自动精准定位脊椎韧带附着点,提升生物力学建模效率
Spinal ligaments detection on vertebrae meshes using registration and 3D edge detection
- 基于快速配准与3D边缘检测的分步算法
- 前纵韧带定位误差仅2.24mm,后纵韧带1.26mm
- 每椎体处理仅需3秒,适合临床实时应用
脊椎韧带在复杂生物力学模拟中至关重要,负责传递骨骼受力、引导和限制运动并稳定脊柱。其包含七个主要组别,维持脊柱各部件间的功能关系。准确确定韧带在三维椎体模型上的起点与止点,是构建精确脊柱生物力学模型的关键步骤。本文提出一种新流程,可检测66个脊椎韧带附着点。方法结合快速椎体配准(仅用15个3D点计算变换)与高精度边缘检测,将注册后的韧带精确投影至任意患者特异性椎体模型。实验显示,在椎体前部定位表现优异,前纵韧带平均距离误差为2.24 mm,后纵韧带为1.26 mm。单个椎体检测耗时约3.0秒,显著优于现有方法。临床意义:该方法可自动、精准且高效地定位生物力学模型所需的力作用点。
原文摘要 · Abstract (English)
Spinal ligaments are crucial elements in the complex biomechanical simulation models as they transfer forces on the bony structure, guide and limit movements and stabilize the spine. The spinal ligaments encompass seven major groups being responsible for maintaining functional interrelationships among the other spinal components. Determination of the ligament origin and insertion points on the 3D vertebrae models is an essential step in building accurate and complex spine biomechanical models. In our paper, we propose a pipeline that is able to detect 66 spinal ligament attachment points by using a step-wise approach. Our method incorporates a fast vertebra registration that strategically extracts only 15 3D points to compute the transformation, and edge detection for a precise projection of the registered ligaments onto any given patient-specific vertebra model. Our method shows high accuracy, particularly in identifying landmarks on the anterior part of the vertebra with an average distance of 2.24 mm for anterior longitudinal ligament and 1.26 mm for posterior longitudinal ligament landmarks. The landmark detection requires approximately 3.0 seconds per vertebra, providing a substantial improvement over existing methods. Clinical relevance: using the proposed method, the required landmarks that represent origin and insertion points for forces in the biomechanical spine models can be localized automatically in an accurate and time-efficient manner.
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