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Connective Tissue Characteristics around Healing Abutments of Different Geometries: New Methodological Technique under Circularly Polarized Light

Authorized Users Only
2015
Authors
Delgado-Ruiz, Rafael
Calvo Guirado, Jose Luis
Abboud, Marcus
Piedad Ramirez-Fernandez, Maria
Eduardo Mate-Sanchez, Jose
Negri, Bruno
Gomez-Moreno, Gerardo
Marković, Aleksa
Article (Published version)
Metadata
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Abstract
PurposeTo describe contact, thickness, density, and orientation of connective tissue fibers around healing abutments of different geometries by means of a new method using coordinates. Materials and MethodsFollowing the bilateral extraction of mandibular premolars (P2, P3, and P4) from six fox hound dogs and a 2-month healing period, 36 titanium implants were inserted, onto which two groups of healing abutments of different geometry were screwed: Group A (concave abutments) and Group B (wider healing abutment). After 3 months the animals were sacrificed and samples extracted containing each implant and surrounding soft and hard tissues. Histological analysis was performed without decalcifying the samples by means of circularly polarized light under optical microscope and a system of vertical and horizontal coordinates across all the connective tissue in an area delimited by the implant/abutment, epithelium, and bone tissue. ResultsIn no case had the connective tissue formed a connectio...n to the healing abutment/implant in the internal zone; a space of 3510m separated the connective tissue fibers from the healing abutment surface. The total thickness of connective tissue in the horizontal direction was significantly greater in the medial zone in Group B than in Group A (p lt .05). The orientation of the fibers varied according to the coordinate area so that internal coordinates showed a higher percentage of parallel fibers in Group A (p lt .05) and a higher percentage of oblique fibers in Group B (p lt .05); medial coordinates showed more oblique fibers (p lt .05); and the area of external coordinates showed the highest percentage of perpendicular fibers (p lt .05). The fiber density was higher in the basal and medial areas (p lt .05). ConclusionsAbutment geometry influences the orientation of collagen fibers; therefore, an abutment with a profile wider than the implant platform favors oblique and perpendicular orientation of collagen fibers and greater connective tissue thickness.

Keywords:
connective tissue / dental implants / healing abutments / histology / polarized light
Source:
Clinical Implant Dentistry & Related Research, 2015, 17, 4, 667-680
Publisher:
  • Wiley, Hoboken

