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Virtual Prototyping of a Catheter Transducer Array for Internal Hepatic Sonoporation

机译:导管传感器阵列的虚拟原型,用于内部肝超声波

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Sonoporation for targeted cancer chemotherapy in the liver with an external ultrasonic source is hampered by the ribs and fat surrounding the organ. Current therapies rely on array beam forming with sequential triggering of elements to spare the ribs. However, the peak negative pressures (PNPs) achieved in hepatic tumors are rather low and there is risk associated with high power ultrasound incident on the ribs. Here, we focus on the development of a 1-3 connectivity piezocomposite linear ultrasonic array that can be incorporated in an 11 Fr catheter to perform sonoporation of the liver from within a larger blood vessel. Issues encountered in the transducer design are mostly caused by the reduced dimensions of the catheter, which are inimical to the low frequency and high power therapeutic requirements. Thus, our approach to produce a transducer design is through a series of parametric sweeps of array parameters using finite element analysis. The output parameters of interest are PNP and beam forming to steer at more than 45° from normal. Two frequencies are considered: 1.5 MHz, set by the maximum physical transducer thickness, and 3.0 MHz, corresponding to the frequency of resonance of the contrast agents to carry the drugs. Piezoelectric materials of interest are ceramic (PZT-5H) and single crystal (PMN-29 % PT, 26 % PIN-PMN-32%PT). The parametric sweeps indicate that fewer pillars laterally per element, higher volume fraction (>0.68) and higher pillar aspect ratio (>0.42) achieve the lowest PNP in the load.
机译:对于肝脏的肝脏中针对性癌症化学疗法的声孔被肋骨周围的肋骨和脂肪阻碍了肝脏。目前的疗法依赖于阵列光束形成,连续触发元件以释放肋骨。然而,肝脏肿瘤中达到的峰值负压(PNP)相当低,并且存在与入射在肋骨上的高功率超声相关的风险。在这里,我们专注于开发1-3连接压电复合材料线性超声阵列,其可以结合在11BR导管中,以从较大的血管内执行肝脏的声孔。换能器设计中遇到的问题主要由导管的减小尺寸引起,这是低频和高功率治疗要求的尺寸。因此,我们生产换能器设计的方法是使用有限元分析通过一系列参数扫描阵列参数。感兴趣的输出参数是PNP和波束形成,以从正常的距离超过45°。考虑两个频率:1.5MHz,由最大物理传感器厚度和3.0MHz设置,对应于造影剂的共振频率携带药物。利益的压电材料是陶瓷(PZT-5H)和单晶(PMN-29%Pt,26%引脚PMN-32%Pt)。参数扫描表明,每个元素横向的柱子,较高的体积分数(> 0.68)和更高的柱纵横比(> 0.42)达到负荷中最低的PNP。

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