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Design and Ex Vivo Evaluation of a 3D High Intensity Focused Ultrasound System for Tumor Treatment with Tissue Ablation

机译:3D高强度聚焦超声系统的设计与例外评价肿瘤治疗组织消融

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This paper describes the design, construction, and evaluation of a three dimensional (3D) ultrasound system to be used to treat different kinds of tumors using high intensity focused ultrasound (H1FU). The system consists of two major parts: an ultrasonic therapy part and a treatment planning part. The ultrasonic therapy part consists of an ultrasound bowl shaped transducer (made from Lead Zirconate Titanate (PZT) and has a resonance frequency of 0.5 MHz), a lossless electrical impedance matching circuit built to ensure maximum electrical power delivery to the transducer, a function generator, and a high power amplifier. The ultrasonic therapy part is responsible for generating a high-power focus at the location of the geometric focus of the bowl shaped ultrasound transducer. The treatment planning part consists of three stepper motors (responsible for moving the setup in the x- y- and z-directions), three high-voltage high-current dar-lington arrays (to supply the stepper motors with the required voltages and currents), and a C# software to perform the treatment planning. To assess the movement of the treatment planner, each of the three stepper motors was moved forward and backward from end to end. Then the treatment planner was successfully driven to cover cubes of dimensions of 1 x 1 x 1 cm~3, 2x2x2 cm~3, 4x4x4 cm~3, and 8x8x8 cm~3, with step sizes 0.5, 1, 2, and 4 mm, respectively. Ex vivo experiments using fresh bovine liver were performed and indicated the capability of the system to generate lesions both on- and off-axis. Lesions at different depths were successfully generated at the intended locations. Temperature distributions were recorded both inside and outside the lesion and indicated that the temperature reached about 60°C inside the lesion and remained below 39°C outside it.
机译:本文描述的设计,建造和三维(3D)超声系统的评估可以用于治疗不同种类的使用高强度的肿瘤的聚焦超声(H1FU)。该系统由两个主要部分组成:超声波治疗部分和治疗计划的一部分。超声波治疗部分由超声碗状换能器(由锆钛酸铅(PZT制成),并且具有0.5兆赫的共振频率),内置以确保最大的电功率传送至换能器无损电阻抗匹配电路中,函数发生器和高功率放大器。超声波治疗部分负责在碗状超声换能器的几何焦点的位置产生一个高功率焦点。治疗计划部分由三个步进电机(负责在x y和z方向上移动设置),三个高压大电流DAR-lington阵列(与所需要的电压和电流供给步进电动机的)和C#软件来执行治疗计划。为了评估处置规划器的运动,每三个步进电机的从端到端向前和向后移动。然后,处置规划器被成功地驱动至1×1×1厘米〜3,2x2x2的厘米〜3,型4x4x4厘米〜3,和8x8x8厘米〜3个维度的盖立方体,与步骤大小0.5,1,2,和4mm , 分别。使用新鲜牛肝体外实验进行和所指示的系统的能力,以产生病灶既轴上和偏轴。在不同深度的病变在预定位置已成功生成。的温度分布,记录内外病变和表明温度病灶内约60℃下达到与外它保持低于39℃。

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