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Quantification of the accuracy of MRI generated 3D models of long bones compared to CT generated 3D models

机译:MRI生成的长骨3D模型与CT生成的3D模型相比的准确性量化

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摘要

Orthopaedic fracture fixation implants are increasingly being designed using accurate 3D models of long bones based on computer tomography (CT). Unlike CT, magnetic resonance imaging (MRI) does not involve ionising radiation and is therefore a desirable alternative to CT. This study aims to quantify the accuracy of MRI-based 3D models compared to CT-based 3D models of long bones. The femora of five intact cadaver ovine limbs were scanned using a 1.5T MRI and a CT scanner. Image segmentation of CT and MRI data was performed using a multi-threshold segmentation method. Reference models were generated by digitising the bone surfaces free of soft tissue with a mechanical contact scanner. The MRI- and CT-derived models were validated against the reference models. The results demonstrated that the CT-based models contained an average error of 0.15mm while the MRI-based models contained an average error of 0.23mm. Statistical validation shows that there are no significant differences between 3D models based on CT and MRI data. These results indicate that the geometric accuracy of MRI based 3D models was comparable to that of CT-based models and therefore MRI is a potential alternative to CT for generation of 3D models with high geometric accuracy.
机译:越来越多的人使用基于计算机断层扫描(CT)的精确的长骨3D模型设计骨科骨折固定植入物。与CT不同,磁共振成像(MRI)不涉及电离辐射,因此是CT的理想替代方案。这项研究旨在量化与长骨的基于CT的3D模型相比,基于MRI的3D模型的准确性。使用1.5T MRI和CT扫描仪扫描了五个完整的尸体羊肢的股骨。使用多阈值分割方法对CT和MRI数据进行图像分割。参考模型是通过使用机械接触扫描仪数字化无软组织的骨骼表面而生成的。 MRI和CT衍生的模型已针对参考模型进行了验证。结果表明,基于CT的模型的平均误差为0.15mm,而基于MRI的模型的平均误差为0.23mm。统计验证表明,基于CT和MRI数据的3D模型之间没有显着差异。这些结果表明,基于MRI的3D模型的几何精度可与基于CT的模型相媲美,因此MRI可以替代CT,以生成具有高几何精度的3D模型。

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