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基于数字图像相关的光学相干弹性成像。

Digital image correlation-based optical coherence elastography.

机构信息

Ryerson University, Biophotonics and Bioengineering Laboratory, Toronto, Ontario, Canada M5B 2K3bRyerson University, Department of Electrical and Computer Engineering, Toronto, Ontario, Canada M5B 2K3cUniversity of Toronto, Faculty of Medicine, Department of Medicine, Toronto, Ontario, Canada M5S1A1.

Ryerson University, Biophotonics and Bioengineering Laboratory, Toronto, Ontario, Canada M5B 2K3bRyerson University, Department of Electrical and Computer Engineering, Toronto, Ontario, Canada M5B 2K3.

出版信息

J Biomed Opt. 2013 Dec;18(12):121515. doi: 10.1117/1.JBO.18.12.121515.

Abstract

Optical coherence elastography (OCE) provides deformation or material properties, mapping of soft tissue. We aim to develop a robust speckle tracking OCE technique with improved resolution and accuracy. A digital image correlation (DIC)-based OCE technique was developed by combining an advanced DIC algorithm with optical coherence tomography (OCT). System calibration and measurement error evaluation demonstrated that this DIC-based OCE technique had a resolution of ~0.6 μm displacement and <0.5% strain measurement in the axial scan direction. The measured displacement ranged from 0.6 to 150 μm, obtained via phantom imaging. The capability of the DIC-based OCE technique, for differentiation of stiffness, was evaluated by imaging a candle gel phantom with an irregularly shaped stiff inclusion. OCE imaging of a chicken breast sample differentiated the fat, membrane, and muscle layers. Strain elastograms of an aneurysm sample showed heterogeneity of the tissue and clear contrast between the adventitia and media. These promising results demonstrated the capability of the DIC-based OCE for the characterization of the various components of the tissue sample. Further improvement of the system will be conducted to make this OCE technique a practical tool for measuring and differentiating material properties of soft tissue.

摘要

光学相干弹性成像(OCE)提供了软组织的变形或材料特性映射。我们旨在开发一种稳健的斑点跟踪 OCE 技术,以提高分辨率和准确性。通过将先进的数字图像相关(DIC)算法与光学相干断层扫描(OCT)相结合,开发了一种基于 DIC 的 OCE 技术。系统校准和测量误差评估表明,这种基于 DIC 的 OCE 技术在轴向扫描方向上具有约 0.6μm 位移和<0.5%应变测量的分辨率。通过对幻影成像进行测量,获得了 0.6 至 150μm 的测量位移范围。基于 DIC 的 OCE 技术区分刚度的能力通过对具有不规则形状硬夹杂物的蜡烛凝胶幻影进行成像来评估。鸡胸脯样本的 OCE 成像区分了脂肪、膜和肌肉层。动脉瘤样本的应变弹性图显示了组织的异质性以及外膜和中膜之间的明显对比。这些有希望的结果表明,基于 DIC 的 OCE 有能力对组织样本的各个成分进行特征描述。将进一步改进系统,以使这种 OCE 技术成为测量和区分软组织材料特性的实用工具。

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