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Current trends to measure implant stability

Identifieur interne : 000926 ( Main/Exploration ); précédent : 000925; suivant : 000927

Current trends to measure implant stability

Auteurs : Vasanthi Swami [Inde] ; Vasantha Vijayaraghavan [Inde] ; Vinit Swami [Inde]

Source :

RBID : PMC:4837777

Abstract

Implant stability plays a critical role for successful osseointegration. Successful osseointegration is a prerequisite for functional dental implants. Continuous monitoring in an objective and qualitative manner is important to determine the status of implant stability. Implant stability is measured at two different stages: Primary and secondary. Primary stability comes from mechanical engagement with cortical bone. Secondary stability is developed from regeneration and remodeling of the bone and tissue around the implant after insertion and affected by the primary stability, bone formation and remodelling. The time of functional loading is dependent upon the implant stability. Historically the gold standard method to evaluate stability were microscopic or histologic analysis, radiographs, however due to invasiveness of these methods and related ethical issues various other methods have been proposed like cutting torque resistance, reverse torque analysis, model analysis etc. It is, therefore, of an utmost importance to be able to access implant stability at various time points and to project a long term prognosis for successful therapy. Therefore this review focuses on the currently available methods for evaluation of implant stability.


Url:
DOI: 10.4103/0972-4052.176539
PubMed: 27141160
PubMed Central: 4837777


Affiliations:


Links toward previous steps (curation, corpus...)


Le document en format XML

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<p>Implant stability plays a critical role for successful osseointegration. Successful osseointegration is a prerequisite for functional dental implants. Continuous monitoring in an objective and qualitative manner is important to determine the status of implant stability. Implant stability is measured at two different stages: Primary and secondary. Primary stability comes from mechanical engagement with cortical bone. Secondary stability is developed from regeneration and remodeling of the bone and tissue around the implant after insertion and affected by the primary stability, bone formation and remodelling. The time of functional loading is dependent upon the implant stability. Historically the gold standard method to evaluate stability were microscopic or histologic analysis, radiographs, however due to invasiveness of these methods and related ethical issues various other methods have been proposed like cutting torque resistance, reverse torque analysis, model analysis etc. It is, therefore, of an utmost importance to be able to access implant stability at various time points and to project a long term prognosis for successful therapy. Therefore this review focuses on the currently available methods for evaluation of implant stability.</p>
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<name sortKey="Bonfante, Ea" uniqKey="Bonfante E">EA Bonfante</name>
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<author>
<name sortKey="Giro, G" uniqKey="Giro G">G Giro</name>
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<name sortKey="Janal, Mn" uniqKey="Janal M">MN Janal</name>
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<author>
<name sortKey="Coelho, Pg" uniqKey="Coelho P">PG Coelho</name>
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<analytic>
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<name sortKey="Yang, J" uniqKey="Yang J">J Yang</name>
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<li>Inde</li>
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<name sortKey="Vijayaraghavan, Vasantha" sort="Vijayaraghavan, Vasantha" uniqKey="Vijayaraghavan V" first="Vasantha" last="Vijayaraghavan">Vasantha Vijayaraghavan</name>
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