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首页> 外文期刊>Ultrasonics, Ferroelectrics and Frequency Control, IEEE Transactions on >Dual concentric-sectored HIFU transducer with phase-shifted ultrasound excitation for expanded necrotic region: a simulation study
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Dual concentric-sectored HIFU transducer with phase-shifted ultrasound excitation for expanded necrotic region: a simulation study

机译:具有扩展的坏死区域的相移超声激励的双同心扇形HIFU换能器:仿真研究

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摘要

In high-intensity focused ultrasound (HIFU) surgery, it is desirable to produce a large necrotic area per sonication for reduced treatment time. It has been well known that the conventional split-focus scheme capable of generating multiple foci can increase a necrotic region in the lateral or elevational direction. To treat a deep-seated target, it is necessary to generate an expanded necrotic region in the axial direction. In this paper, a novel sonication scheme capable of producing an expanded coagulated region in the both lateral and axial directions is presented. The proposed method can generate multi-focal spots in the lateral and axial directions by using a dual concentric-sectored (DCS) HIFU transducer based on phase-shifted ultrasound excitation. A sound field simulation was employed for this investigation. Four electrical signals with identical center frequencies and different phases activated the DCS transducer, composed of a disc and an annular element with a confocal point. Four 4-MHz ultrasound signals with different phases were transmitted to the target simultaneously, resulting in generation of dual-focal spots in the lateral and axial directions. The sound field simulation results showed that the ??6-dB lateral and axial beamwidths of the DCS transducer were maximally 79% and 91% broader than the single-element transducer. Subsequently, bio-heat transfer and thermal dose simulation results were matched to the sound field simulation. Hence, the DCS HIFU transducer combined with phase-shifted excitation may be a promising approach to treat a deep-seated target and to reduce treatment time for HIFU surgery.
机译:在高强度聚焦超声(HIFU)手术中,期望每次超声产生大的坏死面积以减少治疗时间。众所周知,能够产生多个病灶的常规分裂聚焦方案可以在横向或仰角方向上增加坏死区域。为了治疗根深蒂固的靶标,有必要在轴向方向上产生扩大的坏死区域。在本文中,提出了一种新型的超声处理方案,该方案能够在横向和轴向两个方向上产生一个扩大的凝结区域。通过使用基于相移超声激励的双同心扇形(DCS)HIFU换能器,该方法可以在横向和轴向方向上产生多焦点。声场模拟用于此研究。具有相同中心频率和不同相位的四个电信号激活了DCS换能器,该换能器由一个圆盘和一个具有共聚焦点的环形元件组成。同时将四个具有不同相位的4 MHz超声信号传输到目标,从而在横向和轴向方向上产生双焦点。声场仿真结果表明,DCS换能器的?? 6-dB横向和轴向波束宽度比单元件换能器最大宽79%和91%。随后,生物传热和热剂量模拟结果与声场模拟相匹配。因此,DCS HIFU换能器与相移激励相结合可能是一种有前途的方法,可用于治疗深度目标并减少HIFU手术的治疗时间。

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