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Evaluation of 1D, 2D and 3D nodule size estimation by radiologists for spherical and non-spherical nodules through CT thoracic phantom imaging

机译:通过CT胸廓模拟评估辐射学家用辐射学家的辐射学家和非球形结节的辐射估计的评价

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The purpose of this work was to estimate bias in measuring the size of spherical and non-spherical lesions by radiologists using three sizing techniques under a variety of simulated lesion and reconstruction slice thickness conditions. We designed a reader study in which six radiologists estimated the size of 10 synthetic nodules of various sizes, shapes and densities embedded within a realistic anthropomorphic thorax phantom from CT scan data. In this manuscript we report preliminary results for the first four readers (Readers 1-4). Two repeat CT scans of the phantom containing each nodule were acquired using a Philips 16-slice scanner at a 0.8 and 5 mm slice thickness. The readers measured the sizes of all nodules for each of the 40 resulting scans (10 nodules x 2 slice thickness x 2 repeat scans) using three sizing techniques (1D longest in-slice dimension; 2D area from longest in-slice dimension and corresponding longest perpendicular dimension; 3D semi-automated volume) in each of 2 reading sessions. The normalized size was estimated for each sizing method and an inter-comparison of bias among methods was performed. The overall relative biases (standard deviation) of the 1D, 2D and 3D methods for the four readers subset (Readers 1-4) were -13.4 (20.3), -15.3 (28.4) and 4.8 (21.2) percentage points, respectively. The relative biases for the 3D volume sizing method was statistically lower than either the 1D or 2D method (p<0.001 for 1D vs. 3D and 2D vs. 3D).
机译:这项工作的目的是在各种模拟病变和重建切片厚度条件下使用三种施胶技术来估计测量球形和非球形病变的尺寸的偏差。我们设计了读者研究,其中六位放射科医师估计来自CT扫描数据的现实拟人胸腔族在现实拟人胸腔幻像中的各种尺寸,形状和密度的10种合成结节的大小。在本手稿中,我们向前四名读者(读者1-4)报告初步结果。使用飞利浦16切片扫描仪以0.8和5mm切片厚度获得含有每个结节的含有每个结节的幻象的两种重复CT扫描。读者使用三个尺寸技术(10个最长的切片尺寸,从最长的切片尺寸和最长的切片尺寸和最长的切片尺寸和相应最长的尺寸和相应最长的扫描扫描)测量所有结节的所有结节的尺寸(10结节x 2切片厚度x 2)。垂直尺寸; 3D半自动卷)在2个阅读会话中的每一个中。针对每个施胶方法估计归一化大小,并进行方法中的偏差的间相对比较。对于四个读者子集(读数器1-4)的1D,2D和3D方法的总相对偏差(标准偏差)分别为-13.4(20.3),-15.3(28.4)和4.8(21.2)百分点。 3D体积尺寸方法的相对偏置在统计上低于1D或2D方法(P <0.001,对于1D VS.3D和2D与3D)。

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