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Performance characterization of an integrated ultrasound, photoacoustic, and thermoacoustic imaging system

机译:集成超声,光声和热声成像系统的性能表征

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摘要

We developed a novel trimodality system for human breast imaging by integrating photoacoustic (PA) and thermoacoustic (TA) imaging techniques into a modified commercial ultrasound scanner. Because light was delivered with an optical assembly placed within the microwave antenna, no mechanical switching between the microwave and laser sources was needed. Laser and microwave excitation pulses were interleaved to enable PA and TA data acquisition in parallel at a rate of 10 frames per second. A tube (7 mm inner diameter) filled with oxygenated bovine blood or 30 mM methylene blue dye was successfully detected in PA images in chicken breast tissue at depths of 6.6 and 8.4 cm, respectively, for the first time. The SNRs at these depths reached ∼24 and ∼15  dB, respectively, by averaging 200 signal acquisitions. Similarly, a tube (13 mm inner diameter) filled with saline solution (0.9%) at a depth of 4.4 cm in porcine fat tissue was successfully detected in TA images. The PA axial, lateral, and elevational resolutions were 640 μm, 720 μm, and 3.5 mm, respectively, suitable for breast cancer imaging. A PA noise-equivalent sensitivity to methylene blue solution of 260 nM was achieved in chicken tissue at a depth of 3.4 cm.
机译:通过将光声(PA)和热声(TA)成像技术集成到改进的商用超声扫描仪中,我们开发了一种用于人乳房成像的新型三峰系统。由于光是通过放置在微波天线内的光学组件传递的,因此不需要在微波和激光源之间进行机械切换。激光和微波激励脉冲交错,以每秒10帧的速率并行采集PA和TA数据。首次在鸡胸组织的PA图像中分别成功地检测到充满氧合牛血或30 mM亚甲蓝染料的管(内径7 mm),深度为6.6 cm和8.4 cm。通过平均200个信号采集,在这些深度处的SNR分别达到〜24和〜15 dB。类似地,在TA图像中成功检测到在猪脂肪组织中以4.4 cm的深度充满盐溶液(0.9%)的管(内径13 mm)。 PA的轴向,横向和仰角分辨率分别为640μm,720μm和3.5 mm,适用于乳腺癌成像。在3.4厘米深的鸡组织中,PA噪声对亚甲蓝溶液的等效灵敏度为260 nM。

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