RADIOGRAPHIC ASSESSMENT OF BONE REMODELING PROCESSES DURING EARLY FUNCTIONAL LOADING

Fuente: Zenodo
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Autores principales: SafarovM.T., Worldy Knovledge Publishing Centre, Akhmadzhonov M.A.
Formato: Recurso digital
Publicado: Zenodo 2026
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author SafarovM.T.
Worldy Knovledge Publishing Centre
Akhmadzhonov M.A.
Worldy Knovledge Publishing Centre
author_facet SafarovM.T.
Worldy Knovledge Publishing Centre
Akhmadzhonov M.A.
Worldy Knovledge Publishing Centre
contents <p> Despite the success of traditional methods, the demand for shortened treatment protocols has grown significantly. A critical challenge remains the progressive atrophy of the alveolar bone following tooth extraction. This atrophy is often exacerbated by the absence of intraosseous functional loading, leading the bone to reduce its volume and alter its quality due to "disuse atrophy" (Petrov I.Y., 2014). While delayed loading aims to protect the healing interface, the lack of mechanical stimulation during this prolonged period may inadvertently contribute to bone resorption. Therefore, optimizing rehabilitation timelines by applying controlled early functional loads to stimulate bone regeneration is highly relevant. Accurate assessment of these biomechanical interactions requires advanced diagnostic methods like 3D radiography (CBCT) to monitor structural changes in the peri-implant region effectively.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_18876336
institution Zenodo
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publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle RADIOGRAPHIC ASSESSMENT OF BONE REMODELING PROCESSES DURING EARLY FUNCTIONAL LOADING
SafarovM.T.
Worldy Knovledge Publishing Centre
Akhmadzhonov M.A.
Worldy Knovledge Publishing Centre
<p> Despite the success of traditional methods, the demand for shortened treatment protocols has grown significantly. A critical challenge remains the progressive atrophy of the alveolar bone following tooth extraction. This atrophy is often exacerbated by the absence of intraosseous functional loading, leading the bone to reduce its volume and alter its quality due to "disuse atrophy" (Petrov I.Y., 2014). While delayed loading aims to protect the healing interface, the lack of mechanical stimulation during this prolonged period may inadvertently contribute to bone resorption. Therefore, optimizing rehabilitation timelines by applying controlled early functional loads to stimulate bone regeneration is highly relevant. Accurate assessment of these biomechanical interactions requires advanced diagnostic methods like 3D radiography (CBCT) to monitor structural changes in the peri-implant region effectively.</p>
title RADIOGRAPHIC ASSESSMENT OF BONE REMODELING PROCESSES DURING EARLY FUNCTIONAL LOADING
url https://doi.org/10.5281/zenodo.18876336