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A semi-automatic 3D ultrasound reconstruction method to assess the true severity of adolescent idiopathic scoliosis

机译:半自动三维超声重建方法评估青少年特发性脊柱侧凸真正严重程度

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摘要

Adolescent idiopathic scoliosis (AIS) is a three-dimensional (3D) spinal deformity. Current practice uses the Cobb method to measure spinal severity on postero-anterior (PA) radiographs. This method may underestimate spinal deformity and exposes patients to ionizing radiation, increasing the risk of cancer. This paper reports a new 3D ultrasound method using the voxel-based reconstruction technique with bilinear interpolation to reconstruct a 3D spinal image and measure true spinal curvature on the plane of maximal curvature (PMC). Axial vertebral rotation (AVR) was measured on the 3D image and utilized to estimate the PMC. In vitro phantom experiments and in vivo clinical study were conducted to evaluate reconstruction accuracy and measurement reliability. The in vitro study showed a high accuracy of the reconstruction of vertebrae with the mean absolute difference (MAD) 0.90). The in vivo study also showed high intra- and inter-rater reliabilities of the PA and PMC Cobb angle measurements with ICC values >0.90 and MADs within the clinical accepted tolerances. The PMC Cobb angles were up to 7 degrees greater than their corresponding PA Cobb angles. This method demonstrated a non-ionizing radiation method to assess the actual severity of AIS.
机译:青少年特发性脊柱侧凸(AIS)是三维(3D)脊柱畸形。目前的实践使用COBB方法测量后肛门(PA)X光片上的脊柱严重程度。该方法可能低估脊柱畸形,使患者暴露于电离辐射,增加癌症的风险。本文报道了一种新的3D超声方法,使用基于体素的重建技术具有双线性插值,重建3D脊柱图像并测量最大曲率平面上的真正脊柱曲率(PMC)。在3D图像上测量轴向椎体旋转(AVR)并用于估计PMC。进行体外幻影实验和体内临床研究,以评估重建精度和测量可靠性。体外研究表明,椎骨重建的高精度,平均绝对差异(MAD)0.90)。体内研究还显示了PA和PMC COBB角度测量的高帧间间可靠性,ICC值> 0.90和临床接受耐受性的MAD。 PMC Cobb角度高于相应的PA Cobb角度高达7度。该方法证明了非电离辐射方法,以评估AIS的实际严重程度。

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