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Published in: Clinical Oral Investigations 6/2021

01-06-2021 | Original Article

Hard tissue volumetric and soft tissue contour linear changes at implants with different surface characteristics after experimentally induced peri-implantitis: an experimental in vivo investigation

Authors: R. Di Raimondo, Javier Sanz-Esporrin, I. Sanz Martin, F. Vignoletti, J. Nuñez, F. Muñoz, H. J. Haugen, M. Sanz

Published in: Clinical Oral Investigations | Issue 6/2021

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Abstract

Objective

To evaluate the hard tissue volumetric and soft tissue contour linear changes in implants with two different implant surface characteristics after a ligature-induced peri-implantitis.

Material and methods

In eight beagle dogs, implants with the same size and diameter but distinct surface characteristics were placed in the healed mandibular sites. Test implants had an external monolayer of multi-phosphonate molecules (B+), while control implants were identical but without the phosphonate-rich surface. Once the implants were osseointegrated, oral hygiene was interrupted and peri-implantitis was induced by placing subgingival ligatures. After 16 weeks, the ligatures were removed and peri-implantitis progressed spontaneously. Bone to implant contact (BIC) and bone loss (BL) were assessed three-dimensionally with Micro-Ct (μCT). Dental casts were optically scanned and the obtained digitalized standard tessellation language (STL) images were used to assess the soft tissue vertical and horizontal contour linear changes.

Results

Reduction of the three-dimensional BIC percentage during the induction and progression phases of the experimental peri-implantitis was similar for both the experimental and control implants, without statistically significant differences between them. Soft tissue analysis revealed for both implant groups an increase in horizontal dimension after the induction of peri-implantitis, followed by a decrease after the spontaneous progression period. In the vertical dimension, a soft tissue dehiscence was observed in both groups, being more pronounced at the buccal aspect.

Conclusions

The added phosphonate-rich surface did not provide a more resistant environment against experimental peri-implantitis, when assessed by the changes in bone volume and soft tissue contours.

