Biomechanical effects of a new macrogeometry design of dental implants: an in vitro experimental analysis

Gehrke, S.A. - Pérez-Díaz, Leticia - Mazón, P. - De Aza, P.N.

Resumen:

The purpose of the present study was to measure and compare the insertion torque, removal torque, and the implant stability quotient by resonance frequency analysis in different polyurethane block densities of two implant macrogeometries. Four different polyurethane synthetic bone blocks were used with three cortical thickness: Bone 1 with a cortical thickness of 1 mm, Bone 2 with a cortical thickness of 2 mm, Bone 3 with a cortical thickness of 3 mm, and Bone 4, which was totally cortical. Four groups were created in accordance with the implant macrogeometry (n = 10 per group) and surface treatment: G1—regular implant design without surface treatment; G2—regular implant design with surface treatment; G3—new implant design without surface treatment; G4—new implant design with surface treatment. All implants used were 4 mm in diameter and 10 mm in length and manufactured in commercially pure titanium (grade IV) by Implacil De Bortoli (São Paulo, Brazil). The implants were installed using a computed torque machine, and following installation of the implant, the stability quotient (implant stability quotient, ISQ) values were measured in two directions using Osstell devices. The data were analyzed by considering the 5% level of significance. All implant groups showed similar mean ISQ values without statistical differences (p > 0.05), for the same synthetic bone block: for Bone 1, the value was 57.7 ± 3.0; for Bone 2, it was 58.6 ± 2.2; for Bone 3, it was 60.6 ± 2.3; and for Bone 4, it was 68.5 ± 2.8. However, the insertion torque showed similar higher values for the regular macrogeometry (G1 and G2 groups) in comparison with the new implant macrogeometry (G3 and G4 groups). The analysis of the results found that primary stability does not simply depend on the insertion torque but also on the bone quality. In comparison with the regular implant macrogeometry, the new implant macrogeometry decreased the insertion torque without affecting the implant stability quotient values.


Detalles Bibliográficos
2019
Bone density
Dental implants
Healing chambers
Initial stability
Insertion torque
New implant macrogeometry
Inglés
Universidad de la República
COLIBRI
https://hdl.handle.net/20.500.12008/28665
Acceso abierto
Licencia Creative Commons Atribución (CC - By 4.0)
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author Gehrke, S.A.
author2 Pérez-Díaz, Leticia
Mazón, P.
De Aza, P.N.
author2_role author
author
author
author_facet Gehrke, S.A.
Pérez-Díaz, Leticia
Mazón, P.
De Aza, P.N.
author_role author
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dc.contributor.filiacion.none.fl_str_mv Gehrke S.A.
Pérez-Díaz Leticia, Universidad de la República (Uruguay). Facultad de Ciencias. Instituto de Química Biológica.
Mazón P.
Aza P.N. De
dc.creator.none.fl_str_mv Gehrke, S.A.
Pérez-Díaz, Leticia
Mazón, P.
De Aza, P.N.
dc.date.accessioned.none.fl_str_mv 2021-07-22T12:33:59Z
dc.date.available.none.fl_str_mv 2021-07-22T12:33:59Z
dc.date.issued.none.fl_str_mv 2019
dc.description.abstract.none.fl_txt_mv The purpose of the present study was to measure and compare the insertion torque, removal torque, and the implant stability quotient by resonance frequency analysis in different polyurethane block densities of two implant macrogeometries. Four different polyurethane synthetic bone blocks were used with three cortical thickness: Bone 1 with a cortical thickness of 1 mm, Bone 2 with a cortical thickness of 2 mm, Bone 3 with a cortical thickness of 3 mm, and Bone 4, which was totally cortical. Four groups were created in accordance with the implant macrogeometry (n = 10 per group) and surface treatment: G1—regular implant design without surface treatment; G2—regular implant design with surface treatment; G3—new implant design without surface treatment; G4—new implant design with surface treatment. All implants used were 4 mm in diameter and 10 mm in length and manufactured in commercially pure titanium (grade IV) by Implacil De Bortoli (São Paulo, Brazil). The implants were installed using a computed torque machine, and following installation of the implant, the stability quotient (implant stability quotient, ISQ) values were measured in two directions using Osstell devices. The data were analyzed by considering the 5% level of significance. All implant groups showed similar mean ISQ values without statistical differences (p > 0.05), for the same synthetic bone block: for Bone 1, the value was 57.7 ± 3.0; for Bone 2, it was 58.6 ± 2.2; for Bone 3, it was 60.6 ± 2.3; and for Bone 4, it was 68.5 ± 2.8. However, the insertion torque showed similar higher values for the regular macrogeometry (G1 and G2 groups) in comparison with the new implant macrogeometry (G3 and G4 groups). The analysis of the results found that primary stability does not simply depend on the insertion torque but also on the bone quality. In comparison with the regular implant macrogeometry, the new implant macrogeometry decreased the insertion torque without affecting the implant stability quotient values.
