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小型化相控阵超声和光声内窥成像系统。

Miniaturized phased-array ultrasound and photoacoustic endoscopic imaging system.

作者信息

Basij Maryam, Yan Yan, Alshahrani Suhail S, Helmi Hamid, Burton Timothy K, Burmeister Jay W, Dominello Michael M, Winer Ira S, Mehrmohammadi Mohammad

机构信息

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

Barbara Ann Karmanos Cancer Institute, Detroit, MI, USA.

出版信息

Photoacoustics. 2019 Jul 25;15:100139. doi: 10.1016/j.pacs.2019.100139. eCollection 2019 Sep.

Abstract

Visualization and detection of early-stage gynecological malignancies represents a challenge for imaging due to limiting factors including tissue accessibility, device ease of use, and accuracy of imaging modalities. In this work, we introduce a miniaturized phased-array ultrasound and photoacoustic endoscopic probe which is capable of providing structural, functional, and molecular data for the characterization of gynecologic disease. The proposed probe consists of a 64-element ultrasound phased-array transducer coupled to a fiber-optic light delivery system for co-registered ultrasound and photoacoustic imaging. The fabricated US and PA imaging endoscope's diameter is 7.5 mm, allowing for potential passage through the cervical canal and thus an intimate contact with gynecological tissues such as the cervical canal and uterus. The developed endoscopic probe was tested and characterized in a set of tissue-mimicking phantoms. US and PA resolutions were measured experimentally using 200 μm diameter wires, resulting in apparent axial and lateral diameters of 289 μm and 299 μm for US, and 308 μm and 378 μm for PA, respectively. The probe's abilities to operate in both discrete and integrated illumination/acquisition were tested in gelatin phantoms with embedded optical absorbers with the results demonstrating the ability to acquire volumetric dual-modal US and PA images.

摘要

由于包括组织可达性、设备易用性和成像模态准确性等限制因素,早期妇科恶性肿瘤的可视化和检测对成像来说是一项挑战。在这项工作中,我们介绍了一种小型化相控阵超声和光声内镜探头,它能够提供用于妇科疾病特征描述的结构、功能和分子数据。所提出的探头由一个64阵元超声相控阵换能器与一个光纤光传输系统耦合而成,用于超声和光声成像的联合配准。所制造的超声和光声成像内窥镜直径为7.5毫米,有可能通过宫颈管,从而与宫颈管和子宫等妇科组织密切接触。所开发的内镜探头在一组组织模拟体模中进行了测试和表征。使用直径200微米的金属丝通过实验测量了超声和光声分辨率,超声的轴向和横向表观直径分别为289微米和299微米,光声的分别为308微米和378微米。在含有嵌入式光吸收体的明胶体模中测试了探头在离散和集成照明/采集模式下的操作能力,结果表明它有能力获取体积双模态超声和光声图像。

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