Mariko Kobayashi, C. Ohkubo, H. Shimpo, Yasutaka Ishikawa, D. Kurihara, T. Hosoi, Toshiyuki Murata
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引用次数: 0
Abstract
The objective of this study was to evaluate the retentive force of one-piece implant (Nobel Direct; Nobel Biocare, Sweden) -supported overdentures including a telescope system. The regular platform Nobel Direct (4.3 mm dia.) was embedded in a brass patrix frame (10 x 10 x 25 mm) using autopolymerized polymethyl methacrylate (PMMA; Unifast II, GC). Two sizes of O-rings [O1 (2.8 mm dia.) and O2 (3.8 mm dia.), SAN-EI, Japan] and protection caps (PC; Straumann) were placed on the Nobel Direct abutment head. The plastic patterns of the Konus telescope outer crown were fabricated on the Nobel Direct abutment head and cast using the GC autocast system. As a control, the PMMA resin (RE) was made to directly touch the abutment head. The patrix and matrix frames were connected under 2 kg and then mounted on a screw-driven mechanical testing machine (Model UTM II, Toyo Boldwin, Japan). The retentive force (n=5, N) obtained at a crosshead speed of 40 mm⁄min was analyzed by ANOVA⁄Scheffe's test (α=0.05). The larger O-ring had less retentive force than the smaller O-ring. The Konus telescope had a retentive force comparable to that of the smaller O-ring (p>0.05). Although the retentive forces of the Konus telescope tended to increase as the connecting load increased, the force of the O-ring did not vary according to the connecting loads. For the one implant-supported overdentures, not only a medium-sized O-ring and protection cap but also coping and Konus telescopes demonstrated having appropriate retentive force.
本研究的目的是评估一件式种植体的固位力(Nobel Direct;诺贝尔生物保健公司,瑞典)支持覆盖假牙,包括望远镜系统。常规平台Nobel Direct (4.3 mm直径)使用自聚合聚甲基丙烯酸甲酯(PMMA)嵌入黄铜骨架(10 x 10 x 25 mm);Unifast II, GC)。两种尺寸的o型圈[O1 (2.8 mm直径)和O2 (3.8 mm直径),SAN-EI,日本]和保护帽(PC;施特劳曼)被放置在诺贝尔直接基台头部。采用GC自动铸造系统在诺贝尔直接基台头上制作了Konus望远镜外冠的塑料模型。作为对照,PMMA树脂(RE)直接接触基牙头。将矩阵和矩阵框架连接在2kg以下,然后安装在螺杆驱动的机械试验机(型号UTM II, Toyo Boldwin,日本)上。在十字速度为40 mm / min时获得的固位力(n=5, n)采用ANOVA / Scheffe’s检验(α=0.05)进行分析。较大的o型圈固位力小于较小的o型圈。Konus望远镜的固位力与较小的o形环相当(p>0.05)。虽然随着连接载荷的增加,Konus望远镜的固位力有增加的趋势,但o形圈的力不随连接载荷的增加而变化。对于单种植覆盖义齿,除了中等大小的o型环和保护帽外,顶部和Konus望远镜也具有适当的固位力。