The Effect of Time on Root Coverage Outcomes: A Network Meta-analysis

The stability of root coverage outcomes has gained a great deal of interest. However, insufficient evidence is available, mainly due to limited direct comparisons among different techniques and the small sample size among clinical trials. Therefore, the aim of this study was to propose a mixed-models network meta-analysis (NMA) that includes the novelty of assessing time on root coverage outcomes while simultaneously comparing different surgical approaches. A literature search was performed by 2 individual reviewers to identify randomized clinical trials (RCTs) reporting the outcomes of root coverage procedures of at least 2 time points to estimate the slopes of different treatment approaches. The primary outcomes were the changes in slopes for recession depth (REC), keratinized tissue width (KTW), and clinical attachment level. Sixty RCTs with a total of 2,554 gingival recessions (1,864 patients) were included in the NMA. Connective tissue graft (CTG) and enamel matrix derivative (EMD) approaches provided superior initial REC reduction compared to flap advancement alone. However, only CTG-based procedures were effective in maintaining the stability of the gingival margin over time, while EMD, acellular dermal matrix, collagen matrix, and flap alone showed a similar tendency for gingival recession recurrence. Baseline REC and KTW at the earliest postoperative recall were predictors for the stability of the gingival margin. In addition, a geographic center effect on the treatment slopes was observed for REC and KTW. While limitations of the present linear mixed-modeling approach should be considered as it refers to estimation and comparison of time slopes based on an examined while linear framework, the designed NMA showed to be an effective tool for the simultaneous comparison of multiple treatment approaches while taking into account the critical element of time.

[1]  Hom-lay Wang,et al.  The influence of tooth location on the outcomes of multiple adjacent gingival recessions treated with coronally advanced flap: A multicenter Re-Analysis study. , 2019, Journal of periodontology.

[2]  Hom-lay Wang,et al.  Acellular dermal matrix and coronally advanced flap or tunnel technique in the treatment of multiple adjacent gingival recessions. A 12-year follow-up from a randomized clinical trial. , 2019, Journal of Clinical Periodontology.

[3]  Hom-lay Wang,et al.  What Is the Safety Zone for Palatal Soft Tissue Graft Harvesting Based on the Locations of the Greater Palatine Artery and Foramen? A Systematic Review. , 2019, Journal of oral and maxillofacial surgery : official journal of the American Association of Oral and Maxillofacial Surgeons.

[4]  L. Chambrone,et al.  Clinical insights about the evolution of root coverage procedures: The flap, the graft, and the surgery , 2018, Journal of periodontology.

[5]  Hom-lay Wang,et al.  Classification of Soft Tissue Grafting Materials Based on Biologic Principles. , 2018, The International journal of periodontics & restorative dentistry.

[6]  M. Tonetti,et al.  Predictor factors for long‐term outcomes stability of coronally advanced flap with or without connective tissue graft in the treatment of single maxillary gingival recessions: 9 years results of a randomized controlled clinical trial , 2018, Journal of clinical periodontology.

[7]  Hom-lay Wang,et al.  Efficacy of tunnel technique in the treatment of localized and multiple gingival recessions: A systematic review and meta‐analysis , 2018, Journal of periodontology.

[8]  L. Chambrone,et al.  Long-term evaluation (20 years) of the outcomes of subepithelial connective tissue graft plus coronally advanced flap in the treatment of maxillary single recession-type defects. , 2018, Journal of periodontology.

[9]  P. Cortellini,et al.  Mucogingival conditions in the natural dentition: Narrative review, case definitions, and diagnostic considerations , 2018, Journal of periodontology.

[10]  L. Chambrone,et al.  Long‐term evaluation (20 years) of the outcomes of coronally advanced flap in the treatment of single recession‐type defects , 2018, Journal of periodontology.

[11]  A. Yeo,et al.  Gingival profiles in a select Asian cohort: A pilot study , 2018, Journal of investigative and clinical dentistry.

