Holst Alexandra Ioana, Karl Matthias, Karolczak Marek, Goellner Matthias, Holst Stefan
University Clinic Erlangen, Dental Clinic 3-Department of Orthodontics, Erlangen, Germany.
Quintessence Int. 2010 Jan;41(1):59-66.
Primary stability and micromovement of orthodontic mini-implants depends on a number of factors and influences clinical success or failure. The purpose of this study was to assess the behavior of orthodontic mini-implants upon initial load application.
Orthodontic mini-implants (n = 39) were inserted in the alveolar process of maxillary human cadaver specimens (n = 10). Increasing horizontal forces (up to 2.5 N) were applied, and triggered images were taken in 0.5-N load intervals. Additionally, peri-implant parameters based on micro-CT volume data were recorded. Data were subjected to a two-sided nonparametric Wilcoxon signed rank test, and between-group comparisons were assessed with a Mann-Whitney test (alpha = .05).
Initial load application led to displacement beyond elastic recovery of the surrounding bone after force release (P < .001). Cortical thickness and insertion depth, despite numeric differences, did not reveal any statistical differences, while displacement of mini-implants was significantly affected by contact to neighboring teeth (P < .001).
Insertion technique and initial load application on orthodontic mini-implants may be regarded as two crucial factors for success, while repeated application of orthodontic force does not seem to increase screw mobility.
正畸微型种植体的初期稳定性和微动取决于多种因素,并影响临床成败。本研究的目的是评估正畸微型种植体在初始加载时的行为。
将正畸微型种植体(n = 39)植入上颌人体尸体标本(n = 10)的牙槽突中。施加逐渐增加的水平力(最大2.5 N),并以0.5 N的加载间隔拍摄触发图像。此外,记录基于微型CT体积数据的种植体周围参数。数据进行双侧非参数Wilcoxon符号秩检验,组间比较采用Mann-Whitney检验(α = 0.05)。
初始加载导致力释放后周围骨的位移超出弹性恢复范围(P < 0.001)。皮质厚度和植入深度尽管存在数值差异,但未显示出任何统计学差异,而微型种植体的位移受到与相邻牙齿接触的显著影响(P < 0.001)。
正畸微型种植体的植入技术和初始加载可被视为成功的两个关键因素,而反复施加正畸力似乎不会增加螺钉的移动性。