首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Flexible integration of high-imaging- resolution and high-power arrays for ultrasound-induced thermal strain imaging (US-TSI)
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Flexible integration of high-imaging- resolution and high-power arrays for ultrasound-induced thermal strain imaging (US-TSI)

机译:高成像分辨率和高功率阵列的灵活集成,用于超声诱发的热应变成像(US-TSI)

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摘要

Ultrasound-induced thermal strain imaging (USTSI) for carotid artery plaque detection requires both high imaging resolution (ȦA;100 ;C;m) and sufficient US-induced heating to elevate the tissue temperature (-C;1 0;C to 3 0;C within 1 to 3 cardiac cycles) to produce a noticeable change in sound speed in the targeted tissues. Because the optimization of both imaging and heating in a monolithic array design is particularly expensive and inflexible, a new integrated approach is presented which utilizes independent ultrasound arrays to meet the requirements for this particular application. This work demonstrates a new approach in dual-array construction. A 3-D printed manifold was built to support both a high-resolution 20 MHz commercial imaging array and 6 custom heating elements operating in the 3.5 to 4 MHz range. For the application of US-TSI in carotid plaque characterization, the tissue target site is 20 to 30 mm deep, with a typical target volume of 2 mm (elevation) ?? 8 mm (azimuthal) ?? 5 mm (depth). The custom heating array performance was fully characterized for two design variants (flat and spherical apertures), and can easily deliver 30 W of total acoustic power to produce intensities greater than 15 W/cm2 in the tissue target region.
机译:用于颈动脉斑块检测的超声诱导热应变成像(USTSI)既需要高成像分辨率(ȦA; 100; C; m),又需要足够的US诱导加热以提高组织温度(-C; 1 0; C至3 0 ; C在1至3个心动周期内)在目标组织中产生明显的声速变化。由于单片阵列设计中成像和加热的优化特别昂贵且不灵活,因此提出了一种新的集成方法,该方法利用独立的超声阵列来满足此特定应用的要求。这项工作演示了双阵列构建中的一种新方法。构建了3D打印歧管,以支持高分辨率20 MHz商业成像阵列和6个在3.5至4 MHz范围内运行的定制加热元件。对于US-TSI在颈动脉斑块表征中的应用,组织目标部位深20至30 mm,典型目标体积为2 mm(高程)。 8毫米(方位角) 5毫米(深度)。自定义加热阵列的性能已针对两种设计变型(平坦和球形孔)进行了充分表征,并且可以轻松提供30 W的总声功率,从而在组织目标中产生大于15 W / cm 2 的强度区域。

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