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本文引用的文献

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Imaging with concave large-aperture therapeutic ultrasound arrays using conventional synthetic-aperture beamforming.使用传统合成孔径波束形成技术的凹面大孔径治疗超声阵列成像。
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Efficient array design for sonotherapy.用于超声治疗的高效阵列设计。
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Multiple-focus ultrasound phased-array pattern synthesis: optimal driving-signal distributions for hyperthermia.多焦点超声相控阵方向图合成:热疗的最佳驱动信号分布
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A new approach for the design of ultrasono-therapy transducers.一种用于超声治疗换能器设计的新方法。
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Dual-mode ultrasound transducer for image-guided interstitial thermal therapy.用于图像引导间质热疗的双模超声换能器。
Ultrasound Med Biol. 2008 Apr;34(4):607-16. doi: 10.1016/j.ultrasmedbio.2007.09.011. Epub 2007 Dec 11.
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The evolving non-surgical ablation of breast cancer: MR guided focused ultrasound (MRgFUS).乳腺癌非手术消融技术的发展:磁共振引导聚焦超声(MRgFUS)。
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Dual-mode ultrasound phased arrays for image-guided surgery.用于图像引导手术的双模式超声相控阵
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Annular phased-array high-intensity focused ultrasound device for image-guided therapy of uterine fibroids.用于子宫肌瘤图像引导治疗的环形相控阵高强度聚焦超声设备。
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超声换能器和系统,用于实时同时进行前列腺组织的非侵入性手术的治疗和诊断。

Ultrasound transducer and system for real-time simultaneous therapy and diagnosis for noninvasive surgery of prostate tissue.

机构信息

NIH Resource Center for Medical Ultrasonic Transducer Technology, Department of Biomedical Engineering, University of Southern California, Los Angeles, CA, USA.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2009 Sep;56(9):1913-22. doi: 10.1109/TUFFC.2009.1267.

DOI:10.1109/TUFFC.2009.1267
PMID:19811994
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2760052/
Abstract

For noninvasive treatment of prostate tissue using high-intensity focused ultrasound this paper proposes a design of an integrated multifunctional confocal phased array (IMCPA) and a strategy to perform both imaging and therapy simultaneously with this array. IMCPA is composed of triple-row phased arrays: a 6-MHz array in the center row for imaging and two 4-MHz arrays in the outer rows for therapy. Different types of piezoelectric materials and stack configurations may be employed to maximize their respective functionalities, i.e., therapy and imaging. Fabrication complexity of IMCPA may be reduced by assembling already constructed arrays. In IMCPA, reflected therapeutic signals may corrupt the quality of imaging signals received by the center-row array. This problem can be overcome by implementing a coded excitation approach and/or a notch filter when B-mode images are formed during therapy. The 13-bit Barker code, which is a binary code with unique autocorrelation properties, is preferred for implementing coded excitation, although other codes may also be used. From both Field II simulation and experimental results, we verified whether these remedial approaches would make it feasible to simultaneously carry out imaging and therapy by IMCPA. The results showed that the 13-bit Barker code with 3 cycles per bit provided acceptable performances. The measured -6 dB and -20 dB range mainlobe widths were 0.52 mm and 0.91 mm, respectively, and a range sidelobe level was measured to be -48 dB regardless of whether a notch filter was used. The 13-bit Barker code with 2 cycles per bit yielded -6 dB and -20 dB range mainlobe widths of 0.39 mm and 0.67 mm. Its range sidelobe level was found to be -40 dB after notch filtering. These results indicate the feasibility of the proposed transducer design and system for real-time imaging during therapy.

摘要

本文针对高强度聚焦超声(HIFU)非侵入式治疗前列腺组织,提出了一种集成多功能共焦相控阵(IMCPA)的设计方案,并提出了一种利用该相控阵同时进行成像和治疗的策略。IMCPA 由三排相控阵组成:中心排的 6MHz 阵列为成像,外两排的 4MHz 阵列为治疗。可以采用不同类型的压电材料和堆叠结构来最大化各自的功能,即治疗和成像。通过组装已经构建的阵列,可以降低 IMCPA 的制造复杂性。在 IMCPA 中,反射的治疗信号可能会干扰中心排阵接收的成像信号的质量。在治疗过程中形成 B 模式图像时,可以通过实现编码激励方法和/或陷波滤波器来克服这个问题。13 位 Barker 码是一种具有独特自相关特性的二进制码,是实现编码激励的首选,尽管也可以使用其他码。通过 Field II 仿真和实验结果,我们验证了这些补救方法是否可以使 IMCPA 同时进行成像和治疗成为可能。结果表明,每比特 3 个周期的 13 位 Barker 码提供了可接受的性能。测量的-6dB 和-20dB 范围主瓣宽度分别为 0.52mm 和 0.91mm,并且无论是否使用陷波滤波器,测量的范围旁瓣电平均为-48dB。每比特 2 个周期的 13 位 Barker 码的-6dB 和-20dB 范围主瓣宽度分别为 0.39mm 和 0.67mm。在陷波滤波后,其范围旁瓣电平为-40dB。这些结果表明了所提出的换能器设计和治疗期间实时成像系统的可行性。