Loosening of implants in bone is commonly associated with a development of fibrous interface tissues, due to interface gaps and a lack of mechanical stability. It has been postulated that the differentiation of these tissues to fibrocartilage or bone is governed by mechanical stimuli. The objective of the authors' research is to unravel these relationships to the extent that the question whether an implant will loosen can be answered from initial conditions determined by implant and interface morphology, and functional loads. In this project the authors studied the hypothesis that distortional strain and interstitial fluid flow are the mechanical stimuli governing tissue differentiation. For that purpose, a biomechanical regulatory model wa...
If musculoskeletal tissues are indeed efficient for their mechanical function, it is most reasonable...
If musculoskeletal tissues are indeed efficient for their mechanical function, it is most reasonable...
If musculoskeletal tissues are indeed efficient for their mechanical function, it is most reasonable...
Loosening of implants in bone is commonly associated with a development of fibrous interface tissues...
Loosening of implants in bone is commonly associated with a development of fibrous interface tissues...
Loosening of implants in bone is commonly associated with a development of fibrous interface tissues...
Loosening of implants in bone is commonly associated with a development of fibrous interface tissues...
If musculoskeletal tissues are indeed efficient for their mechanical function, it is most reasonable...
Nowadays, there is a growing consensus on the impact of mechanical loading on bone biology. A bone c...
Nowadays, there is a growing consensus on the impact of mechanical loading on bone biology. A bone c...
A model of tissue differentiation at the bone-implant interface is proposed. The basic hypothesis of...
International audienceIntroductionImproper osseointegration of implants leading to poor mechanical a...
International audienceIntroductionImproper osseointegration of implants leading to poor mechanical a...
International audienceIntroductionImproper osseointegration of implants leading to poor mechanical a...
If musculoskeletal tissues are indeed efficient for their mechanical function, it is most reasonable...
If musculoskeletal tissues are indeed efficient for their mechanical function, it is most reasonable...
If musculoskeletal tissues are indeed efficient for their mechanical function, it is most reasonable...
If musculoskeletal tissues are indeed efficient for their mechanical function, it is most reasonable...
Loosening of implants in bone is commonly associated with a development of fibrous interface tissues...
Loosening of implants in bone is commonly associated with a development of fibrous interface tissues...
Loosening of implants in bone is commonly associated with a development of fibrous interface tissues...
Loosening of implants in bone is commonly associated with a development of fibrous interface tissues...
If musculoskeletal tissues are indeed efficient for their mechanical function, it is most reasonable...
Nowadays, there is a growing consensus on the impact of mechanical loading on bone biology. A bone c...
Nowadays, there is a growing consensus on the impact of mechanical loading on bone biology. A bone c...
A model of tissue differentiation at the bone-implant interface is proposed. The basic hypothesis of...
International audienceIntroductionImproper osseointegration of implants leading to poor mechanical a...
International audienceIntroductionImproper osseointegration of implants leading to poor mechanical a...
International audienceIntroductionImproper osseointegration of implants leading to poor mechanical a...
If musculoskeletal tissues are indeed efficient for their mechanical function, it is most reasonable...
If musculoskeletal tissues are indeed efficient for their mechanical function, it is most reasonable...
If musculoskeletal tissues are indeed efficient for their mechanical function, it is most reasonable...
If musculoskeletal tissues are indeed efficient for their mechanical function, it is most reasonable...