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相分辨光学相干弹性成像的同轴激励纵向剪切波测量用于定量弹性评估。

Coaxial excitation longitudinal shear wave measurement for quantitative elasticity assessment using phase-resolved optical coherence elastography.

出版信息

Opt Lett. 2018 May 15;43(10):2388-2391. doi: 10.1364/OL.43.002388.

Abstract

Optical coherence elastography (OCE) is an emerging imaging modality for the assessment of mechanical properties in soft tissues. Transverse shear wave measurements using OCE can quantify the elastic moduli perpendicular to the force direction, however, missing the elastic information along the force direction. In this study, we developed coaxial excitation longitudinal shear wave measurements for quantification of elastic moduli along the force direction using M-scans. Incorporating Rayleigh wave measurements using non-coaxial lateral scans into longitudinal shear wave measurements, directionally dependent elastic properties can be quantified along the force direction and perpendicular to the force direction. Therefore, the reported system has the capability to image elasticity of anisotropic biological tissues.

摘要

光学相干弹性成像(OCE)是一种新兴的软组织力学特性评估成像方式。OCE 的横向剪切波测量可定量评估垂直于力方向的弹性模量,但会丢失沿力方向的弹性信息。在本研究中,我们开发了共轴激励纵向剪切波测量方法,通过 M 扫描对沿力方向的弹性模量进行定量评估。通过将非共轴横向扫描的瑞利波测量纳入纵向剪切波测量中,可以定量评估沿力方向和垂直于力方向的各向异性弹性特性。因此,所报道的系统具有对各向异性生物组织进行弹性成像的能力。

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