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Fabry-Perot interference principle-based non-contact thermoacoustic imaging system for breast tumor screening

机译:用于乳腺肿瘤筛查的法布里 - 珀罗干扰原理基于非接触式热声成像系统

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摘要

Microwave-induced thermoacoustic imaging (MTAI) is a potential nonionizing candidate for breast tumor detection due to its high contrast of tissue dielectric absorption and high resolution of ultrasonography. However, conventional MTAI systems need to contact the imaging targets through the ultrasound-coupling medium for the efficient transmission of thermoacoustic signals. This is a major drawback for potential applications such as navigation of open surgeries, burns, and ulcer testing. In this paper, we report a Fabry-Perot (FP) interference principle-based non-contact thermoacoustic imaging system (NCTAIS). The system can infer the ultrasonic intensity by detecting the changes of the acoustically induced refractive index in the FP cavity. The miniaturized FP interferometer with a diameter of 5 mm achieves outstanding imaging sensitivity with a frequency response up to 1 MHz. An adaptive Stolt migration-based imaging reconstruction algorithm is proposed to solve the MTAI image distortion caused by the significant difference in sound velocity between air and a biological tissue. The NCTAIS is capable of achieving an axial resolution of 0.95 mm and a lateral resolution of 1.91 mm. The technical feasibility for breast tumor screening is validated with an in vitro simulated breast tumor model. The results demonstrate that the proposed NCTAIS offers high imaging sensitivity, high contrast, and deep imaging depth and will have more application scenarios than the conventional MTAI system, requiring the ultrasonic coupling medium to contact ultrasonic transducers.
机译:微波诱导的热声成像(MTAI)是乳腺肿瘤检测的潜在的候选候选者,由于其具有组织介电吸收和高分辨率的高分辨率的高度对比度。然而,传统的MTAI系统需要通过超声耦合介质接触成像目标,以便高效地传输热声信号。这是开放式手术,烧伤和溃疡检测的潜在应用的主要缺点。在本文中,我们报告了一个法布里 - 珀罗(FP)干扰原理的非接触式热声成像系统(NCTAIS)。通过检测FP腔中的声学感应折射率的变化,该系统可以推断超声波强度。直径为5mm的小型化FP干涉仪实现了出色的成像灵敏度,频率响应高达1 MHz。提出了一种自适应的迁移迁移的成像重建算法,以解决空气和生物组织之间的声速显着差异引起的MTAI图像变形。 NCTAI能够实现0.95mm的轴向分辨率,横向分辨率为1.91mm。用体外模拟乳腺肿瘤模型验证了乳腺肿瘤筛选的技术可行性。结果表明,所提出的NCTAIS提供高的成像灵敏度,高对比度和深度成像深度,并且将具有比传统MTAI系统更高的应用场景,需要超声波耦合介质接触超声换能器。

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  • 来源
    《Applied Physics Letters》 |2021年第14期|143701.1-143701.8|共8页
  • 作者单位

    MOE Key Laboratory of Laser Life Science and Institute of Laser Life Science College of Biophotonics South China Normal University Guangzhou 510631 China Guangdong Provincial Key Laboratory of Laser Life Science College of Biophotonics South China Normal University Guangzhou 510631 China;

    MOE Key Laboratory of Laser Life Science and Institute of Laser Life Science College of Biophotonics South China Normal University Guangzhou 510631 China Guangdong Provincial Key Laboratory of Laser Life Science College of Biophotonics South China Normal University Guangzhou 510631 China;

    MOE Key Laboratory of Laser Life Science and Institute of Laser Life Science College of Biophotonics South China Normal University Guangzhou 510631 China Guangdong Provincial Key Laboratory of Laser Life Science College of Biophotonics South China Normal University Guangzhou 510631 China;

    MOE Key Laboratory of Laser Life Science and Institute of Laser Life Science College of Biophotonics South China Normal University Guangzhou 510631 China Guangdong Provincial Key Laboratory of Laser Life Science College of Biophotonics South China Normal University Guangzhou 510631 China;

    MOE Key Laboratory of Laser Life Science and Institute of Laser Life Science College of Biophotonics South China Normal University Guangzhou 510631 China Guangdong Provincial Key Laboratory of Laser Life Science College of Biophotonics South China Normal University Guangzhou 510631 China;

    MOE Key Laboratory of Laser Life Science and Institute of Laser Life Science College of Biophotonics South China Normal University Guangzhou 510631 China Guangdong Provincial Key Laboratory of Laser Life Science College of Biophotonics South China Normal University Guangzhou 510631 China Guangzhou Key Laboratory of Spectral Analysis and Functional Probes College of Biophotonics South China Normal University Guangzhou 510631 China;

    MOE Key Laboratory of Laser Life Science and Institute of Laser Life Science College of Biophotonics South China Normal University Guangzhou 510631 China Guangdong Provincial Key Laboratory of Laser Life Science College of Biophotonics South China Normal University Guangzhou 510631 China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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  • 正文语种 eng
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