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用于间质超声热疗与成像的三维灌注脑模型:设计、构建与特性分析

3D perfused brain phantom for interstitial ultrasound thermal therapy and imaging: design, construction and characterization.

作者信息

Martínez José M, Jarosz Boguslaw J

机构信息

Department of Physics, Carleton University, 1125 Colonel By Drive, Ottawa, ON, K1S5B6.

出版信息

Phys Med Biol. 2015 Mar 7;60(5):1879-900. doi: 10.1088/0031-9155/60/5/1879. Epub 2015 Feb 10.

Abstract

Thermal therapy has emerged as an independent modality of treating some tumors. In many clinics the hyperthermia, one of the thermal therapy modalities, has been used adjuvant to radio- or chemotherapy to substantially improve the clinical treatment outcomes. In this work, a methodology for building a realistic brain phantom for interstitial ultrasound low dose-rate thermal therapy of the brain is proposed. A 3D brain phantom made of the tissue mimicking material (TMM) had the acoustic and thermal properties in the 20-32 °C range, which is similar to that of a brain at 37 °C. The phantom had 10-11% by mass of bovine gelatin powder dissolved in ethylene glycol. The TMM sonicated at 1 MHz, 1.6 MHz and 2.5 MHz yielded the amplitude attenuation coefficients of 62  ±  1 dB m(-1), 115  ±  4 dB m(-1) and 175  ±  9 dB m(-1), respectively. The density and acoustic speed determination at room temperature (~24 °C) gave 1040  ±  40 kg m(-3) and 1545  ±  44 m s(-1), respectively. The average thermal conductivity was 0.532 W m(-1) K(-1). The T1 and T2 values of the TMM were 207  ±  4 and 36.2  ±  0.4 ms, respectively. We envisage the use of our phantom for treatment planning and for quality assurance in MRI based temperature determination. Our phantom preparation methodology may be readily extended to other thermal therapy technologies.

摘要

热疗法已成为治疗某些肿瘤的一种独立方法。在许多临床实践中,热疗的一种方式——高温疗法,已被用作放疗或化疗的辅助手段,以显著提高临床治疗效果。在这项工作中,提出了一种构建用于脑部间质超声低剂量率热疗的逼真脑部模型的方法。一个由组织模拟材料(TMM)制成的三维脑部模型在20 - 32°C范围内具有声学和热学特性,这与37°C时脑部的特性相似。该模型含有质量分数为10 - 11%的牛明胶粉溶解在乙二醇中。在1 MHz、1.6 MHz和2.5 MHz频率下对TMM进行超声处理,其幅度衰减系数分别为62 ± 1 dB m⁻¹、115 ± 4 dB m⁻¹和175 ± 9 dB m⁻¹。在室温(约24°C)下测定的密度和声速分别为1040 ± 40 kg m⁻³和1545 ± 44 m s⁻¹。平均热导率为0.532 W m⁻¹ K⁻¹。TMM的T1和T2值分别为207 ± 4和36.2 ± 0.4 ms。我们设想将我们的模型用于基于MRI的温度测定中的治疗计划和质量保证。我们的模型制备方法可以很容易地扩展到其他热疗技术。

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