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Osteogenic parameters surrounding trabecular tantalum metal implants in osteotomies prepared via osseodensification drilling

BACKGROUND: Surgical fixation of implants into bone for the correction of bone deformities or defects is a traditional approach for skeletal stabilization. Important measures of efficacy of implants include implant stability and osseointegration—the direct interaction between living bone and an impl...

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Autores principales: Witek, Lukasz, Alifarag, Adham M., Tovar, Nick, Lopez, Christopher D., Gil, Luiz F., Gorbonosov, Michelle, Hannan, Kaitlin, Neiva, Rodrigo, Coelho, Paulo G.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Medicina Oral S.L. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6901143/
https://www.ncbi.nlm.nih.gov/pubmed/31655837
http://dx.doi.org/10.4317/medoral.23108
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author Witek, Lukasz
Alifarag, Adham M.
Tovar, Nick
Lopez, Christopher D.
Gil, Luiz F.
Gorbonosov, Michelle
Hannan, Kaitlin
Neiva, Rodrigo
Coelho, Paulo G.
author_facet Witek, Lukasz
Alifarag, Adham M.
Tovar, Nick
Lopez, Christopher D.
Gil, Luiz F.
Gorbonosov, Michelle
Hannan, Kaitlin
Neiva, Rodrigo
Coelho, Paulo G.
author_sort Witek, Lukasz
collection PubMed
description BACKGROUND: Surgical fixation of implants into bone for the correction of bone deformities or defects is a traditional approach for skeletal stabilization. Important measures of efficacy of implants include implant stability and osseointegration—the direct interaction between living bone and an implant. Osseointegration depends on successful implant placement and subsequent bone remodeling. This study utilized osseodensification drilling (OD) in a low bone density model using trabecular metal (TM) implants. MATERIAL AND METHODS: Three osteotomy sites, Regular, OD-CW (clockwise), and OD-CCW (counterclockwise), were prepared in each ilium of three female sheep. Drilling was performed at 1100rpm with saline irrigation. Trabecular metal (TM) (Zimmer®, Parsippany, NJ, USA) implants measuring 3.7mm in diameter x 10mm length were placed into respective osteotomies. A three-week period post-surgery was given to allow for healing to take place after which all three sheep were euthanized and the ilia were collected. Samples were prepared, qualitatively and quantitatively analyzed using histology micrographs and image analysis software (ImageJ, NIH, Bethesda, MD). Bone-to-implant contact (BIC) and bone area fraction occupancy (BAFO) were quantified to evaluate the osseointegration parameters. RESULTS: All implants exhibit successful bone formation in the peri-implant environment as well as within the open spaces of the trabecular network. Osseointegration within the TM (quantified by %BIC) as a function of drilling technique was more pronounced in OD samples(p>0.05). The %BAFO however shows a significant difference (p=0.036) between the CCW and R samples. Greater bone volume and frequency of bone chips are observed in OD samples. CONCLUSIONS: The utilization of OD as a design for improved fixation of hardware was supported by increased levels of stability, both primary and secondary. Histological data with OD provided notably different results from those of the regular drilling method. Key words:Osseodensification drilling, trabecular tantalum metal, osteotomies, implants, subtractive drilling.
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spelling pubmed-69011432019-12-17 Osteogenic parameters surrounding trabecular tantalum metal implants in osteotomies prepared via osseodensification drilling Witek, Lukasz Alifarag, Adham M. Tovar, Nick Lopez, Christopher D. Gil, Luiz F. Gorbonosov, Michelle Hannan, Kaitlin Neiva, Rodrigo Coelho, Paulo G. Med Oral Patol Oral Cir Bucal Research BACKGROUND: Surgical fixation of implants into bone for the correction of bone deformities or defects is a traditional approach for skeletal stabilization. Important measures of efficacy of implants include implant stability and osseointegration—the direct interaction between living bone and an implant. Osseointegration depends on successful implant placement and subsequent bone remodeling. This study utilized osseodensification drilling (OD) in a low bone density model using trabecular metal (TM) implants. MATERIAL AND METHODS: Three osteotomy sites, Regular, OD-CW (clockwise), and OD-CCW (counterclockwise), were prepared in each ilium of three female sheep. Drilling was performed at 1100rpm with saline irrigation. Trabecular metal (TM) (Zimmer®, Parsippany, NJ, USA) implants measuring 3.7mm in diameter x 10mm length were placed into respective osteotomies. A three-week period post-surgery was given to allow for healing to take place after which all three sheep were euthanized and the ilia were collected. Samples were prepared, qualitatively and quantitatively analyzed using histology micrographs and image analysis software (ImageJ, NIH, Bethesda, MD). Bone-to-implant contact (BIC) and bone area fraction occupancy (BAFO) were quantified to evaluate the osseointegration parameters. RESULTS: All implants exhibit successful bone formation in the peri-implant environment as well as within the open spaces of the trabecular network. Osseointegration within the TM (quantified by %BIC) as a function of drilling technique was more pronounced in OD samples(p>0.05). The %BAFO however shows a significant difference (p=0.036) between the CCW and R samples. Greater bone volume and frequency of bone chips are observed in OD samples. CONCLUSIONS: The utilization of OD as a design for improved fixation of hardware was supported by increased levels of stability, both primary and secondary. Histological data with OD provided notably different results from those of the regular drilling method. Key words:Osseodensification drilling, trabecular tantalum metal, osteotomies, implants, subtractive drilling. Medicina Oral S.L. 2019-11 2019-10-27 /pmc/articles/PMC6901143/ /pubmed/31655837 http://dx.doi.org/10.4317/medoral.23108 Text en Copyright: © 2019 Medicina Oral S.L. http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Witek, Lukasz
Alifarag, Adham M.
Tovar, Nick
Lopez, Christopher D.
Gil, Luiz F.
Gorbonosov, Michelle
Hannan, Kaitlin
Neiva, Rodrigo
Coelho, Paulo G.
Osteogenic parameters surrounding trabecular tantalum metal implants in osteotomies prepared via osseodensification drilling
title Osteogenic parameters surrounding trabecular tantalum metal implants in osteotomies prepared via osseodensification drilling
title_full Osteogenic parameters surrounding trabecular tantalum metal implants in osteotomies prepared via osseodensification drilling
title_fullStr Osteogenic parameters surrounding trabecular tantalum metal implants in osteotomies prepared via osseodensification drilling
title_full_unstemmed Osteogenic parameters surrounding trabecular tantalum metal implants in osteotomies prepared via osseodensification drilling
title_short Osteogenic parameters surrounding trabecular tantalum metal implants in osteotomies prepared via osseodensification drilling
title_sort osteogenic parameters surrounding trabecular tantalum metal implants in osteotomies prepared via osseodensification drilling
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6901143/
https://www.ncbi.nlm.nih.gov/pubmed/31655837
http://dx.doi.org/10.4317/medoral.23108
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