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3D ultrasound imaging method to assess the true spinal deformity

机译:3D超声成像方法评估真实的脊柱畸形

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Spinal deformity is a three-dimensional (3D) spinal disorder with a lateral deviation and coupled with axial vertebral rotation (AVR). The current clinical practice only measures its severity on postero-anterior (PA) radiographs, which may underestimate the deformity. The actual severity should be obtained on the plane of maximal curvature (PMC), which requires a 3D spinal image. There are many approaches to reconstruct 3D spinal images; however, ultrasound is one of the promising techniques with its non-ionizing characteristic. This study proposed an image processing method using the voxel-based bilinear interpolation to reconstruct a 3D spinal image from ultrasound data, from which the AVR was measured and the spinal curvature on the PMC was determined. In-vitro and in-vivo experiments were performed to determine the accuracy of the measurements from the ultrasound method. The results showed that the 3D ultrasound spinal image could be reconstructed. The curvature angle on the PA and the PMC planes could also be determined. The tilt angle of each individual vertebra in in-vitro study showed high accuracy and correlation (MAD <; 0.9° ± 0.2° and r > 0.87) when comparing the measurements from CT with ultrasound. In in-vivo study, the curvature angles measured on the PA radiographs and ultrasound images yielded a small difference (MAD 3.4° ± 1.0°) and a strong correlation (r = 0.63) within a clinical accepted error of 5°.
机译:脊柱畸形是一种三维(3D)脊柱疾病,具有横向偏斜,并伴有轴向椎骨旋转(AVR)。当前的临床实践仅在后前X线片上测量其严重程度,这可能低估了畸形。实际严重程度应在需要3D脊柱图像的最大曲率(PMC)平面上获得。有很多方法可以重建3D脊柱图像。然而,超声波具有非电离特性是一种很有前途的技术。这项研究提出了一种图像处理方法,该方法使用基于体素的双线性插值从超声数据重建3D脊柱图像,从中测量AVR并确定PMC上的脊柱曲率。进行体外和体内实验以确定超声方法测量的准确性。结果表明,可以重建3D超声脊柱图像。也可以确定PA和PMC平面上的曲率角。在体外研究中比较每个CT的测量结果时,每个椎骨的倾斜角均显示出较高的准确性和相关性(MAD <; 0.9°±0.2°和r> 0.87)。在体内研究中,在PA射线照片和超声图像上测量的曲率角在临床可接受的5°误差范围内产生了很小的差异(MAD 3.4°±1.0°)和很强的相关性(r = 0.63)。

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