首页> 外文期刊>The International journal of periodontics & restorative dentistry >Connective tissue attachment to laser-microgrooved abutments: a human histologic case report.
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Connective tissue attachment to laser-microgrooved abutments: a human histologic case report.

机译:结缔组织附着在激光微槽基台上:人类组织学病例报告。

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摘要

Previous preclinical and clinical studies have demonstrated the effectiveness of precisely configured laser-ablated microgrooves placed on implant collars to allow direct connective tissue attachment to the implant surface. A recent canine study examining laser-ablated microgrooves placed in a defined healing abutment area demonstrated similar findings. In both instances, direct connective tissue attachment to the implant-abutment surface served as an obstacle to the apical migration of the junctional epithelium, thus preventing crestal bone resorption. The current case report examines the effectiveness of abutment-positioned laser-ablated microgrooves in human subjects. As in the preclinical trial, precisely defined laser-ablated microgrooves allowed direct connective tissue attachment to the altered abutment surface, prevented apical migration of the junctional epithelium, and thus protected the crestal bone from premature resorption.
机译:先前的临床前和临床研究已经证明,将精确配置的激光烧蚀微槽放置在植入物颈托上,以允许直接的结缔组织附着在植入物表面上是有效的。最近的一项犬科研究检查了放置在确定的愈合基台区域中的激光烧蚀微槽,发现了类似的发现。在这两种情况下,直接结缔组织附着在植入物-基台表面上均会阻碍结膜上皮的根尖迁移,从而阻止了cre骨的吸收。本病例报告研究了基台定位的激光烧蚀微槽在人类受试者中的有效性。与临床前试验一样,精确定义的激光烧蚀微槽可将结缔组织直接附着在改变后的基台表面上,防止结缔上皮的根尖迁移,从而保护protected骨免于过早吸收。

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