Mechanical and Biological Advantages of a Tri-Oval Implant Design
Механические и биологические преимущества триовальной конструкции имплантата
2019-03-28
SCID: 54.1/2s9bkngh
Discuss with AI
osseointegrationosteocyte apoptosisperi-implant strainprimary implant stabilitytri-oval implant design
Figures from the paper
Abstract (AI)
Of all geometric shapes, a tri-oval one may be the strongest because of its capacity to bear large loads with neither rotation nor deformation. Here, we modified the external shape of a dental implant from circular to tri-oval, aiming to create a combination of high strain and low strain peri-implant environment that would ensure both primary implant stability and rapid osseointegration, respectively. Using in vivo mouse models, we tested the effects of this geometric alteration on implant survival and osseointegration over time. The maxima regions of tri-oval implants provided superior primary stability without increasing insertion torque. The minima regions of tri-oval implants presented low compressive strain and significantly less osteocyte apoptosis, which led to minimal bone resorption compared to the round implants. The rate of new bone accrual was also faster around the tri-oval implants. We further subjected both round and tri-oval implants to occlusal loading immediately after placement. In contrast to the round implants that exhibited a significant dip in stability that eventually led to their failure, the tri-oval implants maintained their stability throughout the osseointegration period. Collectively, these multiscale biomechanical analyses demonstrated the superior in vivo performance of the tri-oval implant design.
Key Findings
1
A tri-oval dental implant geometry combines load-bearing maxima with low-strain minima to support stability and osseointegration.
2
Low compressive strain at tri-oval minima reduced osteocyte apoptosis and bone resorption relative to round implants.
3
New bone accumulated faster around tri-oval implants than around round implants.
4
Tri-oval implant maxima provided superior primary stability without increasing insertion torque compared with round implants.
5
Under immediate occlusal loading, tri-oval implants maintained stability throughout osseointegration, whereas round implants lost stability and ultimately failed.
Research Object
Tri-oval and circular dental implants in vivo mouse models
Research Subject
The effects of implant geometry on primary stability, peri-implant strain, osteocyte apoptosis, bone resorption, osseointegration, implant survival, and stability under immediate occlusal loading
Publication Details
Publication Date
2019-03-28
Journal
Publisher
ISSN
Open access PDF
Access Type
Author Information
Download PDF
Subscribe to digest