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Non-invasive in-vivo 3-D imaging of small animals using spatially filtered enhanced truncated-correlation photothermal coherence tomography

机译:使用空间过滤增强截断的截断相干性断层扫描的小动物的非侵入式体内3-D成像

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We present enhanced truncated-correlation phototothermal coherence tomography (eTC-PCT) for non-invasive three-dimensional imaging of small animals. Tumor detection is reported in a mouse thigh by injecting cancerous cells in the thigh followed by eTC-PCT imaging. Detection of the tumor 3?days after injection may lead to potential for using the eTC-PCT method for cancer treatment studies. eTC-PCT was also applied successfully to non-invasive in-vivo mouse brain structural imaging. A unique spatial-gradient-gate adaptive filter was introduced in a scanned mode along the (x,y) coordinates of camera images from different sub-cranial depths, revealing absorber true spatial extent from diffusive photothermal images and restoring pre-diffusion lateral image resolution beyond the Rayleigh criterion limit in diffusion-wave imaging science. The spatial resolution and contrast enhancement demonstrated in photothermal in-vivo and ex-vivo images of the mouse brain revealed not only vascular structures but also other brain structures, such as the brain hemispheres, cerebellum, and olfactory lobes.
机译:我们为小动物的非侵入性三维成像提出了增强的截断表光热相干断层扫描(ETC-PCT)。通过在大腿中注射癌细胞后,在小鼠大腿中据报道肿瘤检测,然后再摄像。检测肿瘤3?注射后的天数可能导致使用ETC-PCT方法进行癌症治疗研究的可能性。 ETC-PCT也成功应用于非侵入性体内小鼠脑结构成像。沿着来自不同子颅底的相机图像的(x,y)坐标以扫描模式引入了独特的空间梯度栅自适应滤波器,从而从扩散光热图像揭示了吸收器真正的空间程度并恢复预扩散横向图像分辨率超出扩散波成像科学中的瑞利标准限制。在小鼠的光热in-Vivo和ex-体内图像中表现出的空间分辨率和对比度增强不仅揭示了血管结构,而且揭示了其他脑结构,例如脑半球,小脑和嗅裂片。

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