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Three-dimensional optoacoustic mesoscopy of the tumor heterogeneity in vivo using high depth-to-resolution multispectral optoacoustic tomography

机译:使用高深度分辨率多光谱光声层析成像的体内肿瘤异质性的三维光声介观

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Multispectral optoacoustic mesoscopy (MSOM) has been recently introduced for cancer imaging, it has the potential for high resolution imaging of cancer development in vivo, at depths beyond the diffusion limit. Based on spectral features, optoacoustic imaging is capable of visualizing angiogenesis and imaging cancer heterogeneity of malignant tumors through endogenous hemoglobin. However, high-resolution structural and functional imaging of whole tumor mass is limited by modest penetration and image quality, due to the insufficient capability of ultrasound detectors and the two-dimensional scan geometry. In this study, we introduce a novel multi-spectral optoacoustic mesoscopy (MSOM) for imaging subcutaneous or orthotopic tumors implanted in lab mice, with the high-frequency ultrasound linear array and a conical scanning geometry. Detailed volumetric images of vasculature and oxygen saturation of tissue in the entire tumors are obtained in vivo, at depths up to 10 mm with the desirable spatial resolutions approaching 70um. This unprecedented performance enables the visualization of vasculature morphology and hypoxia conditions has been verified with ex vivo studies. These findings demonstrate the potential of MSOM for preclinical oncological studies in deep solid tumors to facilitate the characterization of tumor's angiogenesis and the evaluation of treatment strategies.
机译:最近已经引入了多光谱光声内视镜(MSOM)来进行癌症成像,它具有在体内癌症发展的高分辨率成像的潜力,其深度超过了扩散极限。基于光谱特征,光声成像能够通过内源性血红蛋白可视化血管生成并成像恶性肿瘤的癌症异质性。然而,由于超声检测器的能力不足和二维扫描几何形状的原因,整个肿瘤块的高分辨率结构和功能成像受到适度的穿透力和图像质量的限制。在这项研究中,我们介绍了一种新颖的多光谱光声内窥镜(MSOM),用于对植入实验室小鼠的皮下或原位肿瘤进行成像,具有高频超声线性阵列和锥形扫描几何形状。在体内获得了整个肿瘤中血管组织和氧饱和度的详细体积图像,深度达10 mm,理想的空间分辨率接近70um。这种前所未有的性能使可视化的脉管系统形态和缺氧状况已通过离体研究得到证实。这些发现证明了MSOM在深层实体瘤中进行临床前肿瘤学研究的潜力,以促进肿瘤血管生成的表征和治疗策略的评估。

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