Su Kangning, Zhou Yuxiao, Hossaini-Zadeh Mehran, Du Jing
Department of Mechanical Engineering, Pennsylvania State University, University Park, PA, USA.
Department of Oral Maxillofacial Pathology Medicine and Surgery, Temple University, Philadelphia, PA, USA.
J Mech Behav Biomed Mater. 2021 Apr;116:104325. doi: 10.1016/j.jmbbm.2021.104325. Epub 2021 Jan 13.
Bone-implant mechanics is one of the factors that contribute to implant stability and success. In this work, voxel-based finite element models were built based on the micro-CT images of human cadaveric mandible specimens before and after implant placement. The computed results show high strain at the bone-implant contact locations and the buccal and lingual bone plates. The strain concentration in the thinner buccal plates was more substantial than that in the thicker lingual plates. The average values of maximum principal strain in the buccal and lingual ROIs were in good agreement with those measured using mechanical testing coupled with micro-CT and digital volume correlation. The implant position was then virtually changed in the models to be placed lingually or buccally. The computed strain in the buccal bone decreased when the implant was placed away from the buccal plate. The strain in lingual bone also deceased when the implant was moved from the center of the alveolar socket towards the lingual or buccal plate. The results indicate that the distance from implant to the buccal plate can affect the mechanical stimuli in bone, especially in the buccal plate, which may subsequently affect the bone remodeling process and buccal bone resorption.
骨-种植体力学是影响种植体稳定性和成功率的因素之一。在本研究中,基于植入种植体前后的人体尸体下颌骨标本的显微CT图像构建了基于体素的有限元模型。计算结果显示,在骨-种植体接触部位以及颊侧和舌侧骨板处存在高应变。较薄的颊侧骨板中的应变集中比厚的舌侧骨板更显著。颊侧和舌侧感兴趣区域内的最大主应变平均值与使用机械测试结合显微CT和数字体积相关测量得到的结果高度一致。然后在模型中虚拟改变种植体位置,使其置于舌侧或颊侧。当种植体远离颊侧骨板放置时,颊侧骨中的计算应变降低。当种植体从牙槽窝中心向舌侧或颊侧骨板移动时,舌侧骨中的应变也降低。结果表明,种植体到颊侧骨板的距离会影响骨中的力学刺激,尤其是在颊侧骨板,这可能随后影响骨重塑过程和颊侧骨吸收。