Matta Ragai Edward, Berger Lara, Loehlein Moritz, Leven Linus, Taxis Juergen, Wichmann Manfred, Motel Constantin
Dental Clinic 2-Dental Prosthodontics, University Hospital Erlangen, Glueckstrasse 11, 91054 Erlangen, Germany.
Clinic for Oro- and Maxillofacial Surgery, University hospital Regensburg, Franz-Josef-Strauß-Allee 11, 93053 Regensburg, Germany.
Materials (Basel). 2024 May 6;17(9):2161. doi: 10.3390/ma17092161.
Stress distribution and its magnitude during loading heavily influence the osseointegration of dental implants. Currently, no high-resolution, three-dimensional method of directly measuring these biomechanical processes in the peri-implant bone is available. The aim of this study was to measure the influence of different implant materials on stress distribution in the peri-implant bone. Using the three-dimensional ARAMIS camera system, surface strain in the peri-implant bone area was compared under simulated masticatory forces of 300 N in axial and non-axial directions for titanium implants and zirconia implants. The investigated titanium implants led to a more homogeneous stress distribution than the investigated zirconia implants. Non-axial forces led to greater surface strain on the peri-implant bone than axial forces. Thus, the implant material, implant system, and direction of force could have a significant influence on biomechanical processes and osseointegration within the peri-implant bone.
加载过程中的应力分布及其大小对牙种植体的骨结合有很大影响。目前,尚无直接测量种植体周围骨中这些生物力学过程的高分辨率三维方法。本研究的目的是测量不同种植体材料对种植体周围骨应力分布的影响。使用三维ARAMIS相机系统,在300 N的模拟咀嚼力下,比较了轴向和非轴向方向上钛种植体和氧化锆种植体周围骨区域的表面应变。研究的钛种植体比研究的氧化锆种植体导致更均匀的应力分布。非轴向力比轴向力在种植体周围骨上产生更大的表面应变。因此,种植体材料、种植体系统和力的方向可能对种植体周围骨内的生物力学过程和骨结合有显著影响。