Clinical relevance

Ligature-induced peri-implantitis is a validated model to study the tissue changes occurring during peri-implantitis. It was hypothesized that a stronger osseointegration mediated by the chemical bond of a phosphonate-rich implant surface would develop an environment more resistant to the inflammatory changes occurring after experimental peri-implantitis. These results, however, indicate that the hard and soft tissue destructive changes occurring at both the induction and progression phases of experimental peri-implantitis were not influenced by the quality of osseointegration.
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Literature
1.
go back to reference Moraschini V, da C Poubel LA, Ferreira VF, dos S P Barboza E (2015) Evaluation of survival and success rates of dental implants reported in longitudinal studies with a follow-up period of at least 10 years: a systematic review. Int J Oral Maxillofac Surg 44:377–388CrossRef Moraschini V, da C Poubel LA, Ferreira VF, dos S P Barboza E (2015) Evaluation of survival and success rates of dental implants reported in longitudinal studies with a follow-up period of at least 10 years: a systematic review. Int J Oral Maxillofac Surg 44:377–388CrossRef
2.
go back to reference Pjetursson BE, Asgeirsson AG, Zwahlen M, Salier I (2014) Improvements in implant dentistry over the last decade: comparison of survival and complication rates in older and newer publications. Int J Oral Maxillofac Implants 29(suppl):308–324CrossRef Pjetursson BE, Asgeirsson AG, Zwahlen M, Salier I (2014) Improvements in implant dentistry over the last decade: comparison of survival and complication rates in older and newer publications. Int J Oral Maxillofac Implants 29(suppl):308–324CrossRef
3.
go back to reference Caton J, Armitage G, Berglundh T et al (2018) A new classification scheme for periodontal and peri- implant diseases and conditions – introduction and key changes from the 1999 classification. J Clin Periodontol 45(Suppl 20):S1–S8PubMed Caton J, Armitage G, Berglundh T et al (2018) A new classification scheme for periodontal and peri- implant diseases and conditions – introduction and key changes from the 1999 classification. J Clin Periodontol 45(Suppl 20):S1–S8PubMed
4.
go back to reference Berglundh T, Armitage G, Araujo MG, Avila-Ortiz G, Blanco J, Camargo PM, Chen S, Cochran D, Derks J, Figuero E, Hämmerle CHF, Heitz-Mayfield LJA, Huynh-Ba G, Iacono V, Koo KT, Lambert F, McCauley L, Quirynen M, Renvert S, Salvi GE, Schwarz F, Tarnow D, Tomasi C, Wang HL, Zitzmann N (2018) Peri- implant diseases and conditions: consensus report of workgroup 4 of the 2017 World Workshop on the classification of periodontal and peri-implant diseases and conditions. J Clin Periodontol 45(Suppl 20):S286–S291CrossRef Berglundh T, Armitage G, Araujo MG, Avila-Ortiz G, Blanco J, Camargo PM, Chen S, Cochran D, Derks J, Figuero E, Hämmerle CHF, Heitz-Mayfield LJA, Huynh-Ba G, Iacono V, Koo KT, Lambert F, McCauley L, Quirynen M, Renvert S, Salvi GE, Schwarz F, Tarnow D, Tomasi C, Wang HL, Zitzmann N (2018) Peri- implant diseases and conditions: consensus report of workgroup 4 of the 2017 World Workshop on the classification of periodontal and peri-implant diseases and conditions. J Clin Periodontol 45(Suppl 20):S286–S291CrossRef
5.
go back to reference Schwarz F, Derks J, Monje A, Wang HL (2018) Peri-implantitis. J Clin Periodontol 45(Suppl 20):S246–S266CrossRef Schwarz F, Derks J, Monje A, Wang HL (2018) Peri-implantitis. J Clin Periodontol 45(Suppl 20):S246–S266CrossRef
6.
go back to reference Derks J, Tomasi C (2015) Peri-implant health and disease. A systematic review of current epidemiology. J Clin Periodontol 42(Suppl. 16):S158–S171CrossRef Derks J, Tomasi C (2015) Peri-implant health and disease. A systematic review of current epidemiology. J Clin Periodontol 42(Suppl. 16):S158–S171CrossRef
7.
go back to reference Krebs M, Kesar N, Begic A, von Krockow N, Nentwig G-H, Weigl P (2019) Incidence and prevalence of peri-implantitis and peri-implant mucositis 17 to 23 (18.9) years postimplant placement. Clin Implant Dent Relat Res 21:1116–1123. https://doi.org/10.1111/cid.12848 Krebs M, Kesar N, Begic A, von Krockow N, Nentwig G-H, Weigl P (2019) Incidence and prevalence of peri-implantitis and peri-implant mucositis 17 to 23 (18.9) years postimplant placement. Clin Implant Dent Relat Res 21:1116–1123. https://​doi.​org/​10.​1111/​cid.​12848
