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Development of a Spherical Ultrasound Transducer for Transcranial Low-Dose Ultrasound Hyperthermia Used in Brain Tumor Nanodrug Delivery

机译:用于脑肿瘤纳米树脂递送的经颅低剂量超声热疗的球形超声换能器的开发

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Previous studies showed that low-dose focused ultrasound hyperthermia (UH) could enhance the delivery and therapeutic efficacy of nanodrug for brain metastasis of breast cancer. In this study, our purpose is to design an ultrasound transducer that can be used for clinical application for brain tumor nanodrug delivery. Computer simulation has been used to calculate the pressure field, temperature distribution and thermal dose in the brain for different parameters of a spherical array ultrasound transducer. An ultrasound transducer with 112 disc elements (1 MHz, 2 cm in diameter) was constructed and its heating ability was characterized using a skull phantom filled with hydrogel. The simulation results showed that the position of peak pressure was slightly offset when the transducer was mechanically moved 3 cm away from the center point in all directions. There was no significant side-lobe developed when the transducer was moved away from the center 2 cm. Temperature distribution showed that the heating zone was an ellipsoid with temperature higher than 42 °C for a maximum intensity of 121 W/cm~2. Phantom experiment showed that the 42 °C color-changeable hydrogel would turn to be white at the focal point when the transducer was moved 2 cm in all directions with an electrical power 55 W. A spherical ultrasound phased array was developed and characterized, and the results showed that this ultrasound transducer has the potential used in transcranial short-time ultrasound hyperthermia for brain tumor nanodrug delivery.
机译:以前的研究表明,低剂量聚焦的超声热疗(UH)可以增强纳米树脂对乳腺癌脑转移的递送和治疗疗效。在这项研究中,我们的目的是设计一种超声换能器,可用于脑肿瘤纳米树脂递送的临床应用。计算机仿真已用于计算脑中脑中的压力场,温度分布和热剂量,用于球形阵列超声换能器的不同参数。构建具有112个盘元件(直径为1MHz,2cm)的超声换能器,并使用填充有水凝胶的颅骨幻影表征其加热能力。模拟结果表明,当换能器机械地从中心点移动3厘米时,峰值压力的位置略微偏移。当换能器远离中心2厘米移动时,没有显着的侧瓣。温度分布显示,加热区是温度高于42℃的椭球,最大强度为121W / cm〜2。 Phantom实验表明,当换能器在具有电源55W的所有方向上移动2cm时,42°C色变化的水凝胶将在焦点处变为白色。形成和表征球形超声相控阵,并且结果表明,该超声换能器具有用于脑肿瘤纳米腔内递送的经颅短次超声热疗的潜力。

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