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Biomechanical Loading Comparison between Titanium and Unsintered Hydroxyapatite/Poly-L-Lactide Plate System for Fixation of Mandibular Subcondylar Fractures

机译:钛和未烧结羟基磷灰石/聚-L-丙交酯板系统的生物力学载荷比较,用于固定下颌骨折骨折

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摘要

Osteosynthesis absorbable materials made of uncalcined and unsintered hydroxyapatite (u-HA) particles, poly-l-lactide (PLLA), and u-HA/PLLA are bioresorbable, and these plate systems have feasible bioactive osteoconductive capacities. However, their strength and stability for fixation in mandibular subcondylar fractures remain unclear. This in vitro study aimed to assess the biomechanical strength of u-HA/PLLA bioresorbable plate systems after internal fixation of mandibular subcondylar fractures. Tensile and shear strength were measured for each u-HA/PLLA and titanium plate system. To evaluate biomechanical behavior, 20 hemimandible replicas were divided into 10 groups, each comprising a titanium plate and a bioresorbable plate. A linear load was applied anteroposteriorly and lateromedially to each group to simulate the muscular forces in mandibular condylar fractures. All samples were analyzed for each displacement load and the displacement obtained by the maximum load. Tensile and shear strength of the u-HA/PLLA plate were each approximately 45% of those of the titanium plates. Mechanical resistance was worst in the u-HA/PLLA plate initially loaded anteroposteriorly. Titanium plates showed the best mechanical resistance during lateromedial loading. Notably, both plates showed similar resistance when a lateromedially load was applied. In the biomechanical evaluation of mandibular condylar fracture treatment, the u-HA/PLLA plates had sufficiently high resistance in the two-plate fixation method.
机译:由未煅烧和未烧结羟基磷灰石(U-HA)颗粒的骨接合术吸收的材料,聚-L-丙交酯(PLLA),和u-HA / PLLA是生物可吸收的,并且这些板系统具有生物活性是可行的骨传导性的能力。然而,他们的下颌骨髁骨折固定的强度和稳定性仍不清楚。该体外研究的目的下颌骨髁骨折内固定后,以评估的u-HA / PLLA的生物可吸收板系统的生物力学强度。拉伸强度和剪切强度为每个U-HA / PLLA和钛板系统进行测定。为了评估生物力学行为,20个hemimandible复制品被分成10组,每组包括钛板和可生物再吸收板。线性载荷和前后lateromedially应用于每个组来模拟肌肉力量髁突骨折。所有样品进行分析的每个位移负荷和由最大负荷得到的位移。拉伸和U-HA / PLLA板的剪切强度是那些钛板的各约45%。机械阻力是最初装载前后的U-HA / PLLA板最差。钛板表明lateromedial装载期间的最佳的机械阻力。值得注意的是,当施加负载lateromedially两个板显示出相似性。在髁突骨折治疗的生物力学评价中,U-HA / PLLA板具有在两板固定方法足够高的电阻。

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