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具有光声、超声和弹性成像功能的第二代双扫描乳腺镜。

Second-Generation Dual Scan Mammoscope With Photoacoustic, Ultrasound, and Elastographic Imaging Capabilities.

作者信息

Zheng Emily, Zhang Huijuan, Goswami Soumya, Kabir Irteza Enan, Doyley Marvin M, Xia Jun

机构信息

Department of Biomedical Engineering, University at Buffalo, The State University of New York, Buffalo, NY, United States.

Department of Electrical and Computer Engineering, Rochester Center for Biomedical Ultrasound, University of Rochester, Rochester, NY, United States.

出版信息

Front Oncol. 2021 Nov 19;11:779071. doi: 10.3389/fonc.2021.779071. eCollection 2021.

Abstract

We recently developed the photoacoustic dual-scan mammoscope (DSM), a system that images the patient in standing pose analog to X-ray mammography. The system simultaneously acquires three-dimensional photoacoustic and ultrasound (US) images of the mildly compressed breast. Here, we describe a second-generation DSM (DSM-2) system that offers a larger field of view, better system stability, higher ultrasound imaging quality, and the ability to quantify tissue mechanical properties. In the new system, we doubled the field of view through laterally shifted round-trip scanning. This new design allows coverage of the entire breast tissue. We also adapted precisely machined holders for the transducer-fiber bundle sets. The new holder increased the mechanical stability and facilitated image registration from the top and bottom scanners. The quality of the US image is improved by increasing the firing voltage and the number of firing angles. Finally, we incorporated quasi-static ultrasound elastography to allow comprehensive characterization of breast tissue. The performance of the new system was demonstrated through human imaging experiments. The experimental results confirmed the capability of the DSM-2 system as a powerful tool for breast imaging.

摘要

我们最近开发了光声双扫描乳腺镜(DSM),这是一种能让患者以类似于X线乳腺摄影的站立姿势成像的系统。该系统可同时采集轻度压缩乳房的三维光声和超声(US)图像。在此,我们描述了第二代DSM(DSM-2)系统,它具有更大的视野、更好的系统稳定性、更高的超声成像质量以及量化组织力学特性的能力。在新系统中,我们通过横向移位往返扫描将视野扩大了一倍。这种新设计能够覆盖整个乳腺组织。我们还为换能器-纤维束组件适配了精密加工的固定器。新的固定器提高了机械稳定性,并便于顶部和底部扫描仪进行图像配准。通过提高激发电压和激发角度数量,超声图像的质量得到了改善。最后,我们纳入了准静态超声弹性成像技术,以便对乳腺组织进行全面表征。通过人体成像实验展示了新系统的性能。实验结果证实了DSM-2系统作为一种强大的乳腺成像工具的能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d115/8640448/df27b2b20306/fonc-11-779071-g001.jpg

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