[12]  F. Graziani,et al.  Xenogenic collagen matrix or autologous connective tissue graft as adjunct to coronally advanced flaps for coverage of multiple adjacent gingival recession: Randomized trial assessing non‐inferiority in root coverage and superiority in oral health‐related quality of life , 2017, Journal of clinical periodontology.

[13]  C. Mazzotti,et al.  5-year outcomes after coverage of soft tissue dehiscence around single implants: A prospective cohort study. , 2018, European journal of oral implantology.

[14]  Hom-lay Wang,et al.  Pain perception following epithelialized gingival graft harvesting: a randomized clinical trial , 2018, Clinical Oral Investigations.

[15]  G. Zucchelli,et al.  Coronally Advanced Flap with Site-Specific Application of Connective Tissue Graft for the Treatment of Multiple Adjacent Gingival Recessions: A 3-Year Follow-Up Case Series. , 2018, The International journal of periodontics & restorative dentistry.

[16]  M. Casati,et al.  Xenogenous Collagen Matrix and/or Enamel Matrix Derivative for Treatment of Localized Gingival Recessions: A Randomized Clinical Trial. Part I Clinical Outcomes , 2017, Journal of periodontology.

[17]  F. Cairo Periodontal plastic surgery of gingival recessions at single and multiple teeth , 2017, Periodontology 2000.

[18]  R. Kumar,et al.  Comparative Evaluation of Platelet Rich Fibrin and Dehydrated Amniotic Membrane for the Treatment of Gingival Recession- A Clinical Study. , 2017, Journal of clinical and diagnostic research : JCDR.

[19]  M. Sanz,et al.  Long‐Term Stability of Root Coverage by Coronally Advanced Flap Procedures , 2017, Journal of periodontology.

[20]  D. Tatakis,et al.  Connective tissue graft and tunnel or trapezoidal flap for the treatment of single maxillary gingival recessions: a randomized clinical trial , 2017, Journal of clinical periodontology.

[21]  Y. Tu,et al.  Comparisons of periodontal regenerative therapies: A meta‐analysis on the long‐term efficacy , 2017, Journal of clinical periodontology.

[22]  M. P. Santamaría Tunnel oder koronaler Lappen bei singulärer Rezession? , 2017, Zahnmedizin up2date.

[23]  F. Nociti,et al.  Xenogenous Collagen Matrix and/or Enamel Matrix Derivative for Treatment of Localized Gingival Recessions: A Randomized Clinical Trial. Part II Patient‐Reported Outcomes , 2017, Journal of periodontology.

[24]  J. Buti,et al.  Periodontal regeneration compared with access flap surgery in human intra‐bony defects 20‐year follow‐up of a randomized clinical trial: tooth retention, periodontitis recurrence and costs , 2017, Journal of clinical periodontology.

[25]  G. Seydaoglu,et al.  Microsurgical Instruments in Laterally Moved, Coronally Advanced Flap for Miller Class III Isolated Recession Defects: A Randomized Controlled Clinical Trial. , 2017, The International journal of periodontics & restorative dentistry.

[26]  N. Baldini,et al.  Patient-reported outcomes and aesthetic evaluation of root coverage procedures: a 12-month follow-up of a randomized controlled clinical trial. , 2016, Journal of clinical periodontology.

[27]  M. Tanasiewicz,et al.  Tunnel Technique With Collagen Matrix Compared With Connective Tissue Graft for Treatment of Periodontal Recession: A Randomized Clinical Trial. , 2016, Journal of periodontology.

[28]  B. Willershausen,et al.  Root coverage with connective tissue graft associated with coronally advanced flap or tunnel technique: a randomized, double-blind, mono-centre clinical trial. , 2016, Journal of clinical periodontology.

[29]  Michela Baccini,et al.  Root coverage procedures improve patient aesthetics. A systematic review and Bayesian network meta-analysis. , 2016, Journal of clinical periodontology.

