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骨-植入物界面的多尺度分析。

Multiscale analyses of the bone-implant interface.

作者信息

Cha J Y, Pereira M D, Smith A A, Houschyar K S, Yin X, Mouraret S, Brunski J B, Helms J A

机构信息

Division of Plastic and Reconstructive Surgery, Department of Surgery, Stanford School of Medicine, Stanford, CA, USA Orthodontic Department, College of Dentistry, Yonsei University, Seoul, South Korea.

Division of Plastic and Reconstructive Surgery, Department of Surgery, Stanford School of Medicine, Stanford, CA, USA.

出版信息

J Dent Res. 2015 Mar;94(3):482-90. doi: 10.1177/0022034514566029. Epub 2015 Jan 27.

Abstract

Implants placed with high insertion torque (IT) typically exhibit primary stability, which enables early loading. Whether high IT has a negative impact on peri-implant bone health, however, remains to be determined. The purpose of this study was to ascertain how peri-implant bone responds to strains and stresses created when implants are placed with low and high IT. Titanium micro-implants were inserted into murine femurs with low and high IT using torque values that were scaled to approximate those used to place clinically sized implants. Torque created in peri-implant tissues a distribution and magnitude of strains, which were calculated through finite element modeling. Stiffness tests quantified primary and secondary implant stability. At multiple time points, molecular, cellular, and histomorphometric analyses were performed to quantitatively determine the effect of high and low strains on apoptosis, mineralization, resorption, and collagen matrix deposition in peri-implant bone. Preparation of an osteotomy results in a narrow zone of dead and dying osteocytes in peri-implant bone that is not significantly enlarged in response to implants placed with low IT. Placing implants with high IT more than doubles this zone of dead and dying osteocytes. As a result, peri-implant bone develops micro-fractures, bone resorption is increased, and bone formation is decreased. Using high IT to place an implant creates high interfacial stress and strain that are associated with damage to peri-implant bone and therefore should be avoided to best preserve the viability of this tissue.

摘要

以高植入扭矩(IT)植入的种植体通常具有初期稳定性,这使得能够早期加载。然而,高IT是否会对种植体周围骨健康产生负面影响仍有待确定。本研究的目的是确定当种植体以低IT和高IT植入时,种植体周围骨如何对所产生的应变和应力作出反应。使用按比例缩放以近似用于植入临床尺寸种植体的扭矩值,将钛微种植体以低IT和高IT插入小鼠股骨。种植体周围组织中产生的扭矩形成了应变的分布和大小,通过有限元建模计算得出。刚度测试量化了种植体的初期和二期稳定性。在多个时间点进行分子、细胞和组织形态计量学分析,以定量确定高应变和低应变对种植体周围骨细胞凋亡、矿化、吸收和胶原基质沉积的影响。制备截骨术会导致种植体周围骨中有一个狭窄的死亡和濒死骨细胞区域,该区域在以低IT植入种植体时不会显著扩大。以高IT植入种植体会使这个死亡和濒死骨细胞区域增加一倍以上。结果,种植体周围骨出现微骨折,骨吸收增加,骨形成减少。使用高IT植入种植体会产生高界面应力和应变,这与种植体周围骨损伤有关,因此应避免使用以最好地保持该组织的活力。

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Multiscale analyses of the bone-implant interface.骨-植入物界面的多尺度分析。
J Dent Res. 2015 Mar;94(3):482-90. doi: 10.1177/0022034514566029. Epub 2015 Jan 27.

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