Ultrasonic temperature monitoring in tissue phantoms by locally resolved measurement of longitudinal and transverse wave speed

M. Wolf, L. Timmermann, A. Juhrig, K. Rath, Emanuel Leipner, F. Krujatz, E. Kühnicke
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引用次数: 2

Abstract

To optimize hyperthermia in cancer therapy, a monitoring of temperature and tissue properties inside the tumor and in the surrounding tissue is necessary during the therapy. As the use of computed tomography (CT) or Magnetic resonance imaging (MRI) during the operation is very expensive, ultrasonic measurements are a very good alternative.This contribution presents a method to measure the longitudinal wave speed spatially resolved by analyzing the ultrasonic signals reflected from small scatterers in a tissue phantom. Thus no additional reflectors at known positions are necessary. The measurements are carried out using a 10 MHz prefocused annular-array and the recorded signals are focused synthetically. Measurements are carried out on a tissue phantom synthesized by polyacrylamide. Algae are added to gain natural scattering in the phantom. The capabilities of the method are demonstrated by monitoring the temperature distribution during local heating of a phantom. Additionally, the reachable accuracy as well as reachable temporal and local resolution are discussed. Due to increasing heat supply denaturation occurs, a second measurand is necessary. Therefore, the transverse wave speed is determined by transient elastography.To optimize hyperthermia in cancer therapy, a monitoring of temperature and tissue properties inside the tumor and in the surrounding tissue is necessary during the therapy. As the use of computed tomography (CT) or Magnetic resonance imaging (MRI) during the operation is very expensive, ultrasonic measurements are a very good alternative.This contribution presents a method to measure the longitudinal wave speed spatially resolved by analyzing the ultrasonic signals reflected from small scatterers in a tissue phantom. Thus no additional reflectors at known positions are necessary. The measurements are carried out using a 10 MHz prefocused annular-array and the recorded signals are focused synthetically. Measurements are carried out on a tissue phantom synthesized by polyacrylamide. Algae are added to gain natural scattering in the phantom. The capabilities of the method are demonstrated by monitoring the temperature distribution during local heating of a phantom. Additionally, the reachable accuracy as we...
用局部分辨测量纵波和横波速度的超声温度监测组织幻象
为了在癌症治疗中优化热疗,在治疗过程中监测肿瘤内部和周围组织的温度和组织特性是必要的。由于在手术过程中使用计算机断层扫描(CT)或磁共振成像(MRI)非常昂贵,超声波测量是一个很好的选择。本文提出了一种通过分析组织体中小散射体反射的超声信号来测量空间分辨纵波速度的方法。因此,在已知位置不需要额外的反射器。采用10mhz预聚焦环形阵列进行测量,并对记录的信号进行综合聚焦。测量是在由聚丙烯酰胺合成的组织模体上进行的。添加海藻是为了在幻影中获得自然散射。该方法的能力是通过监测局部加热时的温度分布来证明的。此外,还讨论了可达精度、可达时间分辨率和局部分辨率。由于增加的热量供应,变性发生,第二次措施是必要的。因此,横波速度由瞬态弹性学决定。为了在癌症治疗中优化热疗,在治疗过程中监测肿瘤内部和周围组织的温度和组织特性是必要的。由于在手术过程中使用计算机断层扫描(CT)或磁共振成像(MRI)非常昂贵,超声波测量是一个很好的选择。本文提出了一种通过分析组织体中小散射体反射的超声信号来测量空间分辨纵波速度的方法。因此,在已知位置不需要额外的反射器。采用10mhz预聚焦环形阵列进行测量,并对记录的信号进行综合聚焦。测量是在由聚丙烯酰胺合成的组织模体上进行的。添加海藻是为了在幻影中获得自然散射。该方法的能力是通过监测局部加热时的温度分布来证明的。此外,当我们…
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