Suppr超能文献

解相关复合合成孔径超声成像检测聚焦超声诱导的低对比度热损伤。

Decorrelated compounding of synthetic aperture ultrasound imaging to detect low contrast thermal lesions induced by focused ultrasound.

机构信息

Department of Physics, Toronto Metropolitan University, 350 Victoria Street, Toronto, Ontario, Canada.

Department of Physics, Toronto Metropolitan University, 350 Victoria Street, Toronto, Ontario, Canada; Institute for Biomedical Engineering, Science and Technology (iBEST), Keenan Research Centre for Biomedical Science, St. Michael's Hospital, Toronto, Ontario, Canada.

出版信息

Ultrasonics. 2023 Sep;134:107098. doi: 10.1016/j.ultras.2023.107098. Epub 2023 Jun 28.

Abstract

PURPOSE

Decorrelated Compounding (DC) for synthetic aperture ultrasound can reduce speckle variation in images, suggesting enhanced detectability of low-contrast targets in tissue including thermal lesions produced by focused ultrasound (FUS). The DC imaging method has primarily been investigated in simulation and in phantom studies. This work investigates the feasibility of the DC method in monitoring thermal therapy via image guidance and non-invasive thermometry based on the change in backscattered energy (CBE).

METHODS

Ex vivo porcine tissue was exposed to FUS exposures at acoustic powers of 5 W and 1 W, with peak pressure amplitudes of 0.64 MPa and 0.27 MPa respectively. During FUS exposure, RF echo data frames was acquired using a 7.8 MHz linear array probe and a Verasonics Vantage ultrasound scanner (Verasonics Inc., Redmond, WA). RF echo data was taken to produce B-mode images, as reference images. Synthetic aperture RF echo data was also acquired and processed using delay-and-sum (DAS), a combination of spatial and frequency compounding referred to as Traditional Compounding (TC), and the proposed DC imaging methods. Image quality was assessed using the contrast-to-noise ratio (CNR) at the FUS beam focus, and the speckle SNR (sSNR) of the background region as preliminary metrics. A calibrated thermocouple was placed near the FUS beam focus for temperature measurements and calibrations using the CBE method.

RESULTS

The DC imaging method significantly improved image quality to detect low contrast thermal lesions in treated ex vivo porcine tissue in comparison to other imaging methods. In comparison to B-mode imaging, the lesion CNR measured using the DC imaging was shown to improve up to a factor of approximately 5.5. The corresponding sSNR improved by a factor of approximately 4.2 in comparison to B-mode imaging. CBE calculation using the DC imaging method yielded more precise measurements of the backscattered energy compared to other imaging methods studied.

CONCLUSIONS

The despeckling performance of the DC imaging method significantly improves the lesion CNR in comparison to B-mode imaging. This suggests that the proposed method can detect low-contrast thermal lesions induced by FUS therapy that are not detectable using standard B-mode imaging. Furthermore, the signal change at the focal point were more precisely measured by DC imaging, and the signal change in response to FUS exposure follows the temperature profile more closely than changes measured using B-mode, as well as synthetic aperture DAS and TC images. These suggest that DC imaging can potentially be used with the CBE method to improve non-invasive thermometry.

摘要

目的

合成孔径超声的去相关复合(DC)可减少图像中的斑点变化,这表明在包括聚焦超声(FUS)产生的热损伤在内的组织中,对低对比度目标的检测能力得到了增强。该 DC 成像方法主要在模拟和体模研究中进行了研究。本工作通过基于反向散射能量(CBE)变化的图像引导和非侵入式测温,研究了该方法在监测热疗中的可行性。

方法

将离体猪组织暴露于 FUS 照射下,声功率分别为 5 W 和 1 W,峰值压力幅度分别为 0.64 MPa 和 0.27 MPa。在 FUS 照射期间,使用 7.8 MHz 线性阵列探头和 Verasonics Vantage 超声扫描仪(Verasonics Inc.,雷德蒙德,华盛顿州)采集 RF 回波数据帧。RF 回波数据用于生成 B 模式图像,作为参考图像。还采集了合成孔径 RF 回波数据,并使用延迟和求和(DAS)、空间和频率复合的组合(称为传统复合(TC))以及所提出的 DC 成像方法进行处理。使用 FUS 光束焦点处的对比度噪声比(CNR)和背景区域的斑点 SNR(sSNR)作为初步指标来评估图像质量。在 FUS 光束焦点附近放置了一个经过校准的热电偶,用于使用 CBE 方法进行温度测量和校准。

结果

与其他成像方法相比,DC 成像方法显著提高了图像质量,可检测到处理过的离体猪组织中的低对比度热损伤。与 B 模式成像相比,使用 DC 成像测量的病变 CNR 显示可提高约 5.5 倍。与 B 模式成像相比,相应的 sSNR 提高了约 4.2 倍。与研究的其他成像方法相比,使用 DC 成像方法进行 CBE 计算可更精确地测量反向散射能量。

结论

与 B 模式成像相比,DC 成像方法的去斑性能显著提高了病变 CNR。这表明,与标准 B 模式成像相比,该方法可以检测到 FUS 治疗引起的低对比度热损伤。此外,与 B 模式、合成孔径 DAS 和 TC 图像相比,焦点处的信号变化通过 DC 成像可以更精确地测量,并且信号变化对 FUS 照射的响应更接近温度曲线。这表明 DC 成像可以与 CBE 方法一起用于改进非侵入式测温。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验