AbstractObjectiveThe objective of this study was to investigate the effect of mechanical strain by mapping physicochemical properties at periodontal ligament (PDL)–bone and PDL–cementum attachment sites and within the tissues per se.DesignAccentuated mechanical strain was induced by applying a unidirectional force of 0.06N for 14days on molars in a rat model. The associated changes in functional space between the tooth and bone, mineral forming and resorbing events at the PDL–bone and PDL–cementum attachment sites were identified by using micro-X-ray computed tomography (micro-XCT), atomic force microscopy (AFM), dynamic histomorphometry, Raman microspectroscopy, and AFM-based nanoindentation technique. Results from these analytical techniq...
Mechanical strain applied to bone leads to bone remodeling. In the oral cavity, it is unclear how su...
Functional loads on an organ induce tissue adaptations by converting mechanical energy into chemical...
The periodontal ligament (PDL) is a vascularized, innervated, cellular, and\ud collagenous connectiv...
ObjectiveThe objective of this study was to investigate the effect of mechanical strain by mapping p...
AbstractObjectiveThe objective of this study was to investigate the effect of mechanical strain by m...
The load-bearing dentoalveolar fibrous joint is composed of biomechanically active periodontal ligam...
The aim of this study was to investigate the effect of reduced functional loads on the spatio-tempor...
This study investigates bony protrusions within a narrowed periodontal ligament space (PDL-space) of...
Similar to other tissues in the body, the dentoalveolar complex is constantly subjected to functiona...
This study investigates bone-tooth association under compression to identify strain amplified sites ...
OBJECTIVE: To investigate the osteoblast-like functional characteristics exhibited by human periodon...
The novel aspect of this study involves illustrating significant adaptation of a functionally loaded...
The novel aspect of this study was to contextualize the co-localization of biomolecular expression i...
Spatiotemporal implant-bone biomechanics and mechanoadaptive strains in peri-implant tissue are poor...
Mechanical strain applied to bone leads to bone remodeling. In the oral cavity, it is unclear how su...
Mechanical strain applied to bone leads to bone remodeling. In the oral cavity, it is unclear how su...
Functional loads on an organ induce tissue adaptations by converting mechanical energy into chemical...
The periodontal ligament (PDL) is a vascularized, innervated, cellular, and\ud collagenous connectiv...
ObjectiveThe objective of this study was to investigate the effect of mechanical strain by mapping p...
AbstractObjectiveThe objective of this study was to investigate the effect of mechanical strain by m...
The load-bearing dentoalveolar fibrous joint is composed of biomechanically active periodontal ligam...
The aim of this study was to investigate the effect of reduced functional loads on the spatio-tempor...
This study investigates bony protrusions within a narrowed periodontal ligament space (PDL-space) of...
Similar to other tissues in the body, the dentoalveolar complex is constantly subjected to functiona...
This study investigates bone-tooth association under compression to identify strain amplified sites ...
OBJECTIVE: To investigate the osteoblast-like functional characteristics exhibited by human periodon...
The novel aspect of this study involves illustrating significant adaptation of a functionally loaded...
The novel aspect of this study was to contextualize the co-localization of biomolecular expression i...
Spatiotemporal implant-bone biomechanics and mechanoadaptive strains in peri-implant tissue are poor...
Mechanical strain applied to bone leads to bone remodeling. In the oral cavity, it is unclear how su...
Mechanical strain applied to bone leads to bone remodeling. In the oral cavity, it is unclear how su...
Functional loads on an organ induce tissue adaptations by converting mechanical energy into chemical...
The periodontal ligament (PDL) is a vascularized, innervated, cellular, and\ud collagenous connectiv...