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On-board SPECT for localizing functional targets: A simulation study

机译:机载SPECT用于定位功能目标的仿真研究

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摘要

Single photon emission computed tomography (SPECT) was investigated for imaging on-board radiation therapy machines in order to localize functional and molecular targets. A computer-simulated female NCAT phantom was positioned supine on a flat-top treatment couch. Twenty tumor locations were defined in the upper torso. The eight lung tumors were subject to the effects of respiratory motion. Tumor diameters of 10.8, 14.4, and 21.6 mm were simulated for tumor-to-background ratios of 3:1 and 6:1 that are characteristic of the radiotracer 99mTc-sestamibi. Projection images representing scan times of 4, 8, and 20 min were simulated for an anterior, half-circular trajectory. Images were reconstructed with attenuation correction by ordered-subsets expectation maximization (OSEM) using six subsets and five iterations. Contrast-to-noise ratios (CNRs) were calculated from ensembles of 25 images. Cross correlation with a noise-free tumor template was used to select the most suspicious tumor location within a 14.4-mm-radius search volume surrounding each tumor, with only that one tumor in each search volume. Localization accuracy was assessed by calculating average distances between measured and true tumor locations. Localization accuracy and CNRs were strongly affected by tumor location relative to the detector trajectory. For example, CNR values near the chest wall were greater by a factor of 3.5 than for tumors near the spine and posterior ribs, a much greater effect than the factor of 1.6 difference in CNR between 6:1 and 3:1 tumor uptakes. Typically, tumors of 6:1 uptake were localized as accurately with 4 min of scan time as tumors of 3:1 uptake that had been imaged for 20 min. Using 4 min scans, 14.4 and 21.6 mm anterior tumors of 6:1 uptake were localized within 2 mm. These results suggest that SPECT, on-board radiation therapy machines, may be a viable modality for localizing certain functional and molecular targets using relatively short scan times.
机译:为了对功能和分子靶标进行定位,对单光子发射计算机断层扫描(SPECT)进行了车载放射治疗机成像研究。将计算机模拟的女性NCAT幻影仰卧在平顶治疗床上。在上躯干中定义了20个肿瘤位置。八个肺肿瘤受到呼吸运动的影响。模拟的肿瘤直径为10.8、14.4和21.6 mm,肿瘤与背景的比例为3:1和6:1,这是放射性示踪剂 99m Tc-sestamibi的特征。模拟前,半圆形轨迹代表4、8和20分钟扫描时间的投影图像。通过使用六个子集和五个迭代的有序子集期望最大化(OSEM),通过衰减校正重建图像。从25张图像的集合计算对比度噪声比(CNR)。使用与无噪声的肿瘤模板的互相关来选择在每个肿瘤周围的14.4毫米半径搜索范围内最可疑的肿瘤位置,每个搜索范围中只有一个肿瘤。通过计算所测肿瘤位置与真实肿瘤位置之间的平均距离来评估定位准确性。定位精度和CNR受肿瘤相对于探测器轨迹的位置的强烈影响。例如,胸壁附近的CNR值比脊柱和后肋骨附近的肿瘤大3.5倍,远大于6:1和3:1肿瘤吸收之间CNR差1.6的影响。通常,摄取4:1的肿瘤与扫描20分钟成像的摄取3:1的肿瘤一样,在4分钟的扫描时间内准确定位。使用4分钟扫描,将6:1摄取的14.4和21.6 mm前部肿瘤定位在2 mm之内。这些结果表明,车载放射治疗仪SPECT可能是使用相对较短的扫描时间来定位某些功能和分子靶标的可行方法。

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