8.
go back to reference Renvert S, Persson GR, Pirih FQ, Camargo PM (2018) Peri-implant health, peri-implant mucositis, and peri-implantitis: case definitions and diagnostic considerations. J Clin Periodontol 45(Suppl 20):S278–S285CrossRef Renvert S, Persson GR, Pirih FQ, Camargo PM (2018) Peri-implant health, peri-implant mucositis, and peri-implantitis: case definitions and diagnostic considerations. J Clin Periodontol 45(Suppl 20):S278–S285CrossRef
9.
go back to reference Ivanosky S, Lee R (2017) Comparison of peri-implant and periodontal marginal soft tissues in health and disease. Periodontol 0:1–15 Ivanosky S, Lee R (2017) Comparison of peri-implant and periodontal marginal soft tissues in health and disease. Periodontol 0:1–15
10.
go back to reference Giovannoli JL, Roccuzzo M, Albouy JP, Duffau F, Lin GH, Serino G (2019) Local risk indicators - consensus report of working group 2. Intern Dent J 69(Suppl):7–11CrossRef Giovannoli JL, Roccuzzo M, Albouy JP, Duffau F, Lin GH, Serino G (2019) Local risk indicators - consensus report of working group 2. Intern Dent J 69(Suppl):7–11CrossRef
11.
go back to reference Dreyer H, Grischke J, Tiede C et al (2018) Epidemiology and risk factors of peri-implantitis: a systematic review. J Periodontal Res 00:1–25 Dreyer H, Grischke J, Tiede C et al (2018) Epidemiology and risk factors of peri-implantitis: a systematic review. J Periodontal Res 00:1–25
12.
go back to reference Saulaci N, Schaller B (2019) Prevalence of peri-implantitis in implants with turned and rough surfaces: a systematic review. J Oral Maxillofac Res 10(e1):1–12 Saulaci N, Schaller B (2019) Prevalence of peri-implantitis in implants with turned and rough surfaces: a systematic review. J Oral Maxillofac Res 10(e1):1–12
13.
go back to reference Jordana F, Susbielles L, Colat-Parros J (2018) Periimplantitis and implant body roughness: a systematic review of literature. Implant Dent 27(6):672–681CrossRef Jordana F, Susbielles L, Colat-Parros J (2018) Periimplantitis and implant body roughness: a systematic review of literature. Implant Dent 27(6):672–681CrossRef
14.
go back to reference Asensio G, Vazquez-Lasa B, Rojo L (2019) Achievements in the topographic design of commercial titanium dental implants: towards anti-peri-implantitis surfaces. J Clin Med 8(11):1982–2000CrossRef Asensio G, Vazquez-Lasa B, Rojo L (2019) Achievements in the topographic design of commercial titanium dental implants: towards anti-peri-implantitis surfaces. J Clin Med 8(11):1982–2000CrossRef
15.
go back to reference Jansen JA, Brugge P, Van Der Waal E, Vredenberg A, Wolke J (2003) Osteocapacities of calcium phosphate ceramics. In: Ellingsen JE, Lyngstadaas SP (eds) Bioimplant inter- face. CRC, Boca Raton, pp 305–322 Jansen JA, Brugge P, Van Der Waal E, Vredenberg A, Wolke J (2003) Osteocapacities of calcium phosphate ceramics. In: Ellingsen JE, Lyngstadaas SP (eds) Bioimplant inter- face. CRC, Boca Raton, pp 305–322
16.
go back to reference Junker R, Dimakis A, Thoneick M, Jansen JA (2009) Effects of implant surface coatings and composition on bone integration: a systematic review. Clin Oral Implants Res 20(Suppl. 4):185–206CrossRef Junker R, Dimakis A, Thoneick M, Jansen JA (2009) Effects of implant surface coatings and composition on bone integration: a systematic review. Clin Oral Implants Res 20(Suppl. 4):185–206CrossRef
17.
go back to reference Viornery C, Chevolot Y, Léonard D, Aronsson BO, Péchy P, Mathieu HJ, Descouts P, Grätzel M (2002) Surface modification of titanium with phosphonic acid to improve bone bonding: characterization by XPS and ToF-SIMS. Langmuir 18:2582–2589CrossRef Viornery C, Chevolot Y, Léonard D, Aronsson BO, Péchy P, Mathieu HJ, Descouts P, Grätzel M (2002) Surface modification of titanium with phosphonic acid to improve bone bonding: characterization by XPS and ToF-SIMS. Langmuir 18:2582–2589CrossRef
18.
go back to reference Viornery C, Guenther HL, Aronsson BO, Péchy P, Descouts P, Grätzel M (2002) Osteoblast culture on polished titanium disks modified with phosphonic acids. J Biomed Mater Res 62:149–155CrossRef Viornery C, Guenther HL, Aronsson BO, Péchy P, Descouts P, Grätzel M (2002) Osteoblast culture on polished titanium disks modified with phosphonic acids. J Biomed Mater Res 62:149–155CrossRef
