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Pushing the Optical Imaging Limits of Cancer with Multi-Frequency-Band Raster-Scan Optoacoustic Mesoscopy (RSOM)

机译:借助多频带光栅扫描光声光谱术(RSOM)推动癌症的光学成像极限

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摘要

Angiogenesis is a central cancer hallmark, necessary for supporting tumor growth and metastasis. In vivo imaging of angiogenesis is commonly applied, to understand dynamic processes in cancer development and treatment strategies. However, most radiological modalities today assess angiogenesis based on indirect mechanisms, such as the rate of contrast enhancement after contrast agent administration. We studied the performance of raster-scan optoacoustic mesoscopy (RSOM), to directly reveal the vascular network supporting melanoma growth in vivo, at 50 MHz and 100 MHz, through several millimeters of tumor depth. After comparing the performance at each frequency, we recorded, for the first time, high-resolution images of melanin tumor vasculature development in vivo, over a period of several days. Image validation was provided by means of cryo-slice sections of the same tumor after sacrificing the mice. We show how optoacoustic (photoacoustic) mesoscopy reveals a potentially powerful look into tumor angiogenesis, with properties and features that are markedly different than other radiological modalities. This will facilitate a better understanding of tumor’s angiogenesis, and the evaluation of treatment strategies.
机译:血管生成是癌症的中心标志,是支持肿瘤生长和转移所必需的。通常使用体内血管生成成像来了解癌症发展和治疗策略中的动态过程。但是,当今大多数放射学方法都是基于间接机制来评估血管生成的,例如使用造影剂后造影剂的增强速率。我们研究了光栅扫描光声法(RSOM)的性能,以直接揭示支持黑色素瘤在体内(在50 MHz和100 MHz处)穿过几毫米肿瘤深度生长的血管网络。在比较每个频率下的性能后,我们首次记录了几天内体内黑色素肿瘤血管系统发育的高分辨率图像。牺牲小鼠后,通过相同肿瘤的冷冻切片切片提供图像验证。我们展示了光声(光声)肉眼镜检查如何揭示肿瘤血管生成的潜在强大功能,其特性和特征与其他放射学模式明显不同。这将有助于更好地了解肿瘤的血管生成,并评估治疗策略。

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