Maeva Elena, Severin Fedar, Miyasaka Chiaki, Tittmann Bernhard R, Maev Roman Gr
Physics Department, University of Windsor, Windsor, Ontario, Canada.
IEEE Trans Ultrason Ferroelectr Freq Control. 2009 Jul;56(7):1352-8. doi: 10.1109/TUFFC.2009.1191.
Up to now, biomedical imaging with ultrasound for observing a cellular tissue structure has been limited to very thinly sliced tissue at very high ultrasonic frequencies, i.e., 1 GHz. In this paper, we present the results of a systematic study to use a 150 to 200 MHz frequency range for thickly sliced biological tissue. A mechanical scanning reflection acoustic microscope (SAM) was used for obtaining horizontal cross-sectional images (C-scans) showing cellular structures. In the study, sectioned specimens of human breast cancer and tissues from the small intestine were prepared and examined. Some accessories for biomedical application were integrated into our SAM (Sonix HS-1000 and Olympus UH-3), which operated in pulse-wave and tone-burst wave modes, respectively. We found that the frequency 100 to 200 MHz provides optimal balance between resolution and penetration depth for examining the thickly sliced specimens. The images obtained with the lens focused at different depths revealed cellular structures whose morphology was very similar to that seen in the thinly sectioned specimens with optical and scanning acoustic microscopy. The SAM operation in the pulse-echo mode permits the imaging of tissue structure at the surface, and it also opens up the potential for attenuation imaging representing reflection from the substrate behind the thick specimen. We present such images of breast cancer proving the method's applicability to overall tumor detection. SAM with a high-frequency tone-burst ultrasonic wave reveals details of tissue structure, and both methods may serve as additional diagnostic tools in a hospital environment.
到目前为止,用于观察细胞组织结构的超声生物医学成像仅限于在非常高的超声频率(即1吉赫兹)下对非常薄的组织切片进行成像。在本文中,我们展示了一项系统研究的结果,该研究使用150至200兆赫兹的频率范围对厚组织切片的生物组织进行成像。使用机械扫描反射声学显微镜(SAM)获取显示细胞结构的水平横截面图像(C扫描)。在该研究中,制备并检查了人类乳腺癌切片标本和小肠组织。一些用于生物医学应用的附件被集成到我们的SAM(Sonix HS - 1000和Olympus UH - 3)中,它们分别以脉冲波和短脉冲波模式运行。我们发现,100至200兆赫兹的频率在检查厚组织切片时,在分辨率和穿透深度之间提供了最佳平衡。用聚焦在不同深度的透镜获得的图像显示出细胞结构,其形态与在光学和扫描声学显微镜下观察到的薄切片标本中的形态非常相似。脉冲回波模式下的SAM操作允许对表面的组织结构进行成像,并且它还为衰减成像开辟了潜力,衰减成像表示来自厚标本后面基质的反射。我们展示了乳腺癌的此类图像,证明了该方法在整体肿瘤检测中的适用性。具有高频短脉冲超声波的SAM揭示了组织结构的细节,这两种方法都可以作为医院环境中的额外诊断工具。