School of Mechanical Engineering, Jiangnan University, Wuxi, Jiangsu, China.
Jiangsu Key Laboratory of Advanced Food Manufacturing Equipment and Technology, Wuxi, Jiangsu, China.
Comput Methods Biomech Biomed Engin. 2024 Jan-Mar;27(2):237-250. doi: 10.1080/10255842.2023.2183347. Epub 2023 Feb 24.
Clinically, skin flap transplantation was often used to repair skin wounds. However, the flap design process with sample cloth is rough and easy to cause infection and necrosis. So an accurate and individual shape design of preoperative flap should be solved. Therefore, a 3D wound flattening method for mapping skin mechanical properties based on finite element method was proposed. Firstly, the 3D point cloud of skin wound was obtained by 3D scanner, and the hierarchical structure of wound model was established. Then a geometric flattening method of wound surface was proposed based on the existing surface flattening theory. The concept of deformed point was introduced according to the special shape of wound surface, and the corresponding modification was given to the original flattening process. Secondly, the mechanical properties of pig skin samples with different orientations were measured by static tensile test. Finally, based on the morphological flattening of wound model and the mechanical parameters of pig skin, a unit material model based on material deformation energy was established. The unit deformation was attributed to the equivalent load acting on the node, and a finite element optimization method of wound unfolding shape based on material deformation energy was proposed. In order to optimize the overall deformation energy, the flap shape was optimized and adjusted to achieve the preoperative design. Clinical examples were selected for verification and analysis. The results show that the proposed method can provide a reasonable and reliable preliminary guide for preoperative flap shape design in clinical wound repair.
临床上常采用皮瓣移植来修复皮肤创伤,但样本布片的皮瓣设计过程比较粗糙,容易引起感染和坏死,因此需要解决术前皮瓣的精确和个体化形状设计问题。为此,提出了一种基于有限元法的皮肤力学特性的 3D 创面展平方法。首先,通过 3D 扫描仪获取皮肤创面的 3D 点云,并建立创面模型的层次结构。然后,基于现有的曲面展平理论,提出了一种创面曲面的几何展平方法。根据创面表面的特殊形状,引入了变形点的概念,并对原始展平过程进行了相应的修正。其次,通过静态拉伸试验测量了不同取向的猪皮样本的力学性能。最后,基于创面模型的形态展平和猪皮的力学参数,建立了基于材料变形能的单元材料模型。将单元变形归因于作用在节点上的等效载荷,并提出了一种基于材料变形能的创面展开形状的有限元优化方法。为了优化整体变形能,对皮瓣形状进行了优化和调整,以实现术前设计。选择临床实例进行验证和分析。结果表明,该方法可为临床创面修复中的术前皮瓣形状设计提供合理可靠的初步指导。