[30]  M. Nieri,et al.  Clinical efficacy of coronally advanced flap with or without connective tissue graft for the treatment of multiple adjacent gingival recessions in the aesthetic area: a randomized controlled clinical trial. , 2016, Journal of clinical periodontology.

[31]  D. Consonni,et al.  Gingival Margin Stability After Mucogingival Plastic Surgery. The Effect of Manual Versus Powered Toothbrushing: A Randomized Clinical Trial. , 2016, Journal of periodontology.

[32]  M. Atieh,et al.  Xenogeneic collagen matrix for periodontal plastic surgery procedures: a systematic review and meta-analysis. , 2016, Journal of periodontal research.

[33]  A. B. Novaes,et al.  Root Coverage in Smokers with Acellular Dermal Matrix Graft and Enamel Matrix Derivative: A 12-Month Randomized Clinical Trial. , 2016, The International journal of periodontics & restorative dentistry.

[34]  K. Murthy,et al.  A Comparison of Acellular Dermal Matrix Allograft and Periosteal Pedicle Graft Covered by Coronally Advanced Flap in the Treatment of Gingival Recession: 1-Year Follow-Up Study. , 2016, The International journal of periodontics & restorative dentistry.

[35]  L. Chambrone,et al.  Long-Term Outcomes of Untreated Buccal Gingival Recessions: A Systematic Review and Meta-Analysis. , 2016, Journal of periodontology.

[36]  M. Dominiak,et al.  A Preliminary Clinical Comparison of the Use of Fascia Lata Allograft and Autogenous Connective Tissue Graft in Multiple Gingival Recession Coverage Based on the Tunnel Technique. , 2016, Advances in clinical and experimental medicine : official organ Wroclaw Medical University.

[37]  C. Mazzotti,et al.  Coronally Advanced Flap with Different Designs in the Treatment of Gingival Recession: A Comparative Controlled Randomized Clinical Trial. , 2016, The International journal of periodontics & restorative dentistry.

[38]  M. McGuire,et al.  Long-Term Results Comparing Xenogeneic Collagen Matrix and Autogenous Connective Tissue Grafts With Coronally Advanced Flaps for Treatment of Dehiscence-Type Recession Defects. , 2016, Journal of periodontology.

[39]  K. Murthy,et al.  Multiple Gingival Recession Defects Treated with Coronally Advanced Flap and Either the VISTA Technique Enhanced with GEM 21S or Periosteal Pedicle Graft: A 9-Month Clinical Study. , 2016, The International journal of periodontics & restorative dentistry.

[40]  A. Sculean,et al.  Coronally advanced flap with or without porcine collagen matrix for root coverage: a randomized clinical trial , 2016, Clinical Oral Investigations.

[41]  L. Gobbato,et al.  Patient morbidity and root coverage outcomes after the application of a subepithelial connective tissue graft in combination with a coronally advanced flap or via a tunneling technique: a randomized controlled clinical trial , 2016, Clinical Oral Investigations.

[42]  R. Kathariya,et al.  Comparative Evaluation of Coronally Advanced Flap with and without Bioactive Glass Putty in the Management of Gingival Recession Defects: A Randomized Controlled Clinical Trial. , 2016, Journal of the International Academy of Periodontology.

[43]  A. Martínez-Rodríguez,et al.  Surgical treatment of localized gingival recessions using coronally advanced flaps with or without subepithelial connective tissue graft , 2015, Medicina oral, patologia oral y cirugia bucal.

[44]  O. Ozcelik,et al.  Diode laser for harvesting de-epithelialized palatal graft in the treatment of gingival recession defects: a randomized clinical trial. , 2016, Journal of clinical periodontology.

[45]  S. Yılmaz,et al.  Tunnel technique versus coronally advanced flap with acellular dermal matrix graft in the treatment of multiple gingival recessions. , 2015, Journal of clinical periodontology.

