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用于宫颈癌成像的双照明超声/光声系统。

Dual-Illumination Ultrasound/ Photoacoustic System for Cervical Cancer imaging.

作者信息

Basij Maryam, Karpiouk Andrei, Winer Ira, Emelianov Stanislav, Mehrmohammadi Mohammad

机构信息

Department of Biomedical Engineering, Wayne State University, Detroit, MI, USA.

School of Electrical and Computer Engineering, Georgia Institute of Technology, Atlanta, GA, USA.

出版信息

IEEE Photonics J. 2021 Feb;13(1). doi: 10.1109/jphot.2020.3043685. Epub 2020 Dec 14.

Abstract

Early stage cancer detection technologies can provide functional information and potentially decrease the mortality rate caused by cervical cancer. In our previous work, a miniaturized ultrasound and photoacoustic endoscopic system has been developed to image the cervical tissue through the cervical canal to fulfills the need for a safe, low-cost, and high-resolution functional diagnostic system. However, the miniaturized size of endoscope and American National Standards Institute safety limits cause constraints of using high-intensity illumination during imaging. In addition, the strong light scattering of tissues limits the light penetration depth. Fortunately, the cervix anatomy allows for the delivery of additional light from the ectocervix by using an external illumination system. Here we propose a dual, co-planar illumination system, which can provide adequate illumination to the cervical tissue via combined internal and external light delivery strategies. Therefore, an increase in the area of light-tissue interaction allows us to raise the laser light energy while keeping fluence under safety limits. Thus, a reliable PA imaging can be obtained for the whole cervical tissue thickness. The system performance was tested using a Monte Carlo simulation, and laser-light fluence was calculated and compared at different depths within a simulated cervical-tissue model. The results indicated a higher and more uniform fluence in the Monte Carlo simulations. In addition, the photoacoustic imaging of the proposed system was evaluated by two cervical tissue-mimicking phantoms with human blood and graphite rods as inclusions inside it. In accordance with the simulations, the phantom study revealed a more reliable photoacoustic signal for the entire depth of the phantoms with an improved contrast to noise ratio and signal to noise ratio, and a higher coverage ratio of the imaging field of view. In summary, the dual-mode illumination system can provide more realistic information of inclusions within the tissue while considering safety limits, which can lead to more accuracy in biomarker detection for cervical cancer diagnostics.

摘要

早期癌症检测技术能够提供功能信息,并有可能降低宫颈癌导致的死亡率。在我们之前的工作中,已经开发了一种小型化超声和光声内镜系统,通过宫颈管对宫颈组织进行成像,以满足对安全、低成本和高分辨率功能诊断系统的需求。然而,内镜的小型化尺寸以及美国国家标准学会的安全限制导致在成像过程中使用高强度照明受到限制。此外,组织的强光散射限制了光的穿透深度。幸运的是,宫颈的解剖结构允许通过使用外部照明系统从宫颈外口提供额外的光。在此,我们提出一种双共面照明系统,该系统可以通过内部和外部光传输策略相结合的方式为宫颈组织提供充足的照明。因此,光与组织相互作用面积的增加使我们能够在将注量保持在安全限制范围内的同时提高激光能量。这样,就可以获得整个宫颈组织厚度的可靠光声成像。使用蒙特卡罗模拟对系统性能进行了测试,并在模拟宫颈组织模型内的不同深度计算并比较了激光注量。结果表明,蒙特卡罗模拟中的注量更高且更均匀。此外,使用两个含有模拟人体血液和石墨棒作为内含物的宫颈组织模拟体模对所提出系统的光声成像进行了评估。与模拟结果一致,体模研究显示在整个体模深度上光声信号更可靠,对比度噪声比和信噪比得到改善,成像视野的覆盖率更高。总之,双模照明系统在考虑安全限制的同时可以提供组织内内含物更真实的信息,这可以提高宫颈癌诊断生物标志物检测的准确性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b138/8023629/044e23a85c4d/nihms-1685865-f0001.jpg

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