19.
go back to reference Von Salis-Soglio M, Stübinger S, Sidler M, Klein K, Ferguson S, Kämpf K et al (2014) A novel multi-phosphonate surface treatment of titanium dental implants: a study in sheep. J Funct Biomater 5(3):135–157CrossRef Von Salis-Soglio M, Stübinger S, Sidler M, Klein K, Ferguson S, Kämpf K et al (2014) A novel multi-phosphonate surface treatment of titanium dental implants: a study in sheep. J Funct Biomater 5(3):135–157CrossRef
20.
go back to reference Esposito M, Dojcinovic I, Germon L, Lévy N, Curno R, Buchini S, Péchy P, Aronsson BO (2013) Safety and efficacy of a biomimetic monolayer of permanently bound multi-phosphonic acid molecules on dental implants: 1year post-loading results from a pilot quadruple-blinded randomised controlled trial. Eur J Oral Implantol 6:227–236PubMed Esposito M, Dojcinovic I, Germon L, Lévy N, Curno R, Buchini S, Péchy P, Aronsson BO (2013) Safety and efficacy of a biomimetic monolayer of permanently bound multi-phosphonic acid molecules on dental implants: 1year post-loading results from a pilot quadruple-blinded randomised controlled trial. Eur J Oral Implantol 6:227–236PubMed
21.
go back to reference Vignoletti F, Abrahamsson I (2012) Quality of reporting of experimental research in implant dentistry. Critical aspects in design, outcome assessment and model validation. J Clin Periodontol 39(Suppl. 12):6–27CrossRef Vignoletti F, Abrahamsson I (2012) Quality of reporting of experimental research in implant dentistry. Critical aspects in design, outcome assessment and model validation. J Clin Periodontol 39(Suppl. 12):6–27CrossRef
22.
go back to reference Lindhe J, Berglundh T, Ericsson I, Liljenberg B, Marinello C (1992) Experimental breakdown of peri-implant and periodontal tissues. A study in the beagle dog. Clin Oral Implants Res 3(1):9–16CrossRef Lindhe J, Berglundh T, Ericsson I, Liljenberg B, Marinello C (1992) Experimental breakdown of peri-implant and periodontal tissues. A study in the beagle dog. Clin Oral Implants Res 3(1):9–16CrossRef
23.
go back to reference Feldkamp LA, Davis LC, Kress JW (1984) Practical cone-beam algorithm. J Opt Soc Am 1(6):612–619CrossRef Feldkamp LA, Davis LC, Kress JW (1984) Practical cone-beam algorithm. J Opt Soc Am 1(6):612–619CrossRef
24.
go back to reference Becker K, Wilmes B, Grandjean C, Drescher D (2018) Impact of manual control point selection accuracy on automated surface matching of digital dental models. Clin Oral Investig 22(2):801–810CrossRef Becker K, Wilmes B, Grandjean C, Drescher D (2018) Impact of manual control point selection accuracy on automated surface matching of digital dental models. Clin Oral Investig 22(2):801–810CrossRef
25.
go back to reference Di Raimondo R, Sanz-Esporrin J, Pla R, Sanz-Martin I, Luengo F, Vignoletti F, Nuñez J, Sanz M (2020) Alveolar crests contour changes after guided bone regeneration using different biomaterials: an experimental in vivo investigation. Clin Oral Investig 24(7):2351–2361CrossRef Di Raimondo R, Sanz-Esporrin J, Pla R, Sanz-Martin I, Luengo F, Vignoletti F, Nuñez J, Sanz M (2020) Alveolar crests contour changes after guided bone regeneration using different biomaterials: an experimental in vivo investigation. Clin Oral Investig 24(7):2351–2361CrossRef
26.
go back to reference Di Raimondo R, Sanz-Esporrin J, Sanz-Martin I, Pla R, Luengo F, Vignoletti F, Nuñez J, Sanz M (2020) Hard and soft tissue changes after guided bone regeneration using two different barrier membranes: an experimental in vivo investigation. Clin Oral Investig. https://doi.org/10.1007/s00784-020-03537-5 Di Raimondo R, Sanz-Esporrin J, Sanz-Martin I, Pla R, Luengo F, Vignoletti F, Nuñez J, Sanz M (2020) Hard and soft tissue changes after guided bone regeneration using two different barrier membranes: an experimental in vivo investigation. Clin Oral Investig. https://​doi.​org/​10.​1007/​s00784-020-03537-5
27.
go back to reference Godoy-Gallardo M, Manzanares-Cespedes MC, Sevilla P, Nart J, Manzanares N, Manera JM, Gil FJ, Body SK, Rodriguez D (2016) Evaluation of bone loss in antibacterial coated dental implants: an experimental study in dogs. Mater Sci Eng C Mater Biol Appl 69:538–545CrossRef Godoy-Gallardo M, Manzanares-Cespedes MC, Sevilla P, Nart J, Manzanares N, Manera JM, Gil FJ, Body SK, Rodriguez D (2016) Evaluation of bone loss in antibacterial coated dental implants: an experimental study in dogs. Mater Sci Eng C Mater Biol Appl 69:538–545CrossRef
