Wang Lin, Sun Hui, Guo Kaijin, He Kunjin, Geng Weizhong, Zhou Wen, Wei Jian
School of Medical Information and Engineering, Xuzhou Medical University, Xuzhou, China.
Department of Orthopedics, Affiliated Hospital of Xuzhou Medical University, Xuzhou, China.
Front Surg. 2024 Aug 9;11:1294749. doi: 10.3389/fsurg.2024.1294749. eCollection 2024.
The design of femoral stem prostheses requires a precise understanding of the femoral marrow cavity. Traditional measurements of morphological parameters in the upper femur, particularly the medullary cavity and cortical region, are primarily based on coronal and sagittal axes, which may not fully capture the true three-dimensional structure of the femur.
Propose a Monte Carlo-based method for a more comprehensive analysis of the femoral marrow cavity, using CT scans of femurs from a selected group of patients. The study aimed to define and calculate anatomically semantic morphological parameters to enhance the understanding of the femoral marrow cavity's anatomical morphological changes, ultimately improving the design and clinical selection of femoral stem prostheses. To enhance the accuracy of femoral stem prosthesis design, this study aims to develop a Monte Carlo-based method for a more comprehensive analysis of the femoral marrow cavity. The proposed method transforms the non-random problem of determining cross-sectional size into a random issue, allowing for the calculation of the size of the medullary cavity and cortical region. Anatomically semantic morphological parameters are then defined, calculated, and analyzed.
The experimental results indicate that the newly defined parameters complement existing ones, providing a more rational scientific basis for understanding the anatomical morphological changes of the femoral marrow cavity.
This research offers essential scientific theoretical support for improved morphologic research, design, and clinical selection of femoral stem prostheses. It holds significant importance and application value in clinical practice, contributing to a more accurate and comprehensive understanding of femoral anatomy for prosthetic design.
股骨柄假体的设计需要对股骨髓腔有精确的了解。传统上对上股骨形态学参数的测量,特别是髓腔和皮质区域,主要基于冠状轴和矢状轴,这可能无法完全捕捉股骨的真实三维结构。
提出一种基于蒙特卡洛的方法,用于对股骨髓腔进行更全面的分析,使用一组选定患者的股骨CT扫描数据。该研究旨在定义和计算解剖学语义形态学参数,以增强对股骨髓腔解剖形态变化的理解,最终改善股骨柄假体的设计和临床选择。为提高股骨柄假体设计的准确性,本研究旨在开发一种基于蒙特卡洛的方法,对股骨髓腔进行更全面的分析。所提出的方法将确定横截面尺寸的非随机问题转化为随机问题,从而能够计算髓腔和皮质区域的尺寸。然后定义、计算并分析解剖学语义形态学参数。
实验结果表明,新定义的参数补充了现有参数,为理解股骨髓腔的解剖形态变化提供了更合理的科学依据。
本研究为改进股骨柄假体的形态学研究、设计和临床选择提供了重要的科学理论支持。它在临床实践中具有重要意义和应用价值,有助于更准确、全面地理解用于假体设计的股骨解剖结构。