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光学分辨率光声微弹性成像系统用于弹性图谱成像:体模研究与实际应用。

Optical-resolution photoacoustic microelastography system for elasticity mapping: Phantom study and practical application.

机构信息

Department of Biomedical Engineering, Nanjing University of Aeronautics and Astronautics, Nanjing, Jiangsu, China.

Department of Computer Engineering, Nanjing Institute of Technology, Nanjing, Jiangsu, China.

出版信息

J Biophotonics. 2024 Aug;17(8):e202400032. doi: 10.1002/jbio.202400032. Epub 2024 Jun 18.

Abstract

Elastography is a noninvasive technique for characterizing the mechanical properties of biological tissues. Conventional methods have limitations in resolution and sensitivity, hindering disease detection in clinical diagnostics. To address these issues, this study developed an optical-resolution photoacoustic microelastography (OR-PAME) system. Using an agar tissue phantom with varying agar concentrations and contrast agents, PAME evaluated elasticity distribution under compression in both lateral and axial dimensions. It indirectly measured elastic properties by correlating photoacoustic responses, temporal lags, and induced displacement. We also applied the system to the study of the distribution of elastic characteristics of the liver tissue after ablation, which confirmed the potential of OR-PAME in the study of elastic characteristics. Quantitative analysis showed greater lateral displacement in regions with reduced agar concentrations, indicating decreased stiffness. PAME also detected vertical displacement along the axial plane, validating its efficacy in elastographic imaging. By improving resolution and penetration, PAME provides superior visualization of elasticity distribution. Its methodology correlates microstructural alterations with tissue biomechanics, holding potential implications in medical diagnostics.

摘要

弹性成像是一种用于描述生物组织力学特性的非侵入性技术。传统方法在分辨率和灵敏度方面存在局限性,阻碍了临床诊断中的疾病检测。为了解决这些问题,本研究开发了一种光学分辨率光声微弹性成像(OR-PAME)系统。该系统使用具有不同琼脂浓度和对比剂的琼脂组织体模,在横向和轴向尺寸上评估压缩下的弹性分布。它通过关联光声响应、时间滞后和诱导位移来间接测量弹性特性。我们还将该系统应用于研究消融后肝脏组织弹性特性的分布,这证实了 OR-PAME 在弹性特性研究中的潜力。定量分析显示,琼脂浓度降低区域的横向位移更大,表明刚度降低。PAME 还检测了轴向平面上的垂直位移,验证了其在弹性成像中的功效。通过提高分辨率和穿透深度,PAME 提供了更好的弹性分布可视化效果。其方法将微观结构变化与组织生物力学相关联,在医学诊断中具有潜在的意义。

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