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预防种植体治疗风险的生物材料和生物力学考虑因素。

Biomaterial and biomechanical considerations to prevent risks in implant therapy.

机构信息

Department of Prosthodontics and Periodontology, University of São Paulo Bauru School of Dentistry, Bauru, Brazil.

Department of Applied Prosthodontics, Nagasaki University Graduate School of Biomedical Sciences, Nagasaki, Japan.

出版信息

Periodontol 2000. 2019 Oct;81(1):139-151. doi: 10.1111/prd.12288.

Abstract

This paper is aimed to present a biomaterials perspective in implant therapy that fosters improved bone response and long-term biomechanical competence from surgical instrumentation to final prosthetic rehabilitation. Strategies to develop implant surface texturing will be presented and their role as an ad hoc treatment discussed in light of the interplay between surgical instrumentation and implant macrogeometric configuration. Evidence from human retrieved implants in service for several years and from in vivo studies will be used to show how the interplay between surgical instrumentation and implant macrogeometry design affect osseointegration healing pathways, and bone morphologic and long-term mechanical properties. Also, the planning of implant-supported prosthetic rehabilitations targeted at long-term performance will be appraised from a standpoint where personal preferences (eg, cementing or screwing a prosthesis) can very often fail to deliver the best patient care. Lastly, the acknowledgement that every rehabilitation will have its strength degraded over time once in function will be highlighted, since the potential occurrence of even minor failures is rarely presented to patients prior to treatment.

摘要

本文旨在从生物材料的角度探讨植入物治疗,从手术器械到最终的修复体康复,促进改善骨反应和长期生物力学性能。将介绍开发植入物表面纹理的策略,并根据手术器械和植入物宏观几何形状之间的相互作用,讨论它们作为一种特定治疗方法的作用。将使用在役多年的人类取出植入物和体内研究的证据来展示手术器械和植入物宏观几何设计之间的相互作用如何影响骨整合愈合途径以及骨形态和长期机械性能。此外,还将从长期性能的角度评估针对植入物支持的修复体的规划,因为个人偏好(例如,用水泥或螺钉固定修复体)往往不能提供最佳的患者护理。最后,强调指出,一旦开始使用,每个修复体的功能都会随着时间的推移而降低,因为在治疗前很少向患者展示甚至是轻微故障的潜在发生。

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