Dartmouth College, Thayer School of Engineering, Hanover, New Hampshire, United States.
Beijing University of Technology, Beijing Key Laboratory of Computational Intelligence and Intelligent System, Faculty of Information Technology, Beijing, China.
J Biomed Opt. 2023 Apr;28(4):046006. doi: 10.1117/1.JBO.28.4.046006. Epub 2023 Apr 20.
Tissue phantoms that mimic the optical and radiologic properties of human or animal tissue play an important role in the development, characterization, and evaluation of imaging systems. Phantoms that are easily produced and stable for longitudinal studies are highly desirable.
A new type of long-lasting phantom was developed with commercially available materials and was assessed for fabrication ease, stability, and optical property control. Magnetic resonance imaging (MRI) and x-ray computed tomography (CT) contrast properties were also evaluated.
A systematic investigation of relationships between concentrations of skin-like pigments and composite optical properties was conducted to realize optical property phantoms in the red and near-infrared (NIR) wavelength range that also offered contrast for CT and MRI.
Phantom fabrication time was and did not involve any heating or cooling processes. Changes in optical properties were over a 12-month period. Phantom optical and spectral features were similar to human soft tissue over the red to NIR wavelength ranges. Pigments used in the study also had CT and MRI contrasts for multimodality imaging studies.
The phantoms described here mimic optical properties of soft tissue and are suitable for multimodality imaging studies involving CT or MRI without adding secondary contrast agents.
模仿人体或动物组织的光学和放射学特性的组织模型在成像系统的开发、特性描述和评估中发挥着重要作用。易于制作且适合长期研究的稳定性好的模型是非常需要的。
使用市售材料开发了一种新型长效模型,并评估其制作的简易性、稳定性和光学性能控制。还评估了磁共振成像(MRI)和 X 射线计算机断层扫描(CT)的对比特性。
对皮肤样颜料浓度与复合光学特性之间的关系进行了系统的研究,以实现适用于 CT 和 MRI 的近红外(NIR)波长范围内的红色光学特性模型,并提供对比度。
模型制作时间为 ,不涉及任何加热或冷却过程。在 12 个月的时间内,光学性能的变化 。在红色到 NIR 波长范围内,研究中使用的颜料与人体软组织的光学和光谱特征相似。研究中使用的颜料还具有 CT 和 MRI 对比,适用于多模态成像研究。
这里描述的模型模仿软组织的光学特性,适用于涉及 CT 或 MRI 的多模态成像研究,无需添加二级造影剂。