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首页> 外文期刊>BioMed research international >Influence of Thread Pitch, Helix Angle, and Compactness on Micromotion of Immediately Loaded Implants in Three Types of Bone Quality: A Three-Dimensional Finite Element Analysis
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Influence of Thread Pitch, Helix Angle, and Compactness on Micromotion of Immediately Loaded Implants in Three Types of Bone Quality: A Three-Dimensional Finite Element Analysis

机译:三种骨质质量下立即加载植入物微调的螺距,螺旋角度和紧凑性的影响:三维有限元分析

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摘要

This study investigated the influence of thread pitch, helix angle, and compactness on micromotion in immediately loaded implants in bone of varying density (D2, D3, and D4). Five models of the three-dimensional finite element (0.8 mm pitch, 1.6 mm pitch, 2.4 mm pitch, double-threaded, and triple-threaded implants) in three types of bone were created using Pro/E, Hypermesh, and ABAQUS software. The study had three groups: Group 1, different pitches (Pitch Group); Group 2, same compactness but different helix angles (Angle Group); and Group 3, same helix angle but different compactness (Compact Group). Implant micromotion was assessed as the comprehensive relative displacement. We found that vertical relative displacement was affected by thread pitch, helix angle, and compactness. Under vertical loading, displacement was positively correlated with thread pitch and helix angle but negatively with compactness. Under horizontal loading in D2, the influence of pitch, helix angle, and compactness on implant stability was limited; however, in D3 and D4, the influence of pitch, helix angle, and compactness on implant stability is increased. The additional evidence was provided that trabecular bone density has less effect on implant micromotion than cortical bone thickness. Bone type amplifies the influence of thread pattern on displacement.
机译:本研究研究了螺距,螺旋角度和紧凑性在不同密度(D2,D3和D4)中立即加载的植入物中微调对微调的影响(D2,D3和D4)。使用Pro / E,HyperMesh和Abaqus软件创建三种骨骼的三维有限元(0.8mm间距,1.6mm间距,2.4mm间距,双螺纹植入物)的五种模型。该研究有三组:第1组,不同的间距(俯仰组);第2组,相同的紧凑性但不同的螺旋角(角度组);和第3组,相同的螺旋角,但不同的紧凑性(紧凑型组)。植入物微观被评估为综合相对位移。我们发现垂直相对位移受螺纹间距,螺旋角度和紧凑性的影响。在垂直装载下,位移与螺距和螺旋角度呈正相关,但与紧凑性负面。在D2的水平载荷下,间距,螺旋角度和植入物稳定性紧凑的影响有限;然而,在D3和D4中,俯仰,螺旋角度和紧凑性对植入物稳定性的影响增加。提供了额外的证据,使得小梁骨密度对植入物微相的影响较小而不是皮质骨厚度。骨型放大螺纹图案对位移的影响。

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