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A HIFU excitation scheme to reduce switching-induced grating lobes and hard tissue interface heating

机译:HIFU激励方案可减少开关引起的光栅波瓣和硬组织界面发热

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Arbitrary excitation waveforms are desirable in HIFU array systems. In trans-skull therapy this is necessary to compensate for phase aberrations and achieve even heating of the skull. To facilitate this, wave form generators and large, costly class A RF amplifiers are used. High element counts are commonplace and so the portability of these systems is greatly reduced. We propose using switched mode excitation to miniaturise these systems. Unfortunately, the curvature of therapeutic arrays and the inherent harmonic content of switched circuits induces harmful grating lobes into the therapeutic field of view. The advent of higher bandwidth transducers makes harmonic cancellation imperative. 3rd harmonic reduction (3HR) PWM can be used to negate these grating lobes but cannot implement amplitude control. We propose the use of the HRPWM technique to negate switching induced grating lobes and modulate output power to reduce hard tissue heating.
机译:在HIFU阵列系统中,期望激励波形是任意的。在跨颅治疗中,这是补偿相差并实现颅骨均匀加热所必需的。为此,使用了波形发生器和大型,昂贵的A类RF放大器。高元素数很常见,因此这些系统的可移植性大大降低了。我们建议使用开关模式激励来使这些系统小型化。不幸的是,治疗阵列的曲率和开关电路固有的谐波含量将有害的光栅波瓣引入治疗视野。更高带宽的换能器的出现使谐波消除势在必行。三次谐波降低(3HR)PWM可用于消除这些光栅波瓣,但无法实现幅度控制。我们建议使用HRPWM技术来消除开关引起的光栅波瓣并调节输出功率以减少硬组织发热。

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