DOI: 10.1111/cid.12161

ISSN: 1523-0899

PubMed: 24118965

WoS: 000358536700006

Scopus: 2-s2.0-84885358963
[ Google Scholar ]
17
13
URI
https://smile.stomf.bg.ac.rs/handle/123456789/1970
Collections
  • Radovi istraživača
Institution/Community
Stomatološki fakultet
TY  - JOUR
AU  - Delgado-Ruiz, Rafael
AU  - Calvo Guirado, Jose Luis
AU  - Abboud, Marcus
AU  - Piedad Ramirez-Fernandez, Maria
AU  - Eduardo Mate-Sanchez, Jose
AU  - Negri, Bruno
AU  - Gomez-Moreno, Gerardo
AU  - Marković, Aleksa
PY  - 2015
UR  - https://smile.stomf.bg.ac.rs/handle/123456789/1970
AB  - PurposeTo describe contact, thickness, density, and orientation of connective tissue fibers around healing abutments of different geometries by means of a new method using coordinates. Materials and MethodsFollowing the bilateral extraction of mandibular premolars (P2, P3, and P4) from six fox hound dogs and a 2-month healing period, 36 titanium implants were inserted, onto which two groups of healing abutments of different geometry were screwed: Group A (concave abutments) and Group B (wider healing abutment). After 3 months the animals were sacrificed and samples extracted containing each implant and surrounding soft and hard tissues. Histological analysis was performed without decalcifying the samples by means of circularly polarized light under optical microscope and a system of vertical and horizontal coordinates across all the connective tissue in an area delimited by the implant/abutment, epithelium, and bone tissue. ResultsIn no case had the connective tissue formed a connection to the healing abutment/implant in the internal zone; a space of 3510m separated the connective tissue fibers from the healing abutment surface. The total thickness of connective tissue in the horizontal direction was significantly greater in the medial zone in Group B than in Group A (p lt .05). The orientation of the fibers varied according to the coordinate area so that internal coordinates showed a higher percentage of parallel fibers in Group A (p lt .05) and a higher percentage of oblique fibers in Group B (p lt .05); medial coordinates showed more oblique fibers (p lt .05); and the area of external coordinates showed the highest percentage of perpendicular fibers (p lt .05). The fiber density was higher in the basal and medial areas (p lt .05). ConclusionsAbutment geometry influences the orientation of collagen fibers; therefore, an abutment with a profile wider than the implant platform favors oblique and perpendicular orientation of collagen fibers and greater connective tissue thickness.
PB  - Wiley, Hoboken
T2  - Clinical Implant Dentistry & Related Research
T1  - Connective Tissue Characteristics around Healing Abutments of Different Geometries: New Methodological Technique under Circularly Polarized Light
VL  - 17
IS  - 4
SP  - 667
EP  - 680
DO  - 10.1111/cid.12161
ER  - 
@article{
author = "Delgado-Ruiz, Rafael and Calvo Guirado, Jose Luis and Abboud, Marcus and Piedad Ramirez-Fernandez, Maria and Eduardo Mate-Sanchez, Jose and Negri, Bruno and Gomez-Moreno, Gerardo and Marković, Aleksa",
year = "2015",
abstract = "PurposeTo describe contact, thickness, density, and orientation of connective tissue fibers around healing abutments of different geometries by means of a new method using coordinates. Materials and MethodsFollowing the bilateral extraction of mandibular premolars (P2, P3, and P4) from six fox hound dogs and a 2-month healing period, 36 titanium implants were inserted, onto which two groups of healing abutments of different geometry were screwed: Group A (concave abutments) and Group B (wider healing abutment). After 3 months the animals were sacrificed and samples extracted containing each implant and surrounding soft and hard tissues. Histological analysis was performed without decalcifying the samples by means of circularly polarized light under optical microscope and a system of vertical and horizontal coordinates across all the connective tissue in an area delimited by the implant/abutment, epithelium, and bone tissue. ResultsIn no case had the connective tissue formed a connection to the healing abutment/implant in the internal zone; a space of 3510m separated the connective tissue fibers from the healing abutment surface. The total thickness of connective tissue in the horizontal direction was significantly greater in the medial zone in Group B than in Group A (p lt .05). The orientation of the fibers varied according to the coordinate area so that internal coordinates showed a higher percentage of parallel fibers in Group A (p lt .05) and a higher percentage of oblique fibers in Group B (p lt .05); medial coordinates showed more oblique fibers (p lt .05); and the area of external coordinates showed the highest percentage of perpendicular fibers (p lt .05). The fiber density was higher in the basal and medial areas (p lt .05). ConclusionsAbutment geometry influences the orientation of collagen fibers; therefore, an abutment with a profile wider than the implant platform favors oblique and perpendicular orientation of collagen fibers and greater connective tissue thickness.",
publisher = "Wiley, Hoboken",
journal = "Clinical Implant Dentistry & Related Research",
title = "Connective Tissue Characteristics around Healing Abutments of Different Geometries: New Methodological Technique under Circularly Polarized Light",
volume = "17",
number = "4",
pages = "667-680",
doi = "10.1111/cid.12161"
}
Delgado-Ruiz, R., Calvo Guirado, J. L., Abboud, M., Piedad Ramirez-Fernandez, M., Eduardo Mate-Sanchez, J., Negri, B., Gomez-Moreno, G.,& Marković, A.. (2015). Connective Tissue Characteristics around Healing Abutments of Different Geometries: New Methodological Technique under Circularly Polarized Light. in Clinical Implant Dentistry & Related Research
Wiley, Hoboken., 17(4), 667-680.
https://doi.org/10.1111/cid.12161
Delgado-Ruiz R, Calvo Guirado JL, Abboud M, Piedad Ramirez-Fernandez M, Eduardo Mate-Sanchez J, Negri B, Gomez-Moreno G, Marković A. Connective Tissue Characteristics around Healing Abutments of Different Geometries: New Methodological Technique under Circularly Polarized Light. in Clinical Implant Dentistry & Related Research. 2015;17(4):667-680.
doi:10.1111/cid.12161 .
Delgado-Ruiz, Rafael, Calvo Guirado, Jose Luis, Abboud, Marcus, Piedad Ramirez-Fernandez, Maria, Eduardo Mate-Sanchez, Jose, Negri, Bruno, Gomez-Moreno, Gerardo, Marković, Aleksa, "Connective Tissue Characteristics around Healing Abutments of Different Geometries: New Methodological Technique under Circularly Polarized Light" in Clinical Implant Dentistry & Related Research, 17, no. 4 (2015):667-680,
https://doi.org/10.1111/cid.12161 . .

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