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全反射环形照明系统用于光声断层成像。

All-reflective ring illumination system for photoacoustic tomography.

机构信息

Wayne State University, Department of Biomedical Engineering, Detroit, Michigan, United States.

Wayne State University, Department of Electrical and Computer Engineering, Detroit, Michigan, United States.

出版信息

J Biomed Opt. 2019 Apr;24(4):1-7. doi: 10.1117/1.JBO.24.4.046004.

Abstract

Given that breast cancer is the second leading cause of cancer-related deaths among women in the United States, it is necessary to continue improving the sensitivity and specificity of breast imaging systems that diagnose breast lesions. Photoacoustic (PA) imaging can provide functional information during in vivo studies and can augment the structural information provided by ultrasound (US) imaging. A full-ring, all-reflective, illumination system for photoacoustic tomography (PAT) coupled to a full-ring US receiver is developed and tested. The US/PA tomography system utilizes a cone mirror and conical reflectors to optimize light delivery for PAT imaging and has the potential to image objects that are placed within the ring US transducer. The conical reflector used in this system distributes the laser energy over a circular cross-sectional area, thereby reducing the overall fluence. This, in turn, allows the operator to increase the laser energy achieving better cross-sectional penetration depth. A proof-of-concept design utilizing a single cone mirror and a parabolic reflector is used for imaging cylindrical phantoms with light-absorbing objects. For the given phantoms, it has been shown that there was no restriction in imaging a given targeted cross-sectional area irrespective of vertical depth, demonstrating the potential of mirror-based, ring-illuminated PAT system. In addition, the all-reflective ring illumination method shows a uniform PA signal across the scanned cross-sectional area.

摘要

鉴于乳腺癌是美国女性癌症相关死亡的第二大主要原因,有必要继续提高诊断乳腺病变的乳腺成像系统的灵敏度和特异性。光声(PA)成像是一种在体内研究中提供功能信息的方法,可增强超声(US)成像提供的结构信息。本文开发并测试了一种与全环 US 接收器耦合的全环、全反射式光声断层摄影(PAT)照明系统。该 US/PA 层析成像系统利用圆锥镜和锥形反射器来优化 PAT 成像的光传输,并且有可能对置于环形 US 换能器内的物体进行成像。该系统中使用的锥形反射器将激光能量分布在圆形横截面上,从而降低了总光通量。这反过来又允许操作员增加激光能量,从而实现更好的横截面穿透深度。利用单个圆锥镜和抛物面反射镜的概念验证设计用于对具有吸光物体的圆柱形体模进行成像。对于给定的体模,已经证明,无论垂直深度如何,都可以不受限制地对给定的目标横截面区域进行成像,这展示了基于反射镜的环形照明 PAT 系统的潜力。此外,全反射环形照明方法在扫描的横截面区域上显示出均匀的 PA 信号。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5f82/6906953/65888b0eeafd/JBO-024-046004-g001.jpg

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