IEEE Trans Biomed Eng. 2023 Jan;70(1):175-181. doi: 10.1109/TBME.2022.3187153. Epub 2022 Dec 26.
Microwave-induced thermoacoustic (TA) imaging (MTAI), which exploits dielectric contrasts to provide images with high contrast and spatial resolution, holds the potential to serve as an additional means of clinical diagnosis and treatment. However, conventional MTAI usually uses large and heavy metal antennas to radiate pulsed microwaves, making it challenging to image different target areas flexibly. In this work, we presented the design and evaluation of a portable microwave-acoustic coaxial TA probe (51 mm × 63 mm × 138 mm) that can flexibly image the region of interest. The TA probe contains two miniaturized symmetrically distributed Vivaldi antennas (7.5 g) and a 128-element linear ultrasonic transducer. By adjusting the geometry of the antennas and the ultrasonic transducer, the TA probe's acoustic field and microwave field can be designed to be coaxial, which helps achieve homogeneous microwave illumination and high-sensitivity ultrasonic detection. The practical feasibility of the proposed probe was tested on an in vitro ewe breast and a healthy volunteer. The results demonstrate that the MTAI system with the proposed TA probe can visualize the anatomical structure of the breast tumor in ewe breast and a healthy volunteer breast with resolutions in hundreds of microns (transverse: 910 μm, axial: 780 μm) and an excellent signal-to-noise ratio can be obtained in deep adipose tissue (10 dB in 6 cm fat). The miniaturized portable TA probe takes a solid step forward in translating MTAI technology to clinical breast tumor diagnosis.
微波诱导热声(TA)成像(MTAI)利用介电对比度提供高对比度和空间分辨率的图像,有可能成为临床诊断和治疗的另一种手段。然而,传统的 MTAI 通常使用大型和重型金属天线辐射脉冲微波,因此难以灵活地对不同的目标区域进行成像。在这项工作中,我们设计并评估了一种便携式微波声同轴 TA 探头(51mm×63mm×138mm),该探头可以灵活地对感兴趣的区域进行成像。TA 探头包含两个小型化的对称分布的 Vivaldi 天线(7.5g)和一个 128 元件线性超声换能器。通过调整天线和超声换能器的几何形状,可以设计 TA 探头的声场和微波场同轴,有助于实现均匀的微波照射和高灵敏度的超声检测。在体外绵羊乳房和健康志愿者身上对所提出的探头的实际可行性进行了测试。结果表明,使用所提出的 TA 探头的 MTAI 系统可以可视化绵羊乳房和健康志愿者乳房中乳房肿瘤的解剖结构,分辨率在数百微米(横向:910μm,轴向:780μm),并且可以在深层脂肪组织中获得优异的信噪比(6cm 脂肪时为 10dB)。这种小型化的便携式 TA 探头在将 MTAI 技术转化为临床乳房肿瘤诊断方面迈出了坚实的一步。