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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >HIFU Power Monitoring Using Combined Instantaneous Current and Voltage Measurement
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HIFU Power Monitoring Using Combined Instantaneous Current and Voltage Measurement

机译:HIFU功率监控,结合瞬时电流和电压测量

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During high-intensity focused ultrasound (HIFU) therapy, it is important that the electrical power delivered to the transducer is monitored to avoid underexposure or overexposure, ensure patient safety, and to protect the transducer itself. Due to ease of measurement, the transducer's potential difference may be as an indicator of power delivery. However, even when a transducer's complex impedance is well characterized at small amplitudes and matching networks are used, voltage-only (VO) monitoring cannot account for the presence of drive waveform distortion, changes to the acoustic path, or damage to the transducer. In this study, combined current and voltage (CCV) is proposed as a magnetic resonance imaging (MRI)-compatible, miniature alternative to bidirectional power couplers, which is compatible with switched amplifiers. For CCV power measurement, current probe data were multiplied by the voltage waveform and integrated in the frequency domain. Transducer efficiency was taken into account to predict acoustic power. The technique was validated with a radiation force balance (RFB). When using a typical HIFU transducer and amplifier, VO predictions and acoustic power had a maximum difference of 20%. However, under the same conditions, CCV only had a maximum difference of 5%. The technique was applied to several lesioning experiments and it was shown that when VO was used as a control between two amplifiers, there was up to a 38% difference in lesion area. This greatly reduced to a maximum of 5% once CCV was used instead. These results demonstrate that CCV can accurately predict real-time electrical power delivery, leading to safer HIFU treatments.
机译:在高强度聚焦超声(HIFU)治疗期间,重要的是,监视输送到换能器的电能,以避免暴露不足或过度暴露,确保患者安全并保护换能器本身。由于易于测量,换能器的电势差可以作为功率传输的指标。但是,即使在小振幅下很好地表征了换能器的复数阻抗并使用了匹配网络的情况下,纯电压(VO)监控也无法解决驱动波形失真,声路变化或换能器损坏的问题。在这项研究中,提出了电流和电压组合(CCV)作为与磁共振成像(MRI)兼容的微型替代双向功率耦合器的方法,该双向功率耦合器与开关放大器兼容。对于CCV功率测量,将电流探头数据乘以电压波形,并积分到频域中。考虑了换能器效率以预测声功率。该技术已通过辐射力平衡(RFB)进行了验证。当使用典型的HIFU换能器和放大器时,VO预测和声功率的最大差异为20%。但是,在相同条件下,CCV的最大差异仅为5%。该技术已应用于多个病灶实验,结果表明,当VO用作两个放大器之间的对照时,病灶面积的差异高达38%。取而代之的是,将CCV大大降低到5%。这些结果表明,CCV可以准确地预测实时电力输送,从而导致更安全的HIFU治疗。

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