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Real-Time Simultaneous Therapy and Imaging for Noninvasive HIFU Surgery of Prostate Tissue

机译:术前同时治疗和成像前列腺组织非侵入性HIFU手术

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To achieve real-time simultaneous therapy and imaging for noninvasive HIFU (High Intensity Focused Ultrasound) surgery, reflected HIFU signals received by an imaging transducer should be removed. In this paper, we demonstrate that these interference signals can be significantly reduced in the formed B-mode image by implementing coded excitation and notch filtering on reception. To show the feasibility of this technique, we also propose a design of an integrated image/HIFU phased array transducer for treatment of malignant prostate tissues. A 14.4 mm × 28 mm prototype integrated image/HIFU transducer was built which consists of three single elements as preliminary experiments. When HIFU and imaging transducers were activated simultaneously, high amplitude 4 MHz and 8 MHz signals were detected by the 6 MHz imaging transducer. After notch filtering, one scanline produced by the 13-bit Barker code excitation with 2 cycles or 3 cycles per bit displayed a sidelobe level less than -40 dB, while the conventional 2-cycle sinusoidal pulse excitation produced a maximum sidelobe level of -30 dB. These results agree with those obtained with a Field II simulation.
机译:为实现实时同时治疗和对非侵入性HIFU(高强度聚焦超声)手术的成像,应去除由成像换能器接收的反射HIFU信号。在本文中,我们证明通过在接收上实现编码的激励和凹口滤波,这些干扰信号可以在形成的B模式图像中显着降低。为了表明该技术的可行性,我们还提出了一种设计的集成图像/ HIFU相控阵换能器,用于治疗恶性前列腺组织。 14.4毫米×28毫米原型集成图像/ HIFU传感器,由三个单一元素组成,作为初步实验。当同时激活HIFU和成像传感器时,通过6MHz成像换能器检测高幅度4MHz和8MHz信号。在陷阱过滤之后,由13位Barker码激发产生的一个扫描线,每位具有2个循环或3个周期,显示侧链电平小于-40 dB,而传统的2周期正弦脉冲激励产生了最大的-30的最大侧链水平D b。这些结果与使用田间模拟获得的结果一致。

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