Washington University, Department of Biomedical Engineering, Optical Imaging Laboratory, St. Louis, MO 63130, USA.
J Biomed Opt. 2010 Nov-Dec;15(6):066018. doi: 10.1117/1.3505486.
We apply spectral hole burning (SHB)-aided detection in ultrasound-modulated optical tomography (UOT) to image optical heterogeneities in thick tissue-mimicking phantom samples and chicken breast tissue. The efficiency of SHB is improved by using a Tm(3+):YAG crystal of higher doping concentration (2.0-atomic%) and a double-pass pumping configuration, in which the pump beam is transmitted through the crystal twice to burn a deeper spectral hole with the available optical intensity. With the improved SHB-UOT system, we image absorbing, scattering, and phase objects that are embedded in the middle plane of a 30-mm-thick phantom sample. The imaging resolution was 0.5 mm in the lateral direction, as defined by the focal width of the ultrasonic transducer, and 1.5 mm in the axial direction, as determined by the ultrasonic burst length. We also image two absorbing objects embedded in a 32-mm-thick chicken breast sample. The results suggest that the improved SHB-UOT system is one step closer to the practical optical imaging application in biological and clinical studies.
我们在超声调制光学层析成像(UOT)中应用光谱烧孔(SHB)辅助检测,以对厚组织模拟体样本和鸡胸组织中的光学不均匀性进行成像。通过使用更高掺杂浓度(2.0 原子%)的 Tm(3+):YAG 晶体和双通泵浦配置,提高了 SHB 的效率,在该配置中,泵浦光束通过晶体传输两次,以利用可用的光强度烧蚀更深的光谱孔。利用改进的 SHB-UOT 系统,我们对嵌入在 30mm 厚的体模样本中间平面的吸收、散射和相位物体进行成像。成像分辨率在横向方向上为 0.5mm,由超声换能器的焦宽定义,在轴向方向上为 1.5mm,由超声脉冲长度决定。我们还对嵌入在 32mm 厚的鸡胸样本中的两个吸收物体进行成像。结果表明,改进的 SHB-UOT 系统更接近生物和临床研究中实际的光学成像应用。