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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Mechanical basis for bone retention around dental implants.
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Mechanical basis for bone retention around dental implants.

机译:牙齿植入物周围骨保留的机械基础。

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摘要

This study, analytically, through finite element analysis, predicts the minimization of crestal bone stress resulting from implant collar surface treatment. A tapered dental implant design with (LL) and without (control, C) laser microgrooving surface treatment are evaluated. The LL implant has the same tapered body design and thread surface treatment as the C implant, but has a 2-mm wide collar that has been laser micromachined with 8 and 12 microm grooves in the lower 1.5 mm to enhance tissue attachment. In vivo animal and human studies previously demonstrated decreased crestal bone loss with the LL implant. Axial and side loading with two different collar/bone interfaces (nonbonded and bonded, to simulate the C and LL surfaces, respectively) are considered. For 80 N side load, the maximum crestal bone distortional stress around C is 91.9 MPa, while the maximum crestal bone stress around LL, 22.6 MPa, is significantly lower. Finite element analysis suggests that stress overload may be responsible forthe loss of crestal bone. Attaching bone to the collar with LL is predicted to diminish this effect, benefiting crestal bone retention.
机译:这项研究通过有限元分析,分析性地预测了由种植体颈环表面处理引起的牙槽骨应力的最小化。评估带有(LL)和没有(control,C)激光微刻槽表面处理的锥形牙科植入物设计。 LL植入物具有与C植入物相同的锥形主体设计和螺纹表面处理,但具有2毫米宽的轴环,该轴环已进行了激光微加工,并在下部1.5毫米处设有8和12微米的凹槽,以增强组织附着力。先前的体内动物和人体研究表明,使用LL植入物可减少牙槽骨丢失。考虑具有两个不同轴环/骨接口(分别为非粘结和粘结,分别模拟C和LL表面)的轴向和侧面载荷。对于80 N的侧向载荷,C附近的最大地壳骨变形应力为91.9 MPa,而LL附近的最大地壳骨应力为22.6 MPa,明显更低。有限元分析表明,应力超负荷可能是导致牙槽骨丢失的原因。预计使用LL将骨骼连接到衣领会减弱这种效果,有利于骨的保留。

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