[A comparative study of four combined methods for planning access to the anterior acetabular column for nail placement].

Li-Yang Yi, Bi-Wen Li, Peng Tang, Hu Tang, Wen-Fu Tan
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引用次数: 0

Abstract

Objective: To investigate global optimisation of anterior acetabular column pinning channels can be achieved based on large density point cloud data.

Methods: Data were collected on the CT scans of the normal pelvis in 40 adults from January 2022 to January 2023, including 22 males and 18 females, aged 20 to 54 years old. Medical imaging data from three of the samples were selected for experimental study. In planning access for anterior acetabular column pinning, to address the issue of whether the current CAD planning methods were advanced or not, four combinations of the same point cloud acquisition channels, different directional line creation software, and the same 3D design and virtual experiment software were proposed: Mimics+Imageware+UG, Mimics+3DReshaper+UG, Mimics+ZEISS Quality Suite+UG and Mimics+Design X+UG, and directional lines created based on the centroid point set and solid point cloud of the secondary pruning model, respectively, and it applied to the planning of the left anterior column pinning channel of the three acetabular samples. The maximum internally connected cylinder without acetabular socket and pubic bone penetration was used as a safe passage for nailing of the anterior acetabular column to evaluate the advancement of each method.

Results: The fitting effect of the directional line was better than that of the unnoised solid point cloud when the central point set with obvious relevant features was selected as the sample points;and the combination of Mimics+Imageware+UG and Mimics+3DReshaper+UG could efficiently and stably obtain the desirable planning results when planning with the central point set, respectively, in the three acetabular samples 1, 2, 3. The maximum internal joint circle diameters obtained in samples 1, 2, and 3 were 10.35 mm, 9.62 mm, and 9.24 mm;and when the directional lines were based on the solid point cloud the combined methods of Mimics+ZEISS Quality Suite+UG and Mimics+Design X+UG were not applicable;whereas the Mimics+3DReshaper+UG the solid point cloud denoising planning method could stably obtain the maximum value of the safe channel for nail placement, and the maximum internal joint circle diameters obtained in acetabular samples 1, 2, and 3 are 10.66 mm, 10.96 mm, and 9.48 mm, respectively.

Conclusion: It is recommended that the nail placement channel planners use robust Mimics+Imageware+UG or Mimics+3DReshaper+UG centre point set planning method, and if there is enough time, it is recommended to use the solid point cloud denoising planning method of Mimics+3DReshaper+UG in order to obtain the maximum value of safe channels for nail placement.

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[规划进入髋臼前柱置钉的四种综合方法的比较研究]。
目的研究基于大密度点云数据可实现的髋臼前柱固定通道的全局优化:收集 2022 年 1 月至 2023 年 1 月期间 40 名成年人的正常骨盆 CT 扫描数据,其中包括 22 名男性和 18 名女性,年龄在 20 至 54 岁之间。选取其中三个样本的医学影像数据进行实验研究。在髋臼前柱钉的规划入路中,针对目前的CAD规划方法是否先进的问题,提出了相同点云采集通道、不同方向线创建软件、相同三维设计和虚拟实验软件的四种组合:Mimics+Imageware+UG、Mimics+3DReshaper+UG、Mimics+ZEISS Quality Suite+UG和Mimics+Design X+UG,分别根据二次修剪模型的中心点集和实体点云创建方向线,并应用于三个髋臼样本左前柱销钉通道的规划。以不穿透髋臼窝和耻骨的最大内连圆柱体作为髋臼前柱钉入的安全通道,评价每种方法的先进性:在选取相关特征明显的中心点集作为样本点时,方向线的拟合效果优于未失真实体点云;在选取中心点集进行规划时,Mimics+Imageware+UG和Mimics+3DReshaper+UG组合可分别在髋臼样本1、2、3中高效稳定地获得理想的规划效果。样本 1、2、3 的最大内关节圆直径分别为 10.35 毫米、9.62 毫米和 9.24 毫米。24 mm;而当方向线基于实心点云时,Mimics+ZEISS Quality Suite+UG 和 Mimics+Design X+UG 的组合方法不适用;而实心点云去噪规划方法 Mimics+3DReshaper+UG 能稳定地获得置钉安全通道的最大值,髋臼样本 1、2、3 的最大内关节圆直径分别为 10.66 mm、10.96 mm 和 9.48 mm:建议置钉通道规划者使用稳健的 Mimics+Imageware+UG 或 Mimics+3DReshaper+UG 中心点集规划方法,如果时间充裕,建议使用 Mimics+3DReshaper+UG 的实体点云去噪规划方法,以获得最大的置钉安全通道值。
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