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低频加载应变对种植体周围骨(再)塑形的影响:一项豚鼠实验研究。

Effect of strain at low-frequency loading on peri-implant bone (re)modelling: a guinea-pig experimental study.

作者信息

De Smet Els, Jaecques Siegfried V N, Jansen John J, Walboomers Frank, Vander Sloten Jos, Naert Ignace E

机构信息

Department of Prosthetic Dentistry/BIOMAT Research Group, School of Dentistry, Oral Pathology and Maxillofacial Surgery, Faculty of Medicine, K.U.Leuven, Leuven, Belgium.

出版信息

Clin Oral Implants Res. 2008 Aug;19(8):733-9. doi: 10.1111/j.1600-0501.2008.01474.x. Epub 2008 May 19.

Abstract

OBJECTIVES

To investigate whether controlled early loading enhances peri-implant bone mass and bone-to-implant contact. Low-frequency stimulation (3 Hz) and varying force amplitudes, causing varying strains, were applied in three guinea-pig series.

MATERIAL AND METHODS

Three series of guinea-pigs received percutaneous TiO(2)-blasted implants in both tibiae. One week after implant installation, one implant was stimulated with a sinusoidally varying bending moment while the contra-lateral implant served as an unloaded control. Force amplitudes of 0.5, 1 and 2 N were applied on a 20-mm-long cantilever, resulting in strains of 133, 267 and 533 muepsilon, respectively, measured by a strain gauge bonded on the surface of the tibial bone at 1.3 mm from the implant's distal surface. Implant stability was followed by means of resonance frequency analysis. Bone-to-implant contact and bone mass [BM (%) bone occupied area fraction] were analysed histomorphometrically.

RESULTS

A significant positive effect on the difference in bone mass at the stimulated vs. at the control side was observed in the distal half peri-implant marrow cavity for early mechanical stimulation at a frequency of 3 Hz (P<0.0001). An optimum was reached for the applied load, which causes a strain of approximately 267 muepsilon 1.3 mm from the implant. Implant stability gradually increased in time; no significant effect of early stimulation could be measured.

CONCLUSIONS

The effect of early controlled mechanical stimulation on the peri-implant bone, in this cortical bone model, is strongly dependent on force amplitude/strain at low-frequency stimulation.

摘要

目的

研究早期控制性加载是否能增强种植体周围骨量及骨与种植体的接触。在三组豚鼠中施加低频刺激(3Hz)及不同的力幅值,从而产生不同的应变。

材料与方法

三组豚鼠双侧胫骨均植入经TiO(2)喷砂处理的种植体。种植体植入一周后,一个种植体通过正弦变化的弯矩进行刺激,对侧种植体作为未加载的对照。在20mm长的悬臂上施加0.5、1和2N的力幅值,通过粘贴在距种植体远端表面1.3mm处胫骨表面的应变片测量,分别产生133、267和533με的应变。通过共振频率分析跟踪种植体稳定性。采用组织形态计量学分析骨与种植体的接触及骨量[骨占面积百分比(BM%)]。

结果

在种植体周围远侧半骨髓腔,对于3Hz频率的早期机械刺激,观察到刺激侧与对照侧骨量差异有显著的正向效应(P<0.0001)。对于所施加的载荷存在一个最佳值,在距种植体1.3mm处产生约267με的应变。种植体稳定性随时间逐渐增加;未检测到早期刺激的显著影响。

结论

在这个皮质骨模型中,早期控制性机械刺激对种植体周围骨的影响在低频刺激时强烈依赖于力幅值/应变。

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