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首页> 外文期刊>International Journal of Radiation Oncology, Biology, Physics >Multi-institutional quantitative evaluation and clinical validation of Smart Probabilistic Image Contouring Engine (SPICE) autosegmentation of target structures and normal tissues on computer tomography images in the head and neck, thorax, liver, and male pelvis areas
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Multi-institutional quantitative evaluation and clinical validation of Smart Probabilistic Image Contouring Engine (SPICE) autosegmentation of target structures and normal tissues on computer tomography images in the head and neck, thorax, liver, and male pelvis areas

机译:智能概率图像轮廓引擎(SPICE)对人体头部和颈部,胸部,肝脏和男性骨盆区域的计算机断层摄影图像上的目标结构和正常组织进行自动分割的多机构定量评估和临床验证

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Purpose: Clinical validation and quantitative evaluation of computed tomography (CT) image autosegmentation using Smart Probabilistic Image Contouring Engine (SPICE). Methods and Materials: CT images of 125 treated patients (32 head and neck [HN], 40 thorax, 23 liver, and 30 prostate) in 7 independent institutions were autosegmented using SPICE and computational times were recorded. The number of structures autocontoured were 25 for the HN, 7 for the thorax, 3 for the liver, and 6 for the male pelvis regions. Using the clinical contours as reference, autocontours of 22 selected structures were quantitatively evaluated using Dice Similarity Coefficient (DSC) and Mean Slice-wise Hausdorff Distance (MSHD). All 40 autocontours were evaluated by a radiation oncologist from the institution that treated the patients. Results: The mean computational times to autosegment all the structures using SPICE were 3.1 to 11.1 minutes per patient. For the HN region, the mean DSC was >0.70 for all evaluated structures, and the MSHD ranged from 3.2 to 10.0 mm. For the thorax region, the mean DSC was 0.95 for the lungs and 0.90 for the heart, and the MSHD ranged from 2.8 to 12.8 mm. For the liver region, the mean DSC was >0.92 for all structures, and the MSHD ranged from 5.2 to 15.9 mm. For the male pelvis region, the mean DSC was >0.76 for all structures, and the MSHD ranged from 4.8 to 10.5 mm. Out of the 40 autocontoured structures reviews by experts, 25 were scored useful as autocontoured or with minor edits for at least 90% of the patients and 33 were scored useful autocontoured or with minor edits for at least 80% of the patients. Conclusions: Compared with manual contouring, autosegmentation using SPICE for the HN, thorax, liver, and male pelvis regions is efficient and shows significant promise for clinical utility.
机译:目的:使用智能概率图像轮廓引擎(SPICE)对计算机断层扫描(CT)图像自动分割的临床验证和定量评估。方法和材料:使用SPICE对7个独立机构中125例接受治疗的患者(32例头颈部[HN],40例胸部,23例肝脏和30例前列腺)的CT图像进行自动分割,并记录计算时间。 HN的自动轮廓结构数目为25,胸部为7,肝脏为3,男性骨盆区域为6。使用临床轮廓作为参考,使用骰子相似系数(DSC)和平均切片平均Hausdorff距离(MSHD)定量评估了22种选定结构的自动轮廓。由治疗患者的机构的放射肿瘤学家对所有40个自动轮廓进行了评估。结果:每位患者使用SPICE自动分割所有结构的平均计算时间为3.1至11.1分钟。对于HN区域,所有评估结构的平均DSC均大于0.70,MSHD范围为3.2至10.0 mm。对于胸部区域,肺部的平均DSC为0.95,心脏的平均DSC为0.90,MSHD的范围为2.8至12.8 mm。对于肝脏区域,所有结构的平均DSC均大于0.92,MSHD范围为5.2至15.9 mm。对于男性骨盆区域,所有结构的平均DSC均大于0.76,MSHD范围为4.8至10.5 mm。在专家评审的40个自动轮廓结构中,至少有90%的患者被评定为25个有用的自动轮廓或稍作修改,而至少80%的患者被评定为33个有用的自动轮廓或略加修改。结论:与手动轮廓绘制相比,使用SPICE自动分割HN,胸部,肝脏和男性骨盆区域是有效的,并且在临床上具有广阔的前景。

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