...
首页> 外文期刊>Clinical oral implants research >In vitro retention force changes during cyclic dislodging of three novel attachment systems for implant overdentures with different implant angulations
【24h】

In vitro retention force changes during cyclic dislodging of three novel attachment systems for implant overdentures with different implant angulations

机译:在具有不同植入角度的植入物覆盖的三种新型附着体系的循环脱落过程中的体外保留力变化

获取原文
获取原文并翻译 | 示例
           

摘要

Abstract Objectives This in vitro study aimed to compare changes in retentive force due to cyclic dislodging of three novel un‐splinted attachments. Materials and Methods Experimental models simulating a mandibular two‐implant overdenture situation, with implants positioned with various interimplant discrepancies (0°, 20°, 40°, and 60°) were fabricated. Three attachment systems were tested, “N”: a straight or 15°‐angulated stud; “L”: a sole straight stud; and “C”: a straight or individually angulated stud. All models underwent wet testing and were subjected to 10,000 insertion–removal cycles in a universal testing machine. The mean retentive forces were calculated for cycles 10, 100, 1,000, 5,000, and 10,000. Multiple mixed‐effects linear regression models were applied for statistical analyses (???0.05). Results “N” demonstrated an increasing retention until 1,000 cycles, which subsequently diminished back to its initial retention at 10,000 cycles, showing no significant loss during the entire experiment. Statistical models demonstrated no effect of implant angulation on retention, except for 60° after 10,000 cycles ( p ??.05). “L” showed an early peak at 100 cycles and did not significantly lose retentive force before 5,000 cycles. Angulations of 40° or higher were shown to lead to lower retentive forces (0° vs. 40° cycle 5,000: p ??.05; 0° vs. 60° cycle 100: p ??.05, ≥cycle 1,000: p ??.001). “C” showed stable retentive forces with no significant loss only at 10,000 cycles (all angles: p ??.001) or 5,000 cycles (0° vs. 60°: p ??.05). Conclusions All systems showed retentive forces promising successful clinical use in implant overdentures, even in situations with extremely angulated implants. Specific abutments compensating interimplant angulation maintain retention longer in situations with high axe divergencies.
机译:摘要目的这一体外研究旨在使由于三种新型联合夹层附件的循环脱落引起的保持力的变化。材料和方法实验模型模拟下颌两植入物覆盖情况,植入物定位,植入物定位在各种中间层差异(0°,20°,40°和60°)。测试了三个附件系统,“n”:直线或15°张力的螺柱; “L”:唯一的直柱;和“C”:直线或单独的角度螺柱。所有型号都接受了湿式测试,并在通用试验机中进行了10,000个插入循环。计算平均保留力为循环10,100,1,000,5,000和10,000计算。施用多个混合效应线性回归模型统计分析(Δω≤0.05)。结果“n”证明了持续升温,直至1,000个循环,随后在10,000个循环中缩短回到其初始保留,显示在整个实验中没有显着损失。统计模型证明了植入角度对保持的影响,除了10,000个循环后的60°(p≤0.05)。 “L”在100次循环中显示出早期峰值,并且在5,000次循环之前没有显着丧失保留力。显示40°或更高的角度导致保持较低的保持力(0°与40°循环5,000:p≤05; 05; 0°与60°循环100:p≤05.05,≥循环1,000:p?& 001)。 “C”显示稳定的保持力,仅在10,000个循环中没有显着损失(全角度:p?001)或5,000个循环(0°与60°:p≤0°0°0°。05)。结论所有系统都显示出保持术语在植入物覆盖的成功临床用途,即使在具有极其角度植入物的情况下也是如此。补偿中间角度的特定基台保持在具有高轴分歧的情况下保持更长时间。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号