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首页> 外文期刊>Ultrasonics, Ferroelectrics and Frequency Control, IEEE Transactions on >Lithium niobate transducers for MRI-guided ultrasonic microsurgery
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Lithium niobate transducers for MRI-guided ultrasonic microsurgery

机译:MRI引导的超声显微手术用铌酸锂换能器

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摘要

Focused ultrasound surgery (FUS) is usually based on frequencies below 5 MHz-typically around 1 MHz. Although this allows good penetration into tissue, it limits the minimum lesion dimensions that can be achieved. In this study, we investigate devices to allow FUS at much higher frequencies, in principle, reducing the minimum lesion dimensions. Furthermore, FUS can produce deep-sub-millimeter demarcation between viable and necrosed tissue; high-frequency devices may allow this to be exploited in superficial applications which may include dermatology, ophthalmology, treatment of the vascular system, and treatment of early dysplasia in epithelial tissue. In this paper, we explain the methodology we have used to build high-frequency high-intensity transducers using Y-36u000b0;-cut lithium niobate. This material was chosen because its low losses give it the potential to allow very-highfrequency operation at harmonics of the fundamental operating frequency. A range of single-element transducers with center frequencies between 6.6 and 20.0 MHz were built and the transducers'' efficiency and acoustic power output were measured. A focused 6.6-MHz transducer was built with multiple elements operating together and tested using an ultrasound phantom and MRI scans. It was shown to increase phantom temperature by 32u000b0;C in a localized area of 2.5 x 3.4 mm in the plane of the MRI scan. Ex vivo tests on poultry tissue were also performed and shown to create lesions of similar dimensions. This study, therefore, demonstrates that it is feasible to produce high-frequency transducers capable of high-resolution FUS using lithium niobate.
机译:聚焦超声手术(FUS)通常基于低于5 MHz的频率,通常约为1 MHz。尽管这可以很好地渗透到组织中,但是它限制了可以实现的最小病变尺寸。在这项研究中,我们研究允许高频率FUS的设备,原则上减小了最小病变尺寸。此外,FUS可以在活组织和坏死组织之间产生亚毫米深的界限。高频设备可能允许将其用于浅表应用,包括皮肤病学,眼科,血管系统的治疗以及上皮组织的早期不典型增生。在本文中,我们解释了我们使用Y-36u000b0-切割铌酸锂构建高频高强度换能器的方法。选择这种材料是因为它的低损耗使其有可能在基本工作频率的谐波下以极高的频率工作。构建了一系列中心频率在6.6和20.0 MHz之间的单元素换能器,并测量了换能器的效率和声功率输出。建立了一个聚焦的6.6 MHz换能器,其中多个元件一起工作,并使用超声体模和MRI扫描进行了测试。结果表明,在MRI扫描平面上,在2.5 x 3.4 mm的局部区域中,模型温度增加了32u000b0; C。还对家禽组织进行了离体测试,结果显示会产生相似尺寸的病变。因此,这项研究表明,使用铌酸锂生产能够进行高分辨率FUS的高频换能器是可行的。

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