加权超声熵成像用于 HIFU 消融监测,提高了灵敏度和对比度。

IF 3.2 2区 医学 Q1 RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING
Medical physics Pub Date : 2024-08-02 DOI:10.1002/mp.17340
Yingying Zhou, Kun Yang, Jiahong Xu, Dejia Cai, Xiaowei Zhou
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引用次数: 0

摘要

背景:尽管B型成像已广泛应用于超声引导下的高强度聚焦超声(HIFU)治疗,但在提高其质量和灵敏度以监测热剂量方面仍存在挑战。最近,定量超声(QUS)成像被认为具有更好地感知消融组织微观结构变化的潜力。目的:本研究建议使用一种名为加权超声熵(WUE)成像的 QUS 方法来监测 HIFU 消融:方法:基于体外和体内实验,利用新建立的成像框架重建了反映不同声功率水平(174-308 W)下 HIFU 治疗过程中组织变化的 WUE 图像。就病灶区域与背景之间的对比度-噪声比(CNRs)而言,比较了所提出的 WUE 成像在监测 HIFU 治疗中的性能:结果发现,高功率的 HIFU 照射会在病灶区域产生较大的 WUE 值,而且随着声波超声的进行,亮点会逐渐变大。与原位 B 型图像相比,WUE 图像在显示病变形成方面具有更高的图像质量,不同阶段的 CNR 提高了 39.2%-53.4%。同时,WUE 图像估计的损伤面积与解剖的活体组织样本测量的损伤面积之间存在相关性(R = 0.84):结论:在监测 HIFU 治疗方面,WUE 成像比 B 型成像更灵敏、更准确。这些研究结果表明,WUE 成像是一种很有前途的超声引导 HIFU 消融辅助技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Weighted ultrasound entropy imaging for HIFU ablation monitoring with improved sensitivity and contrast

Background

Although B-mode imaging has been widely used in ultrasound-guided high-intensity focused ultrasound (HIFU) treatment, challenges remain in improving its quality and sensitivity for monitoring the thermal dose. Recently, quantitative ultrasound (QUS) imaging has been recognized with the potential to better sense the changes in the microstructure of ablated tissues.

Purpose

This study proposed to use a QUS method called weighted ultrasound entropy (WUE) imaging to monitor the HIFU ablation.

Methods

Based on ex-vivo and in-vivo experiments, WUE images reflecting tissue changes during HIFU treatment under different acoustic power levels (174–308 W) were reconstructed with a newly established imaging framework. The performance of the proposed WUE imaging in the monitoring of HIFU treatment was compared with the corresponding B-mode images in terms of their contrast-to-noise ratios (CNRs) between the focal region and the background.

Results

It was found that HIFU irradiation with higher power generated larger WUE values in the focal region, and the bright spots grew in size as the acoustic sonication proceeded. Compared with the in-situ B-mode images, the WUE images had higher image quality in indicating lesion formation, with a 39.2%–53.4% improvement in the CNR at different stages. Meanwhile, a correlation (R = 0.84) between the damage area estimated in WUE images and that measured from the dissected ex-vivo tissue samples was found.

Conclusions

WUE imaging is more sensitive and accurate than B-mode imaging in monitoring HIFU therapy. These findings suggest that WUE imaging could be a promising technique for assisting ultrasound-guided HIFU ablation.

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来源期刊
Medical physics
Medical physics 医学-核医学
CiteScore
6.80
自引率
15.80%
发文量
660
审稿时长
1.7 months
期刊介绍: Medical Physics publishes original, high impact physics, imaging science, and engineering research that advances patient diagnosis and therapy through contributions in 1) Basic science developments with high potential for clinical translation 2) Clinical applications of cutting edge engineering and physics innovations 3) Broadly applicable and innovative clinical physics developments Medical Physics is a journal of global scope and reach. By publishing in Medical Physics your research will reach an international, multidisciplinary audience including practicing medical physicists as well as physics- and engineering based translational scientists. We work closely with authors of promising articles to improve their quality.
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