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首页> 外文期刊>Journal of biomedical optics >Micron resolution, high-fidelity three-dimensional vascular optical imaging phantoms
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Micron resolution, high-fidelity three-dimensional vascular optical imaging phantoms

机译:微米分辨率,高保真三维血管光学成像体模

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摘要

Microscopic and mesoscale optical imaging techniques allow for three-dimensional (3-D) imaging of biological tissue across millimeter-scale regions, and imaging phantom models are invaluable for system characterization and clinical training. Phantom models that replicate complex 3-D geometries with both structural and molecular contrast, with resolution and lateral dimensions equivalent to those of imaging techniques (<20 μrn), have proven elusive. We present a method for fabricating phantom models using a combination of two-photon polymerization (2PP) to print scaffolds, and microinjection of tailored tissue-mimicking materials to simulate healthy and diseased tissue. We provide a first demonstration of the capabilities of this method with intravascular optical coherence tomography, an imaging technique widely used in clinical practice. We describe the design, fabrication, and validation of three types of phantom models: a first with subresolution wires (5- to 34-μm diameter) arranged circumferentially, a second with a vessel side-branch, and a third containing a lipid inclusion within a vessel. Silicone hybrid materials and lipids, microinjected within a resin framework created with 2PP, served as tissue-mimicking materials that provided realistic optical scattering and absorption. We demonstrate that optical phantom models made with 2PP and microinjected tissue-mimicking materials can simulate complex anatomy and pathology with exquisite detail.
机译:显微镜和中尺度光学成像技术可对毫米级区域内的生物组织进行三维(3-D)成像,并且幻像模型对于系统表征和临床培训而言非常宝贵。幻影模型可复制复杂的3D几何结构,同时具有结构和分子对比,分辨率和横向尺寸与成像技术(<20μm)相同,已被证明难以捉摸。我们提出了一种制造模型的方法,该模型使用双光子聚合(2PP)来打印支架,并显微注射定制的组织模仿材料以模拟健康和患病的组织。我们通过血管内光学相干断层扫描(一种在临床实践中广泛使用的成像技术)首次证明了该方法的功能。我们描述了三种类型的体模模型的设计,制造和验证:第一种模型具有沿圆周排列的亚分辨率导线(直径为5至34μm),第二种模型具有血管侧支,第三种模型中包含脂质包裹体一艘船。将有机硅杂化材料和脂质微注射到用2PP制成的树脂框架中,用作模仿组织的材料,可提供逼真的光学散射和吸收。我们证明了由2PP和显微注射的组织模拟材料制成的光学模型可以精确地模拟复杂的解剖学和病理学。

著录项

  • 来源
    《Journal of biomedical optics》 |2019年第2期|020502.1-020502.4|共4页
  • 作者单位

    Wellcome Trust-EPSRC Centre for Interventional and Surgical Sciences, London, United Kingdom,Royal Free Hospital, Department of Cardiology, London, United Kingdom;

    University College London, Department of Electronic and Electrical Engineering, Photonic Innovations Lab, London, United Kingdom ,University College London, Department of Medical Physics and Bioengineering, London, United Kingdom;

    Wellcome Trust-EPSRC Centre for Interventional and Surgical Sciences, London, United Kingdom,University College London, Department of Medical Physics and Bioengineering, London, United Kingdom,University College London, Nanoengineered Systems Laboratory, UCL Mechanical Engineering, London, United Kingdom;

    Wellcome Trust-EPSRC Centre for Interventional and Surgical Sciences, London, United Kingdom,University College London, Department of Medical Physics and Bioengineering, London, United Kingdom;

    Wellcome Trust-EPSRC Centre for Interventional and Surgical Sciences, London, United Kingdom,University College London, Department of Electronic and Electrical Engineering, Photonic Innovations Lab, London, United Kingdom;

    Royal Free Hospital, Department of Cardiology, London, United Kingdom;

    Wellcome Trust-EPSRC Centre for Interventional and Surgical Sciences, London, United Kingdom,University College London, Nanoengineered Systems Laboratory, UCL Mechanical Engineering, London, United Kingdom;

    Royal Free Hospital, Department of Cardiology, London, United Kingdom;

    University College London, Department of Electronic and Electrical Engineering, Photonic Innovations Lab, London, United Kingdom;

    Wellcome Trust-EPSRC Centre for Interventional and Surgical Sciences, London, United Kingdom,University College London, Department of Medical Physics and Bioengineering, London, United Kingdom;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    optics; two-photon polymerization; imaging phantoms; optical coherence tomography; tissue-mimicking materials; vascular;

    机译:光学;双光子聚合;成像体模;光学相干断层扫描;模拟组织的材料;血管的;

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