首页> 外文期刊>Clinical oral implants research >Neural response to sandblasted/acid-etched, TiO-blasted, polished, and mechanochemically polishedanostructured titanium implant surfaces.
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Neural response to sandblasted/acid-etched, TiO-blasted, polished, and mechanochemically polishedanostructured titanium implant surfaces.

机译:对喷砂/酸蚀,TiO喷砂,抛光和机械化学抛光/纳米结构的钛植入物表面的神经反应。

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摘要

The purpose of this study was to explore morphologic, functional, and behavioral effects of rough (sandblasted-large grid/acid-etched (SLA) and TiO2 blasted), mechanically polished, and mechanochemically polished titanium implant surfaces on nerves. The compound action potentials (cAPs) of sciatic nerves of sacrificed Wistar rats (n=10) were quantified at the in vitro level, while contacting disk-shaped test specimens. The test specimens were also implanted directly on the sciatic nerves of another group of animals (n=33), hot-plate tests were undertaken for 10 consecutive days, and then the animals were sacrificed. Quantification of signal transduction speeds and cAPs of the nerves of these animals were undertaken at the in vitro level. Finally, the nerves were processed for histologic analysis. The signal transduction speeds and duration of cAPs of all groups were similar (P>0.05), whereas the amplitudes of cAPs of nerves contacting SLA implants were higher than those of TiO2 blasted and mechanochemically polished surfaces (P<0.05). Response latencies of nerves contacting mechanically polished specimens were slightly higher than the other groups (P>0.05). Histologic evaluations did not reveal any signs of adverse tissue response adjacent to specimens tested. Rough and polished titanium implant surfaces lead to similar neural response in vivo and in vitro that fall into physiologic limits.
机译:这项研究的目的是探讨粗糙(经喷砂处理的大型网格/酸蚀(SLA)和TiO2喷砂处理),机械抛光和机械化学抛光的钛植入物在神经上的形态,功能和行为影响。在接触圆盘形试样的同时,在体外水平定量处死Wistar大鼠(n = 10)的坐骨神经的复合动作电位(cAPs)。还将测试样品直接植入另一组动物(n = 33)的坐骨神经上,连续10天进行热板测试,然后处死动物。在体外水平上对这些动物的神经的信号转导速度和cAP进行定量。最后,对神经进行处理以进行组织学分析。各组cAPs的信号转导速度和持续时间相似(P> 0.05),而与SLA植入物接触的神经的cAPs幅度高于经TiO2喷砂和机械化学抛光的表面(P <0.05)。接触机械抛光标本的神经的反应潜伏期略高于其他组(P> 0.05)。组织学评估未显示与所测试标本相邻的任何不良组织反应的迹象。粗糙且抛光的钛植入物表面会在体内和体外导致类似的神经反应,从而落入生理极限。

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