Danley B T, Hamilton B N, Tantbirojn D, Goldstein R E, Versluis A
Oper Dent. 2018 Nov/Dec;43(6):E300-E307. doi: 10.2341/17-329-L. Epub 2018 Oct 10.
: Cracks in amalgam-filled teeth may be related to amalgam expansion. This study measured cuspal flexure and used finite element analysis to assess associated stress levels in amalgam-filled teeth.
: External surfaces of 18 extracted molars were scanned in three dimensions. Nine molars were restored with mesio-occluso-distal amalgam fillings; the other teeth were left intact as controls. All teeth were stored in saline and scanned after two, four, and eight weeks. Cuspal flexure and restoration expansion were determined by calculating the difference between scanned surfaces. Stresses in a flexed tooth were calculated using finite element analysis.
: Cusps of amalgam-filled teeth flexed outward approximately 3 μm, and restoration surfaces expanded 4 to 8 μm during storage. Cuspal flexure was significantly higher in the amalgam group (multivariate tests, p<0.05), but storage time had no significant effect (repeated measures, p>0.05). Expansion caused stress concentrations at the cavity line angles. These stress concentrations increased stresses due to mastication 44% to 178%.
: Amalgam expansion pushed cavity walls outward, which created stress concentrations at the cavity line angles. Expansion stresses can raise stresses in amalgam-filled teeth and contribute to incidentally observed cracks.
银汞合金充填牙的裂纹可能与银汞合金的膨胀有关。本研究测量了牙尖弯曲度,并使用有限元分析来评估银汞合金充填牙中的相关应力水平。
对18颗拔除的磨牙的外表面进行三维扫描。9颗磨牙用近中-咬合-远中银汞合金充填修复;其他牙齿作为对照保持完整。所有牙齿均储存在盐水中,并在2周、4周和8周后进行扫描。通过计算扫描表面之间的差异来确定牙尖弯曲度和修复体膨胀。使用有限元分析计算弯曲牙齿中的应力。
银汞合金充填牙的牙尖向外弯曲约3μm,修复体表面在储存期间膨胀4至8μm。银汞合金组的牙尖弯曲度显著更高(多变量检验,p<0.05),但储存时间没有显著影响(重复测量,p>0.05)。膨胀在洞缘角处引起应力集中。这些应力集中使咀嚼引起的应力增加了44%至178%。
银汞合金的膨胀将洞壁向外推,这在洞缘角处产生了应力集中。膨胀应力可增加银汞合金充填牙中的应力,并导致偶然观察到的裂纹。