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dc.identifier.citation.es.fl_str_mv Gehrke, S, Pérez-Díaz, L, Mazón, P y otros "Biomechanical effects of a new macrogeometry design of dental implants: an in vitro experimental analysis". Journal of Functional Biomaterials. [en línea] 2019, 10(4): 47. 14 h. DOI: 10.3390/jfb10040047
dc.identifier.doi.none.fl_str_mv 10.3390/jfb10040047
dc.identifier.issn.none.fl_str_mv 2079-4983
dc.identifier.uri.none.fl_str_mv https://hdl.handle.net/20.500.12008/28665
dc.language.iso.none.fl_str_mv en
eng
dc.publisher.es.fl_str_mv MDPI
dc.relation.ispartof.es.fl_str_mv Journal of Functional Biomaterials, 2019, 10(4): 47
dc.rights.license.none.fl_str_mv Licencia Creative Commons Atribución (CC - By 4.0)
dc.rights.none.fl_str_mv info:eu-repo/semantics/openAccess
dc.source.none.fl_str_mv reponame:COLIBRI
instname:Universidad de la República
instacron:Universidad de la República
dc.subject.es.fl_str_mv Bone density
Dental implants
Healing chambers
Initial stability
Insertion torque
New implant macrogeometry
dc.title.none.fl_str_mv Biomechanical effects of a new macrogeometry design of dental implants: an in vitro experimental analysis
dc.type.es.fl_str_mv Artículo
dc.type.none.fl_str_mv info:eu-repo/semantics/article
dc.type.version.none.fl_str_mv info:eu-repo/semantics/publishedVersion
description The purpose of the present study was to measure and compare the insertion torque, removal torque, and the implant stability quotient by resonance frequency analysis in different polyurethane block densities of two implant macrogeometries. Four different polyurethane synthetic bone blocks were used with three cortical thickness: Bone 1 with a cortical thickness of 1 mm, Bone 2 with a cortical thickness of 2 mm, Bone 3 with a cortical thickness of 3 mm, and Bone 4, which was totally cortical. Four groups were created in accordance with the implant macrogeometry (n = 10 per group) and surface treatment: G1—regular implant design without surface treatment; G2—regular implant design with surface treatment; G3—new implant design without surface treatment; G4—new implant design with surface treatment. All implants used were 4 mm in diameter and 10 mm in length and manufactured in commercially pure titanium (grade IV) by Implacil De Bortoli (São Paulo, Brazil). The implants were installed using a computed torque machine, and following installation of the implant, the stability quotient (implant stability quotient, ISQ) values were measured in two directions using Osstell devices. The data were analyzed by considering the 5% level of significance. All implant groups showed similar mean ISQ values without statistical differences (p > 0.05), for the same synthetic bone block: for Bone 1, the value was 57.7 ± 3.0; for Bone 2, it was 58.6 ± 2.2; for Bone 3, it was 60.6 ± 2.3; and for Bone 4, it was 68.5 ± 2.8. However, the insertion torque showed similar higher values for the regular macrogeometry (G1 and G2 groups) in comparison with the new implant macrogeometry (G3 and G4 groups). The analysis of the results found that primary stability does not simply depend on the insertion torque but also on the bone quality. In comparison with the regular implant macrogeometry, the new implant macrogeometry decreased the insertion torque without affecting the implant stability quotient values.
eu_rights_str_mv openAccess
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identifier_str_mv Gehrke, S, Pérez-Díaz, L, Mazón, P y otros "Biomechanical effects of a new macrogeometry design of dental implants: an in vitro experimental analysis". Journal of Functional Biomaterials. [en línea] 2019, 10(4): 47. 14 h. DOI: 10.3390/jfb10040047
2079-4983
10.3390/jfb10040047
instacron_str Universidad de la República
institution Universidad de la República
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language_invalid_str_mv en
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publishDate 2019
reponame_str COLIBRI
repository.mail.fl_str_mv mabel.seroubian@seciu.edu.uy
repository.name.fl_str_mv COLIBRI - Universidad de la República
repository_id_str 4771
rights_invalid_str_mv Licencia Creative Commons Atribución (CC - By 4.0)
spelling Gehrke S.A.Pérez-Díaz Leticia, Universidad de la República (Uruguay). Facultad de Ciencias. Instituto de Química Biológica.Mazón P.Aza P.N. De2021-07-22T12:33:59Z2021-07-22T12:33:59Z2019Gehrke, S, Pérez-Díaz, L, Mazón, P y otros "Biomechanical effects of a new macrogeometry design of dental implants: an in vitro experimental analysis". Journal of Functional Biomaterials. [en línea] 2019, 10(4): 47. 