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单次屏气声脉冲断层成像术在乳腺中的应用。

Single-breath-hold photoacoustic computed tomography of the breast.

机构信息

Caltech Optical Imaging Laboratory, Andrew and Peggy Cherng Department of Medical Engineering, California Institute of Technology, 1200 East California Boulevard, Pasadena, CA, 91125, USA.

Department of Biomedical Engineering, Washington University in St. Louis, One Brookings Dr., St. Louis, MO, 63130, USA.

出版信息

Nat Commun. 2018 Jun 15;9(1):2352. doi: 10.1038/s41467-018-04576-z.

Abstract

We have developed a single-breath-hold photoacoustic computed tomography (SBH-PACT) system to reveal detailed angiographic structures in human breasts. SBH-PACT features a deep penetration depth (4 cm in vivo) with high spatial and temporal resolutions (255 µm in-plane resolution and a 10 Hz 2D frame rate). By scanning the entire breast within a single breath hold (~15 s), a volumetric image can be acquired and subsequently reconstructed utilizing 3D back-projection with negligible breathing-induced motion artifacts. SBH-PACT clearly reveals tumors by observing higher blood vessel densities associated with tumors at high spatial resolution, showing early promise for high sensitivity in radiographically dense breasts. In addition to blood vessel imaging, the high imaging speed enables dynamic studies, such as photoacoustic elastography, which identifies tumors by showing less compliance. We imaged breast cancer patients with breast sizes ranging from B cup to DD cup, and skin pigmentations ranging from light to dark. SBH-PACT identified all the tumors without resorting to ionizing radiation or exogenous contrast, posing no health risks.

摘要

我们开发了一种单次屏气光声断层扫描(SBH-PACT)系统,以揭示人类乳房的详细血管结构。SBH-PACT 具有较深的穿透深度(体内 4cm)和较高的空间和时间分辨率(255µm 面内分辨率和 10Hz 的 2D 帧率)。通过在单次屏气(约 15s)内扫描整个乳房,可以获得体积图像,并随后利用 3D 反向投影进行重建,几乎没有呼吸引起的运动伪影。SBH-PACT 通过观察与肿瘤相关的高空间分辨率下更高的血管密度来清晰地显示肿瘤,为在射线致密的乳房中实现高灵敏度显示出了早期的应用前景。除了血管成像,高成像速度还可以进行动态研究,如光声弹性成像,它通过显示较低的顺应性来识别肿瘤。我们对乳房大小从 B 罩杯到 DD 罩杯、皮肤色素从浅到深的乳腺癌患者进行了成像。SBH-PACT 无需借助电离辐射或外源性对比剂即可识别所有肿瘤,不会带来健康风险。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/321b/6003984/6b919bda7a2b/41467_2018_4576_Fig1_HTML.jpg

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