首页> 美国卫生研究院文献>The Journal of the Indian Prosthodontic Society >A Functional Stress Analysis in the Maxillary Complete Denture Influenced by the Position of Artificial Teeth and Load Levels: an In-vitro Study
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A Functional Stress Analysis in the Maxillary Complete Denture Influenced by the Position of Artificial Teeth and Load Levels: an In-vitro Study

机译:上颌全口义齿中受人造牙齿位置和负荷水平影响的功能应力分析:一项体外研究

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摘要

The fracture of complete dentures fabricated using Polymethyl methacrylate resin constitutes a challenge to the clinician and remains an unresolved problem. To determine whether gradual increase in load or different posterior teeth positions in maxillary denture would influence the pattern of stress. Two groups of maxillary dentures were fabricated with different posterior teeth positions (Group I with teeth on the crest of the ridge; Group II with buccal to the crest of the ridge.) using casts prepared from prefabricated edentulous molds, with 5 dentures in each group. Two strain gauges were cemented on to the midline of each denture, one on the anterior palatal area and other on the posterior palatal area. The dentures were loaded from 0 to 110 N in steps of 10 N, and the strains induced were measured. Differences of the stress magnitudes between the 2 groups were statistically analyzed using Mann–Whitney U test. The anterior palatal area of the maxillary denture was dominated by a tensile stress, which was greater in the group II than in group I. The posterior palatal area was dominated by compressive stress but the outer placement of the maxillary teeth caused a significant decrease in the compressive stress. The high anterior tensile stress with compressive stress in the posterior palatal area during loading may be responsible for denture base fractures that initiate from the anterior palatal area. The buccal placement of posterior teeth may play a role in the fatigue fracture of the maxillary denture.
机译:使用聚甲基丙烯酸甲酯树脂制成的全口义齿的断裂对临床医生构成挑战,并且仍然是未解决的问题。为了确定负荷的逐渐增加或上颌义齿中不同的后牙位置是否会影响应力模式。使用从预制无牙模具制备的铸模,制作了两组具有不同后牙位置的上颌义齿(I组,其牙齿位于的顶部; II组,其颊侧至to的顶部)。 。将两个应变仪固定在每个义齿的中线上,一个在前pa区上,另一个在后lat区上。假牙以10 N的步长从0到110 N加载,并测量了诱发的应变。使用Mann-Whitney U检验对两组之间的压力大小差异进行统计分析。上颌义齿的前pa区域受拉伸应力支配,在第二组中比第一组更大。后area区由压应力支配,但上颌牙齿的外侧位置导致上颌假牙的显着减少。压应力。在加载过程中,后area区高的前拉应力和压缩应力可能是由前pa区引发的义齿基托骨折的原因。后牙的颊侧放置可能在上颌义齿的疲劳性骨折中起作用。

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