14 h. DOI: 10.3390/jfb100400472079-4983https://hdl.handle.net/20.500.12008/2866510.3390/jfb10040047The purpose of the present study was to measure and compare the insertion torque, removal torque, and the implant stability quotient by resonance frequency analysis in different polyurethane block densities of two implant macrogeometries. Four different polyurethane synthetic bone blocks were used with three cortical thickness: Bone 1 with a cortical thickness of 1 mm, Bone 2 with a cortical thickness of 2 mm, Bone 3 with a cortical thickness of 3 mm, and Bone 4, which was totally cortical. Four groups were created in accordance with the implant macrogeometry (n = 10 per group) and surface treatment: G1—regular implant design without surface treatment; G2—regular implant design with surface treatment; G3—new implant design without surface treatment; G4—new implant design with surface treatment. All implants used were 4 mm in diameter and 10 mm in length and manufactured in commercially pure titanium (grade IV) by Implacil De Bortoli (São Paulo, Brazil). The implants were installed using a computed torque machine, and following installation of the implant, the stability quotient (implant stability quotient, ISQ) values were measured in two directions using Osstell devices. The data were analyzed by considering the 5% level of significance. All implant groups showed similar mean ISQ values without statistical differences (p > 0.05), for the same synthetic bone block: for Bone 1, the value was 57.7 ± 3.0; for Bone 2, it was 58.6 ± 2.2; for Bone 3, it was 60.6 ± 2.3; and for Bone 4, it was 68.5 ± 2.8. However, the insertion torque showed similar higher values for the regular macrogeometry (G1 and G2 groups) in comparison with the new implant macrogeometry (G3 and G4 groups). The analysis of the results found that primary stability does not simply depend on the insertion torque but also on the bone quality. In comparison with the regular implant macrogeometry, the new implant macrogeometry decreased the insertion torque without affecting the implant stability quotient values.Submitted by Verdun Juan Pablo (jverdun@fcien.edu.uy) on 2021-07-08T14:01:09Z No. of bitstreams: 2 license_rdf: 19875 bytes, checksum: 9fdbed07f52437945402c4e70fa4773e (MD5) 10.3390jfb10040047.pdf: 4179682 bytes, checksum: 4f8313e952d0992fd1547ac30bc386b7 (MD5)Approved for entry into archive by Faget Cecilia (lfaget@fcien.edu.uy) on 2021-07-22T12:28:10Z (GMT) No. of bitstreams: 2 license_rdf: 19875 bytes, checksum: 9fdbed07f52437945402c4e70fa4773e (MD5) 10.3390jfb10040047.pdf: 4179682 bytes, checksum: 4f8313e952d0992fd1547ac30bc386b7 (MD5)Made available in DSpace by Luna Fabiana (fabiana.luna@seciu.edu.uy) on 2021-07-22T12:33:59Z (GMT). No. of bitstreams: 2 license_rdf: 19875 bytes, checksum: 9fdbed07f52437945402c4e70fa4773e (MD5) 10.3390jfb10040047.pdf: 4179682 bytes, checksum: 4f8313e952d0992fd1547ac30bc386b7 (MD5) Previous issue date: 201914 h.application/pdfenengMDPIJournal of Functional Biomaterials, 2019, 10(4): 47Las obras depositadas en el Repositorio se rigen por la Ordenanza de los Derechos de la Propiedad Intelectual de la Universidad de la República.(Res. Nº 91 de C.D.C. de 8/III/1994 – D.O. 7/IV/1994) y por la Ordenanza del Repositorio Abierto de la Universidad de la República (Res. Nº 16 de C.D.C. de 07/10/2014)info:eu-repo/semantics/openAccessLicencia Creative Commons Atribución (CC - By 4.0)Bone densityDental implantsHealing chambersInitial stabilityInsertion torqueNew implant macrogeometryBiomechanical effects of a new macrogeometry design of dental implants: an in vitro experimental analysisArtículoinfo:eu-repo/semantics/articleinfo:eu-repo/semantics/publishedVersionreponame:COLIBRIinstname:Universidad de la Repúblicainstacron:Universidad de la RepúblicaGehrke, S.A.Pérez-Díaz, LeticiaMazón, P.De Aza, P.N.LICENSElicense.txtlicense.txttext/plain; charset=utf-84267http://localhost:8080/xmlui/bitstream/20.500.12008/28665/5/license.txt6429389a7df7277b72b7924fdc7d47a9MD55CC-LICENSElicense_urllicense_urltext/plain; charset=utf-844http://localhost:8080/xmlui/bitstream/20.500.12008/28665/2/license_urla0ebbeafb9d2ec7cbb19d7137ebc392cMD52license_textlicense_texttext/html; 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- Universidad de la Repúblicafalse
spellingShingle Biomechanical effects of a new macrogeometry design of dental implants: an in vitro experimental analysis
Gehrke, S.A.
Bone density
Dental implants
Healing chambers
Initial stability
Insertion torque
New implant macrogeometry
status_str publishedVersion
title Biomechanical effects of a new macrogeometry design of dental implants: an in vitro experimental analysis
title_full Biomechanical effects of a new macrogeometry design of dental implants: an in vitro experimental analysis
title_fullStr Biomechanical effects of a new macrogeometry design of dental implants: an in vitro experimental analysis
title_full_unstemmed Biomechanical effects of a new macrogeometry design of dental implants: an in vitro experimental analysis
title_short Biomechanical effects of a new macrogeometry design of dental implants: an in vitro experimental analysis
title_sort Biomechanical effects of a new macrogeometry design of dental implants: an in vitro experimental analysis
topic Bone density
Dental implants
Healing chambers
Initial stability
Insertion torque
New implant macrogeometry
url https://hdl.handle.net/20.500.12008/28665