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Imaging melanin cancer growth in-vivo using raster-scan optoacoustic mesoscopy (RSOM) at 50 MHz and 100 MHz

机译:使用50兆赫兹和100兆赫兹的光栅扫描光声显微术(RSOM)成像体内黑色素癌生长

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We used raster-scan optoacoustic mesoscopy (RSOM) at 50 MHz, and at 100 MHz, to monitor tumor growth, and tumor angiogenesis, which is a central hallmark of cancer, in-vivo. In this study we compared the performance, and the effect of the 50 MHz, and the 100 MHz frequencies on the quality of the final image. The system is based on a reflection-mode implementation of RSOM. The detectors used are custom made, ultrawideband, and spherically focused. The use of such detectors enables light coupling from the same side as the detector, thus reflection-mode. Light is in turn coupled using a fiber bundle, and the detector is raster scanned in the xy-plane. Subsequently, to retrieve small features, the raw data are reconstructed using a multi-bandwidth, beamforming reconstruction algorithm. Comparison of the system performance at the different frequencies shows as expected a higher resolution in case of the 100 MHz detector compared to the 50 MHz. On the other hand the 50 MHz has a better SNR, can detect features from deeper layers, and has higher angular acceptance. Based on these characteristics the 50 MHz detector was mostly used. After comparing the performance we monitored the growth of B16F10 cells, melanin tumor, over the course of 9 days. We see correspondence between the optoacoustic measurements and the cryoslice validations. Additionally, in areas close to the tumor we see sprouting of new vessels, starting at day 4-5, which corresponds to tumor angiogenesis.
机译:我们在50 MHz和100 MHz频率下使用光栅扫描光声内镜(RSOM)来监测肿瘤生长和肿瘤血管生成,这是体内癌症的主要特征。在这项研究中,我们比较了性能以及50 MHz和100 MHz频率对最终图像质量的影响。该系统基于RSOM的反射模式实现。所使用的检测器是定制的,超宽带的和球形聚焦的。使用这样的检测器使得能够从与检测器相同的一侧进行光耦合,从而实现反射模式。依次使用光纤束耦合光,并在xy平面上对检测器进行光栅扫描。随后,为了检索小的特征,使用多带宽波束成形重建算法重建原始数据。对不同频率下系统性能的比较显示,与50 MHz相比,100 MHz检测器的分辨率更高。另一方面,50 MHz具有更好的SNR,可以检测更深层的特征,并且具有更高的角度接受度。基于这些特性,大多数使用50 MHz检测器。比较性能后,我们在9天的时间内监测了B16F10细胞(黑色素瘤)的生长。我们看到了光声测量与冷冻切片验证之间的对应关系。此外,在靠近肿瘤的区域,我们看到新血管从4-5天开始萌芽,这与肿瘤血管生成相对应。

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