Biomechanical analysis of bone remodeling following mandibular reconstruction using fibula free flap

腓骨 骨重建 下颌骨(节肢动物口器) X射线显微断层摄影术 机械生物学 生物力学 骨愈合 桥接(联网) 皮质骨 解剖 牙科 骨性结合 骨矿物 生物医学工程 材料科学 医学 口腔正畸科 生物 病理 骨质疏松症 胫骨 放射科 计算机科学 计算机网络 植物 内固定 内科学
作者
Nobuhiro Yoda,Keke Zheng,Junning Chen,Zhipeng Liao,Shigeto Koyama,Christopher C. Peck,Michael V. Swain,Keiichi Sasaki,Qing Li
出处
期刊:Medical Engineering & Physics [Elsevier BV]
卷期号:56 (1): 1-8 被引量:43
标识
DOI:10.1016/j.medengphy.2018.03.008
摘要

Whilst the newly established biomechanical conditions following mandibular reconstruction using fibula free flap can be a critical determinant for achieving favorable bone union, little has been known about their association in a time-dependent fashion. This study evaluated the bone healing/remodeling activity in reconstructed mandible and its influence on jaw biomechanics using CT data, and further quantified their correlation with mechanobiological responses through an in-silico approach. A 66-year-old male patient received mandibular reconstruction was studied. Post-operative CT scans were taken at 0, 4, 16 and 28 months. Longitudinal change of bone morphologies and mineral densities were measured at three bone union interfaces (two between the fibula and mandibular bones and one between the osteotomized fibulas) to investigate bone healing/remodeling events. Three-dimensional finite element models were created to quantify mechanobiological responses in the bone at these different time points. Bone mineral density increased rapidly along the bone interfaces over the first four months. Cortical bridging formed at the osteotomized interface earlier than the other two interfaces with larger shape discrepancy between fibula and mandibular bones. Bone morphology significantly affected mechanobiological responses in the osteotomized region (R2 > 0.77). The anatomic position and shape discrepancy at bone union affected the bone healing/remodeling process.
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