Opt Lett. 2013 Nov 15;38(22):4671-4. doi: 10.1364/OL.38.004671.
Broadband optoacoustic waves generated by biological tissues excited with nanosecond laser pulses carry information corresponding to a wide range of geometrical scales. Typically, the frequency content present in the signals generated during optoacoustic imaging is much larger compared to the frequency band captured by common ultrasonic detectors, the latter typically acting as bandpass filters. To image optical absorption within structures ranging from entire organs to microvasculature in three dimensions, we implemented optoacoustic tomography with two ultrasound linear arrays featuring a center frequency of 6 and 24 MHz, respectively. In the present work, we show that complementary information on anatomical features could be retrieved and provide a better understanding on the localization of structures in the general anatomy by analyzing multi-bandwidth datasets acquired on a freshly excised kidney.
由纳秒激光脉冲激发的生物组织产生的宽带光声波携带与广泛几何尺度相对应的信息。通常,与普通超声探测器捕获的频带相比,光声成象过程中产生的信号的频率内容要大得多,后者通常作为带通滤波器。为了对从整个器官到三维微血管的结构中的光吸收进行成像,我们使用两个具有 6MHz 和 24MHz 中心频率的超声线性阵列实现了光声断层摄影术。在本工作中,我们通过分析在新鲜切除的肾脏上获得的多带宽数据集,表明可以检索关于解剖特征的补充信息,并更好地了解一般解剖结构中的定位。