28.
go back to reference Berglundh T, Gotfredsen K, Zitzmann NU, Lang NP, Lindhe J (2007) Spontaneous progression of ligature induced peri-implantitis at implants with different surface roughness: an experimental study in dogs. Clin Oral Implants Res 18:655–661CrossRef Berglundh T, Gotfredsen K, Zitzmann NU, Lang NP, Lindhe J (2007) Spontaneous progression of ligature induced peri-implantitis at implants with different surface roughness: an experimental study in dogs. Clin Oral Implants Res 18:655–661CrossRef
29.
go back to reference Albouy JP, Abrahamsson I, Persson LG, Berglundh T (2008) Spontaneous progression of peri-implantitis at different types of implants. An experimental study in dogs. I: clinical and radiographic observations. Clin Oral Implants Res 19(10):997–1002CrossRef Albouy JP, Abrahamsson I, Persson LG, Berglundh T (2008) Spontaneous progression of peri-implantitis at different types of implants. An experimental study in dogs. I: clinical and radiographic observations. Clin Oral Implants Res 19(10):997–1002CrossRef
30.
go back to reference Albouy JP, Abrahamsson I, Persson LG, Berglundh T (2009) Spontaneous progression of ligatured induced peri-implantitis at implants with different surface characteristics. An experimental study in dogs II: histological observations. Clin Oral Implants Res 20(4):366–371CrossRef Albouy JP, Abrahamsson I, Persson LG, Berglundh T (2009) Spontaneous progression of ligatured induced peri-implantitis at implants with different surface characteristics. An experimental study in dogs II: histological observations. Clin Oral Implants Res 20(4):366–371CrossRef
31.
go back to reference Fickl S, Kebschull M, Calvo-Guirado JL, Hurzeler M, Zuhr O (2015) Experimental peri-implantitis around different types of implants – a clinical and radiographic study in dogs. Clin Implant Dent Relat Res 17(Suppl 2):e661–e669CrossRef Fickl S, Kebschull M, Calvo-Guirado JL, Hurzeler M, Zuhr O (2015) Experimental peri-implantitis around different types of implants – a clinical and radiographic study in dogs. Clin Implant Dent Relat Res 17(Suppl 2):e661–e669CrossRef
32.
go back to reference Sanz-Esporrin J, Blanco J, Sanz-Casado JV, Muñoz F, Sanz M (2019) The adjunctive effect of rhBMP-2 on the regeneration of peri-implant bone defects after experimental peri-implantitis. Clin Oral Implants Res 30(12):1209–1219CrossRef Sanz-Esporrin J, Blanco J, Sanz-Casado JV, Muñoz F, Sanz M (2019) The adjunctive effect of rhBMP-2 on the regeneration of peri-implant bone defects after experimental peri-implantitis. Clin Oral Implants Res 30(12):1209–1219CrossRef
33.
go back to reference Maglione M, Vaccari L, Mancini L, Ciancio R, Bedolla DE, Bevilacqua L, Tonellato P (2019) Micro-ATR FTIR, SEM-EDS and X-ray micro-CT: an innovative multi-technique approach to investigate bone affected by peri-implantitis. Int J Oral Maxillofac Implants 34(3):631–641CrossRef Maglione M, Vaccari L, Mancini L, Ciancio R, Bedolla DE, Bevilacqua L, Tonellato P (2019) Micro-ATR FTIR, SEM-EDS and X-ray micro-CT: an innovative multi-technique approach to investigate bone affected by peri-implantitis. Int J Oral Maxillofac Implants 34(3):631–641CrossRef
34.
go back to reference Finelle G, Papadimitriou DEV, Souza AB, Katebi N, Gallucci GO, Araujo MG (2015) Peri-implant soft tissue and marginal bone adaptation on implant with non-matching healing abutments: micro-CT analysis. Clin Oral Implants Res 26:e42–e46CrossRef Finelle G, Papadimitriou DEV, Souza AB, Katebi N, Gallucci GO, Araujo MG (2015) Peri-implant soft tissue and marginal bone adaptation on implant with non-matching healing abutments: micro-CT analysis. Clin Oral Implants Res 26:e42–e46CrossRef
35.
go back to reference Thoma DS, Jung U-W, Park J-Y, Bienz SP, Husler J, Jung RE (2017) Bone augmentation at peri-implant dehiscence defects comparing a synthetic polyethylene glycol hydrogel matrix versus standard guided bone regeneration techniques. Clin Oral Implants Res 28:e76–e83CrossRef Thoma DS, Jung U-W, Park J-Y, Bienz SP, Husler J, Jung RE (2017) Bone augmentation at peri-implant dehiscence defects comparing a synthetic polyethylene glycol hydrogel matrix versus standard guided bone regeneration techniques. Clin Oral Implants Res 28:e76–e83CrossRef
36.
