arXiv:2412.05065eess.IVcs.CV2024-12被引 1

用关键点检测修复不完整脊柱影像,快速重建精确的腰椎3D模型。

Reconstruction of 3D lumbar spine models from incomplete segmentations using landmark detection

  • 通过自动检测椎体终板关键点,用仿射变换对齐人工椎体与患者椎体。
  • 平均点到模型距离仅1.95毫米,功能脊柱单元角度误差均值3.4°。
  • 0.14秒完成整个腰椎(L1-L5)重建,适合临床快速建模需求。

个性化3D脊柱模型是脊柱治疗、手术规划及生物力学研究的基础。尽管影像技术不断进步,但平面X光和体积医学影像常因结构缺失(如椎弓根或横突)导致分割不全,难以重建完整的3D脊柱模型。本研究提出一种高效准确的方法,基于分割后的磁共振影像中不完整腰椎体,重建完整的3D腰椎模型。方法通过自动检测椎体终板上的关键点,利用仿射变换将人工椎体模型与患者个体椎体对齐,获得变换矩阵。评估结果显示,注册精度高,平均点到模型距离为1.95毫米;在椎体形态与椎间特征分析中,功能脊柱单位(FSUs)角度的平均绝对误差(MAE)为3.4°,有效保持了重要脊柱特征。整个腰椎(L1至L5)的注册仅需0.14秒,体现其高效性。该方法可为脊柱诊断、治疗规划及医疗解决方案开发提供快速准确的建模支持。

原文摘要 · Abstract (English)

Patient-specific 3D spine models serve as a foundation for spinal treatment and surgery planning as well as analysis of loading conditions in biomechanical and biomedical research. Despite advancements in imaging technologies, the reconstruction of complete 3D spine models often faces challenges due to limitations in imaging modalities such as planar X-Ray and missing certain spinal structures, such as the spinal or transverse processes, in volumetric medical images and resulting segmentations. In this study, we present a novel accurate and time-efficient method to reconstruct complete 3D lumbar spine models from incomplete 3D vertebral bodies obtained from segmented magnetic resonance images (MRI). In our method, we use an affine transformation to align artificial vertebra models with patient-specific incomplete vertebrae. The transformation matrix is derived from vertebra landmarks, which are automatically detected on the vertebra endplates. The results of our evaluation demonstrate the high accuracy of the performed registration, achieving an average point-to-model distance of 1.95 mm. Additionally, in assessing the morphological properties of the vertebrae and intervertebral characteristics, our method demonstrated a mean absolute error (MAE) of 3.4° in the angles of functional spine units (FSUs), emphasizing its effectiveness in maintaining important spinal features throughout the transformation process of individual vertebrae. Our method achieves the registration of the entire lumbar spine, spanning segments L1 to L5, in just 0.14 seconds, showcasing its time-efficiency. Clinical relevance: the fast and accurate reconstruction of spinal models from incomplete input data such as segmentations provides a foundation for many applications in spine diagnostics, treatment planning, and the development of spinal healthcare solutions.

3D重建脊柱建模医学影像关键点检测

Thank you to arXiv for use of its open access interoperability. PaperDance 不是 arXiv 官方产品;中文卡片由大模型生成,请以原文为准。