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首页> 外文期刊>Annals of nuclear medicine >High resolution SPECT imaging for visualization of intratumoral heterogeneity using a SPECT/CT scanner dedicated for small animal imaging.
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High resolution SPECT imaging for visualization of intratumoral heterogeneity using a SPECT/CT scanner dedicated for small animal imaging.

机译:高分辨率SPECT成像,使用专用于小动物成像的SPECT / CT扫描仪可视化瘤内异质性。

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Tumor interiors are never homogeneous and in vivo visualization of intratumoral heterogeneity would be an innovation that contributes to improved cancer therapy. But, conventional nuclear medicine tests have failed to visualize heterogeneity in vivo because of limited spatial resolution. Recently developed single photon emission computed tomographic (SPECT) scanners dedicated for small animal imaging are of interest due to their excellent spatial resolution of <1?mm, but few studies have focused on the evaluation of intratumoral heterogeneity. We investigated the optimal conditions related to high resolution imaging of heterogeneous tumor interiors using a small animal SPECT scanner.The conditions related to SPECT/CT visualization of heterogeneous tumor interiors were investigated using phantoms with (111)In and simulations of actual small animal imaging. The optimal conditions obtained were validated by in vivo imaging of sarcoma 180-bearing mice.Larger number of counts must be obtained within limited acquisition time to visualize tumor heterogeneity in vivo in animal imaging, compared to cases that simply detect tumors. At an acquisition time of 30?min, better image quality was obtained with pinhole apertures diameter of 1.4?mm than of 1.0?mm. The obtained best spatial resolution was 1.3?mm, it was acceptable for our purpose, though a little worse than the best possible performance of the scanner (1.0?mm). Additionally, the reconstruction parameters, such as noise suppression, voxel size, and iteration/subset number, needed to be optimized under the limited conditions and were different from those found under the ideal condition. The minimal radioactivity concentration for visualization of heterogeneous tumor interiors was estimated to be as high as 0.2-0.5?MBq/mL. Liposomes containing (111)In met this requirement and were administered to tumor-bearing mice. SPECT imaging successfully showed heterogeneous (111)In distribution within the tumors in vivo with good spatial resolution. A threshold of 0.2?MBq/g for clear visualization of tumor heterogeneity was validated. Autoradiograms obtained ex vivo of excised tumors confirmed that the in vivo SPECT images accurately depicted the heterogeneous intratumoral accumulation of liposomes.Intratumoral heterogeneity was successfully visualized under the optimized conditions using a SPECT/CT scanner.
机译:肿瘤内部永远不会同质化,体内可视化肿瘤内异质性将是有助于改善癌症治疗的一项创新。但是,由于空间分辨率有限,传统的核医学测试未能在体内可视化异质性。最近开发的专门用于小动物成像的单光子发射计算机断层摄影(SPECT)扫描仪由于其小于1?mm的出色空间分辨率而备受关注,但很少有研究专注于评估肿瘤内异质性。我们使用小型动物SPECT扫描仪研究了与异质肿瘤内部高分辨率成像相关的最佳条件。使用(111)In幻像对真实的小动物成像进行了模拟,研究了与异质肿瘤内部SPECT / CT可视化相关的条件。通过对180只肉瘤小鼠的体内成像来验证获得的最佳条件。与仅检测肿瘤的情况相比,必须在有限的采集时间内获得更大数量的计数才能在动物成像中可视化体内肿瘤异质性。在30?min的采集时间下,直径为1.4?mm的针孔孔径比1.0?mm的针孔孔径可获得更好的图像质量。获得的最佳空间分辨率为1.3?mm,这对于我们的目的是可以接受的,尽管比扫描仪的最佳性能(1.0?mm)差一些。此外,需要在有限的条件下优化重建参数,例如噪声抑制,体素大小和迭代/子集数量,这些参数与理想条件下的参数不同。用于观察异质肿瘤内部的最小放射性浓度估计高达0.2-0.5?MBq / mL。含有(111)In的脂质体符合此要求,并施用于荷瘤小鼠。 SPECT成像成功地显示了体内肿瘤内的异质(111)In分布,具有良好的空间分辨率。确认可以清晰观察到肿瘤异质性的阈值为0.2?MBq / g。切除肿瘤的放射自显影证实了体内SPECT图像准确地描绘了脂质体的异质瘤内积聚。在优化的条件下使用SPECT / CT扫描仪成功地可视化了瘤内异质性。

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