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Influence of Abutment Collar Height and Implant Length on Stress Distribution in Single Crowns

机译:基台颈托高度和种植体长度对单冠应力分布的影响

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This in silico study evaluated the influence of the abutment collar height and implants length on the biomechanical behavior of morse taper single dental implants with different crown-to-implant ratio. Six virtual models were constructed (S11, M11, L11, S13, M13 and L13) by combining short (S: 2.5 mm), medium (M: 3.5 mm) or long (L: 4.5 mm) abutment collar heights with different implant lengths (11 or 13-mm). An upper central incisor of 11-mm height was constructed on top of each abutment. Each set was positioned in a virtual bone model and exported to analyze mathematically. A 0.60-mm mesh was created after convergence analysis and a 49 N load was applied to the cingulum of the crown at an angle of 45°. Load-generated stress distribution was analyzed in the prosthetic components according to von Mises stress criteria (σvM) and in the cortical and cancellous bone by means of shear stress (εmax). The use of longer collar abutments (L11) increased the stress on the abutment by 250% and resulted in 40% higher stresses on the screw and 92% higher cortical shear stresses compared to short collared abutments (S11). Increasing the implant length produced a slight stress reduction on cortical bone. Cancellous bone was not affected by the crown-to-implant ratio. Longer abutment collars concentrate stresses at the implant level and cortical bone by increasing the crown-to-implant ratio.
机译:这项计算机模拟研究评估了基台颈托高度和种植体长度对具有不同冠顶比的莫氏锥度单颗种植体的生物力学行为的影响。通过结合不同种植体长度的短(S:2.5毫米),中(M:3.5毫米)或长(L:4.5毫米)基台颈圈高度来构建六个虚拟模型(S11,M11,L11,S13,M13和L13) (11或13毫米)。在每个基台的顶部构造一个11毫米高的上中切牙。将每组放置在虚拟骨骼模型中,然后导出以进行数学分析。收敛分析后,创建了0.60毫米的网格,并且以45°的角度将49 N的载荷施加到冠的扣带上。根据剪切应力(εmax),根据von Mises应力标准(σvM)分析假体组件以及皮质和松质骨中负载产生的应力分布。与较短的颈圈基台(S11)相比,使用较长的颈圈基台(L11)可将基台上的应力增加250%,并导致螺钉上的应力高40%,皮质剪切应力高92%。增加植入物长度会在皮质骨上产生轻微的应力减少。松质骨不受冠与种植体比率的影响。通过增加牙冠与植入物的比例,较长的基台项圈将应力集中在植入物和皮质骨上。

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