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十三年后从人上颌骨取出的植入物的组织形态计量评估。

Histomorphic-metric evaluation of an implant retrieved from human maxilla after 13 years.

机构信息

EIS-international educational society and private practice, San Benedetto del Tronto, Italy.

出版信息

Int J Immunopathol Pharmacol. 2011 Apr-Jun;24(2 Suppl):25-30. doi: 10.1177/03946320110240S206.

Abstract

Fixture fracture is the most catastrophic failure of implant components because it usually causes the loss of the implant. Nevertheless, the osseointegrated fractured implants represent a very useful opportunity to study in humans the effects of loading to the peri-implant bone microstructure. The aim of the present study was to evaluate the interplay between microstructure and function of the bone around an implant retrieved from human maxilla after 13 years. There was 1 fractured Dental Implant Line (sand blasted surface from a patient placed in the anterior region of the maxillary bone (2.1) after a bone augmentation procedure, and it was processed for histology. The specimen was analyzed under the scanning electron microscope (SEM), the confocal scanning laser microscope (CSLM) and brightfield light microscope (LM) equipped with circularly polarized light (CPL). The BIC rate of the implant retrieved after 13 years was (mean ±SD) 68.7 ± 3.7. The crestal bone down the implant platform damage appeared to be under modeling process. The transverse collagen fiber orientation (CFO) (mean ±SD) under the lower flank of the threads was 20.4 ± 3.5 x 10(4) pixel while the longitudinal CFO was 19.8 ± 2.8 x 10(4) pixel (P>.05). In the inter-threads region the transverse CFO (mean ±SD) was 15.0 ± 4.0 x 10(4) pixel while the longitudinal CFO was 21.4 ± 3.0 x 10(4) pixel (P>.05). The osteocytes numbers (mean ±SD) was 130 ∓ 34. Under SEM with back scattered electrons (BSE) signal the peri-implant bone appears mainly lamellar and highly mature with several osteons organized in the implant inter-threads areas. The fracture of the implant was most probably correlated to a fatigue of the material mainly associated to a damage of the internal coil. Surprisingly, it was noted a lack of implant site-specific CFO of the bone extracellular matrix facing the threaded dental implant notwithstanding the high level of BIC rate.

摘要

器械断裂是种植体部件最灾难性的失效形式,因为它通常会导致种植体丢失。然而,骨整合的断裂种植体为研究人类种植体周围骨微结构的受力提供了非常有用的机会。本研究的目的是评估从上颌骨中取出的植入物 13 年后,植入物周围骨的微观结构和功能之间的相互作用。有一个断裂的牙种植体线(来自一位患者的喷砂表面,植入上颌骨前部区域 2.1 区),在进行骨增量手术后取出,并进行了组织学处理。该标本在扫描电子显微镜(SEM)、共聚焦扫描激光显微镜(CSLM)和配备圆偏振光(CPL)的明场显微镜(LM)下进行了分析。植入物在 13 年后取出时的 BIC 率(平均值±标准差)为 68.7±3.7。种植体平台下方的牙槽骨似乎处于重塑过程中。螺纹下侧的横向胶原纤维取向(CFO)(平均值±标准差)为 20.4±3.5×104像素,而纵向 CFO 为 19.8±2.8×104像素(P>.05)。在螺纹之间区域,横向 CFO(平均值±标准差)为 15.0±4.0×104像素,而纵向 CFO 为 21.4±3.0×104像素(P>.05)。骨细胞数量(平均值±标准差)为 130±34。在背散射电子(BSE)信号 SEM 下,种植体周围的骨主要呈层状,高度成熟,在种植体螺纹之间区域有几个骨单位组织。植入物的断裂很可能与材料的疲劳有关,主要与内圈的损伤有关。令人惊讶的是,尽管 BIC 率很高,但在植入物表面的骨细胞外基质中,没有发现针对螺纹牙种植体的特定植入物部位的 CFO。

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