantoms that mimic the optical properties of human and animal tissues are commonly used in diffuse optical imaging research to characterize instrumentation or evaluate an image reconstruction method. Although many recipes have been produced for generating solid phantoms with specified absorption and transport scattering coefficients at visible and near-infrared wavelengths, the construction methods are generally time-consuming and are unable to create complex geometries. We present a method of generating phantoms using a standard 3D printer. A simple recipe was devised which enables printed phantoms to be produced with precisely known optical properties. To illustrate the capability of the method, we describe the creation of an anatomically accurate, tissue-equivalent premature infant head optical phantom with a hollow brain space based on MRI atlas data. A diffuse optical image of the phantom is acquired when a high contrast target is inserted into the hollow space filled with an aqueous scattering solution.

摘要

在漫射光学成像研究中,常用于表征仪器或评估图像重建方法的组织等效体模,是模仿人类和动物组织光学特性的物体。尽管已经有许多方法可用于生成在可见光和近红外波长下具有特定吸收和输运散射系数的固体体模,但其构建方法通常耗时且无法创建复杂的几何形状。我们提出了一种使用标准3D打印机生成体模的方法。设计了一个简单的配方,使打印出的体模具有精确已知的光学特性。为了说明该方法的能力,我们描述了基于MRI图谱数据创建一个具有中空脑腔的解剖学精确、组织等效的早产儿头部光学体模。当将一个高对比度目标插入充满水性散射溶液的中空空间时,采集该体模的漫射光学图像。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fb6a/5480578/5f321e3a25a6/boe-8-3-1754-g001.jpg

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