Javascript must be enabled to continue!
Influence of marginal bone resorption on stress around an implant – a three‐dimensional finite element analysis
View through CrossRef
summary Average marginal bone resorption of about 1 mm after the first year of functional loading, which is followed by an annual loss of approximately 0·1 mm, has been reported in stable implants. However, finite element analyses on bone stress around implants have been limited to analysing the bone stress in the absence of any bone resorption. Thus, a three‐dimensional finite element analysis was performed to compare the bone stresses in a non‐resorption model with those in four models with bone resorption of two depths (1·3 and 2·6 mm) and types (horizontal resorption and angular defects). Axial and bucco‐lingual forces were separately applied to the center of the superstructure and the maximum equivalent stress was calculated. The main tendencies of bone stress (highest stress concentration around implant neck, higher stresses under bucco‐lingual than axial load, as well as in the cortical than cancellous bone) were the same in the non‐resorption and resorption models. Bone stress distributions were similar in the non‐resorption and horizontal resorption models, but differed from those in the angular defect models. Moreover, the changes of the bone stress values with resorption depth differed for the two resorption types. Thus, in FEA, accurate simulation of the marginal bone shape in the implant neck region is advisable.
Title: Influence of marginal bone resorption on stress around an implant – a three‐dimensional finite element analysis
Description:
summary Average marginal bone resorption of about 1 mm after the first year of functional loading, which is followed by an annual loss of approximately 0·1 mm, has been reported in stable implants.
However, finite element analyses on bone stress around implants have been limited to analysing the bone stress in the absence of any bone resorption.
Thus, a three‐dimensional finite element analysis was performed to compare the bone stresses in a non‐resorption model with those in four models with bone resorption of two depths (1·3 and 2·6 mm) and types (horizontal resorption and angular defects).
Axial and bucco‐lingual forces were separately applied to the center of the superstructure and the maximum equivalent stress was calculated.
The main tendencies of bone stress (highest stress concentration around implant neck, higher stresses under bucco‐lingual than axial load, as well as in the cortical than cancellous bone) were the same in the non‐resorption and resorption models.
Bone stress distributions were similar in the non‐resorption and horizontal resorption models, but differed from those in the angular defect models.
Moreover, the changes of the bone stress values with resorption depth differed for the two resorption types.
Thus, in FEA, accurate simulation of the marginal bone shape in the implant neck region is advisable.
Related Results
Frequency of Common Chromosomal Abnormalities in Patients with Idiopathic Acquired Aplastic Anemia
Frequency of Common Chromosomal Abnormalities in Patients with Idiopathic Acquired Aplastic Anemia
Objective: To determine the frequency of common chromosomal aberrations in local population idiopathic determine the frequency of common chromosomal aberrations in local population...
Implant‐Abutment Interface: Biomechanical Study of Flat Top versus Conical
Implant‐Abutment Interface: Biomechanical Study of Flat Top versus Conical
ABSTRACT Background: Overloading has been identified as a primary factor behind dental implant failure. The peak bone stresses normally appear in the marginal bone. The anchorage s...
Biomechanical aspects of marginal bone resorption around osseointegrated implants: considerations based on a three‐dimensional finite element analysis
Biomechanical aspects of marginal bone resorption around osseointegrated implants: considerations based on a three‐dimensional finite element analysis
AbstractObjectives: Although bone loss around implants is reported as a complication when it progresses uncontrolled, resorption does not always lead to implant loss, but may be t...
Stress and Strain Studies of Different Materials of the Dental Implant in Single Implant-Supported Prosthesis: A Finite Element Analysis
Stress and Strain Studies of Different Materials of the Dental Implant in Single Implant-Supported Prosthesis: A Finite Element Analysis
Background and Objective: The elastic modulus of carbon fiber reinforced polyetheretherketone is close to that of bone tissue and has proven to be an excellent substitute for titan...
The Effect of Implant Length and Bone Quality on the Biomechanical Responses of Dental Implant and Surrounding Bone – A Three-Dimensional Finite Element Analysis
The Effect of Implant Length and Bone Quality on the Biomechanical Responses of Dental Implant and Surrounding Bone – A Three-Dimensional Finite Element Analysis
The robustness of dental implant systems in the context of occlusal restoration relies significantly on biomechanical factors associated with the imposition of excessive loads. The...
Techniques to Remove Press-Fit Osseointegration Implants
Techniques to Remove Press-Fit Osseointegration Implants
Background:
Transcutaneous osseointegration for amputees (TOFA) has proven to consistently, significantly improve the quality of life and...
Finite Element Analysis (FEA) for Influence of Variation in Dental Implant Dimensions (Length and Diameter) on Peri-implant Bone Stress/Strain Distribution: A Systematic Review
Finite Element Analysis (FEA) for Influence of Variation in Dental Implant Dimensions (Length and Diameter) on Peri-implant Bone Stress/Strain Distribution: A Systematic Review
Background & Objective: Currently, there are many implants in clinical use, making it hard to choose the right one for the patient. The success rate of an implant depends on it...
Stress and Strain Analysis of the Bone-Implant Interface: A Comparison of Fiber-Reinforced Composite and Titanium Implants Utilizing 3-Dimensional Finite Element Study
Stress and Strain Analysis of the Bone-Implant Interface: A Comparison of Fiber-Reinforced Composite and Titanium Implants Utilizing 3-Dimensional Finite Element Study
This study analyzed stress and strain mediated by 2 different implant materials, titanium (Ti) and experimental fiber-reinforced composite (FRC), on the implant and on the bone tis...