go back to reference Khobragade P, Jain A, Setlur Nagesh SV, Andreana S, Dziak R, Sunkara SK, Ionita CN (2015) Micro-computed tomography (CT) based assessment of dental regenerative therapy in the canine mandible model. Proc SPIE Int Soc Opt Eng 17:9417 Khobragade P, Jain A, Setlur Nagesh SV, Andreana S, Dziak R, Sunkara SK, Ionita CN (2015) Micro-computed tomography (CT) based assessment of dental regenerative therapy in the canine mandible model. Proc SPIE Int Soc Opt Eng 17:9417
38.
go back to reference Sanz-Martin I, Benic GI, Hammerle CH, Thoma DS (2016) Prospective randomized controlled clinical study comparing two dental implant types: volumetric soft tissue changes at 1 year of loading. Clin Oral Implants Res 27:406–411CrossRef Sanz-Martin I, Benic GI, Hammerle CH, Thoma DS (2016) Prospective randomized controlled clinical study comparing two dental implant types: volumetric soft tissue changes at 1 year of loading. Clin Oral Implants Res 27:406–411CrossRef
39.
go back to reference Sanz-Martin I, Vignoletti F, Nuñez J, Permuy M, Muñoz F, Sanz-Esporrin J, Fierravanti L, Shapira L, Sanz M (2017) Hard and soft tissue integration of immediate and delayed implants with a modified coronal macro design: histological, micro CT and volumetric soft tissue changes from a pre-clinical in vivo study. J Clin Periodontol 44(8):842–853CrossRef Sanz-Martin I, Vignoletti F, Nuñez J, Permuy M, Muñoz F, Sanz-Esporrin J, Fierravanti L, Shapira L, Sanz M (2017) Hard and soft tissue integration of immediate and delayed implants with a modified coronal macro design: histological, micro CT and volumetric soft tissue changes from a pre-clinical in vivo study. J Clin Periodontol 44(8):842–853CrossRef
40.
go back to reference Sanz-Martin I, Ferrantino L, Vignoletti F, Nunez J, Baldini N, Duvina M, Alcaraz J, Sanz M (2018) Contour changes after guided bone regeneration of large non-contained mandibular buccal bone defects using deproteinized bovine bone mineral and a porcine-derived collagen membrane: an experimental in vivo investigation. Clin Oral Investig 22(3):1273–1283CrossRef Sanz-Martin I, Ferrantino L, Vignoletti F, Nunez J, Baldini N, Duvina M, Alcaraz J, Sanz M (2018) Contour changes after guided bone regeneration of large non-contained mandibular buccal bone defects using deproteinized bovine bone mineral and a porcine-derived collagen membrane: an experimental in vivo investigation. Clin Oral Investig 22(3):1273–1283CrossRef
41.
go back to reference Basler T, Naenni N, Schneider D, Hammerle CHF, Jung R, Thoma DS (2018) Randomized controlled clinical study assessing two membranes for guided bone regeneration of peri-implant bone defects: 3-year results. Clin Oral Implants Res 29(5):499–507CrossRef Basler T, Naenni N, Schneider D, Hammerle CHF, Jung R, Thoma DS (2018) Randomized controlled clinical study assessing two membranes for guided bone regeneration of peri-implant bone defects: 3-year results. Clin Oral Implants Res 29(5):499–507CrossRef
43.
go back to reference Mehl A, Gloger W, Kunzelmann KH, Hickel R (1997) A new optical 3-D device for the detection of wear. J Dent Res 76(11):1799–1807CrossRef Mehl A, Gloger W, Kunzelmann KH, Hickel R (1997) A new optical 3-D device for the detection of wear. J Dent Res 76(11):1799–1807CrossRef
44.
go back to reference Windisch SI, Jung RE, Sailer I, Studer SP, Ender A, Hämmerle CHF (2007) A new optical method to evaluate three-dimensional volume changes of alveolar contours: a methodological in vitro study. Clin Oral Implants Res 18:545–551CrossRef Windisch SI, Jung RE, Sailer I, Studer SP, Ender A, Hämmerle CHF (2007) A new optical method to evaluate three-dimensional volume changes of alveolar contours: a methodological in vitro study. Clin Oral Implants Res 18:545–551CrossRef
Metadata
Title
Hard tissue volumetric and soft tissue contour linear changes at implants with different surface characteristics after experimentally induced peri-implantitis: an experimental in vivo investigation
Authors
R. Di Raimondo
Javier Sanz-Esporrin
I. Sanz Martin
F. Vignoletti
J. Nuñez
F. Muñoz
H. J. Haugen
M. Sanz
Publication date
01-06-2021
Publisher
Springer Berlin Heidelberg
Published in
Clinical Oral Investigations / Issue 6/2021
Print ISSN: 1432-6981
Electronic ISSN: 1436-3771
DOI
https://doi.org/10.1007/s00784-020-03720-8

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