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用于磁共振引导聚焦超声应用的高质量琼脂和聚丙烯酰胺肿瘤模拟体模模型

High-quality Agar and Polyacrylamide Tumor-mimicking Phantom Models for Magnetic Resonance-guided Focused Ultrasound Applications.

作者信息

Sofokleous Panagiotis, Damianou Christakis

机构信息

Department of Electrical Engineering, Computer Engineering and Informatics, Cyprus University of Technology, Limassol, Cyprus.

出版信息

J Med Ultrasound. 2023 Oct 27;32(2):121-133. doi: 10.4103/jmu.jmu_68_23. eCollection 2024 Apr-Jun.

Abstract

BACKGROUND

Tissue-mimicking phantoms (TMPs) have been used extensively in clinical and nonclinical settings to simulate the thermal effects of focus ultrasound (FUS) technology in real tissue or organs. With recent technological developments in the FUS technology and its monitoring/guided techniques such as ultrasound-guided FUS and magnetic resonance-guided FUS (MRgFUS) the need for TMPs are more important than ever to ensure the safety of the patients before being treated with FUS for a variety of diseases (e.g., cancer or neurological). The purpose of this study was to prepare a tumor-mimicking phantom (TUMP) model that can simulate competently a tumor that is surrounded by healthy tissue.

METHODS

The TUMP models were prepared using polyacrylamide (PAA) and agar solutions enriched with MR contrast agents (silicon dioxide and glycerol), and the thermosensitive component bovine serum albumin (BSA) that can alter its physical properties once thermal change is detected, therefore offering real-time visualization of the applied FUS ablation in the TUMPs models. To establish if these TUMPs are good candidates to be used in thermoablation, their thermal properties were characterized with a custom-made FUS system in the laboratory and a magnetic resonance imaging (MRI) setup with MR-thermometry. The BSA protein's coagulation temperature was adjusted at 55°C by setting the pH of the PAA solution to 4.5, therefore simulating the necrosis temperature of the tissue.

RESULTS

The experiments carried out showed that the TUMP models prepared by PAA can change color from transparent to cream-white due to the BSA protein coagulation caused by the thermal stress applied. The TUMP models offered a good MRI contrast between the TMPs and the TUMPs including real-time visualization of the ablation area due to the BSA protein coagulation. Furthermore, the -weighted MR images obtained showed a significant change in when the BSA protein is thermally coagulated. MR thermometry maps demonstrated that the suggested TUMP models may successfully imitate a tumor that is present in soft tissue.

CONCLUSION

The TUMP models developed in this study have numerous uses in the testing and calibration of FUS equipment including the simulation and validation of thermal therapy treatment plans with FUS or MRgFUS in oncology applications.

摘要

背景

组织模拟体模(TMPs)已广泛应用于临床和非临床环境,以模拟聚焦超声(FUS)技术在真实组织或器官中的热效应。随着FUS技术及其监测/引导技术(如超声引导FUS和磁共振引导FUS(MRgFUS))的最新技术发展,在患者接受FUS治疗各种疾病(如癌症或神经系统疾病)之前,对TMPs的需求比以往任何时候都更加重要,以确保患者的安全。本研究的目的是制备一种能够有效模拟被健康组织包围的肿瘤的肿瘤模拟体模(TUMP)模型。

方法

使用富含磁共振造影剂(二氧化硅和甘油)的聚丙烯酰胺(PAA)和琼脂溶液以及热敏成分牛血清白蛋白(BSA)制备TUMP模型,一旦检测到热变化,BSA可以改变其物理性质,从而在TUMP模型中提供所应用的FUS消融的实时可视化。为了确定这些TUMP是否是热消融的良好候选者,在实验室中使用定制的FUS系统和具有磁共振测温功能的磁共振成像(MRI)装置对其热性能进行了表征。通过将PAA溶液的pH值设置为4.5,将BSA蛋白的凝固温度调整为55°C,从而模拟组织坏死温度。

结果

进行的实验表明,由于施加的热应力导致BSA蛋白凝固,由PAA制备的TUMP模型可以从透明变为乳白。TUMP模型在TMPs和TUMPs之间提供了良好的MRI对比度,包括由于BSA蛋白凝固而实现的消融区域的实时可视化。此外,获得的加权MR图像显示,当BSA蛋白热凝固时,有显著变化。磁共振测温图表明,所建议的TUMP模型可以成功模拟软组织中存在的肿瘤。

结论

本研究中开发的TUMP模型在FUS设备的测试和校准中有多种用途,包括在肿瘤学应用中使用FUS或MRgFUS进行热疗治疗计划的模拟和验证。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f1ec/11175378/ba222837ed99/JMU-32-121-g001.jpg

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