[46]  A. Uppoor,et al.  Semilunar Coronally Advanced Flap with or without Low Level Laser Therapy in Treatment of Human Maxillary Multiple Adjacent Facial Gingival Recessions: A Clinical Study. , 2015, Journal of esthetic and restorative dentistry : official publication of the American Academy of Esthetic Dentistry ... [et al.].

[47]  Hom-lay Wang,et al.  Comparison of Freeze-Dried and Solvent-Dehydrated Acellular Dermal Matrix for Root Coverage: A Randomized Controlled Trial. , 2015, The International journal of periodontics & restorative dentistry.

[48]  J. Zielak,et al.  Non-Pedicled Buccal Fat Pad Grafts to Treatment for Class I and II Gingival Recessions: A Clinical Trial. , 2015, Brazilian dental journal.

[49]  A. B. Novaes,et al.  A Randomized Comparative Study of Two Techniques to Optimize the Root Coverage Using a Porcine Collagen Matrix. , 2015, Brazilian dental journal.

[50]  U. Balli,et al.  Concentrated growth factor in the treatment of adjacent multiple gingival recessions: a split-mouth randomized clinical trial. , 2015, Journal of clinical periodontology.

[51]  O. Ozcelik,et al.  Prediction of root coverage for single recessions in anterior teeth: a 6-month study. , 2015, Journal of clinical periodontology.

[52]  G. Zucchelli,et al.  Periodontal plastic surgery , 2015 .

[53]  M. Nieri,et al.  Stability of root coverage outcomes at single maxillary gingival recession with loss of interdental attachment: 3-year extension results from a randomized, controlled, clinical trial. , 2015, Journal of clinical periodontology.

[54]  I. Milinkovic,et al.  Clinical application of autologous fibroblast cell culture in gingival recession treatment. , 2015, Journal of periodontal research.

[55]  F. Javed,et al.  Efficacy of acellular dermal matrix and autogenous connective tissue grafts in the treatment of gingival recession defects among Asians. , 2015, Journal of investigative and clinical dentistry.

[56]  E. Fu,et al.  Root coverage by coronally advanced flap with connective tissue graft and/or enamel matrix derivative: a meta-analysis. , 2015, Journal of periodontal research.

[57]  G. O. Macedo,et al.  A modified surgical flap for root coverage in association with grafting materials. , 2015, Journal of esthetic and restorative dentistry : official publication of the American Academy of Esthetic Dentistry ... [et al.].

[58]  N. Nizam,et al.  Micro- and macrosurgical techniques in the coverage of gingival recession using connective tissue graft: 2 years follow-up. , 2015, Journal of esthetic and restorative dentistry : official publication of the American Academy of Esthetic Dentistry ... [et al.].

[59]  L. Gobbato,et al.  Evaluation of root coverage with and without connective tissue graft for the treatment of single maxillary gingival recession using an image analysis system: a randomized controlled clinical trial. , 2015, The International journal of periodontics & restorative dentistry.

[60]  Y. Tu Linear mixed model approach to network meta-analysis for continuous outcomes in periodontal research. , 2015, Journal of clinical periodontology.

[61]  L. Chambrone,et al.  Periodontal soft tissue root coverage procedures: a systematic review from the AAP Regeneration Workshop. , 2015, Journal of periodontology.

[62]  M. McGuire,et al.  Periodontal soft tissue root coverage procedures: a consensus report from the AAP Regeneration Workshop. , 2015, Journal of periodontology.

[63]  Guillermo I Carrillo,et al.  A Controlled Clinical Trial , 2015 .

[64]  M. Santamaria,et al.  Connective tissue graft associated or not with low laser therapy to treat gingival recession: randomized clinical trial. , 2015, Journal of clinical periodontology.

[65]  A. Jha,et al.  Comparative evaluation of surgical modalities for coverage of gingival recession: An Armed Forces Medical College perspective. , 2015, Medical journal, Armed Forces India.

[66]  Hom-lay Wang,et al.  Comparison of two differently processed acellular dermal matrix products for root coverage procedures: a prospective, randomized multicenter study. , 2014, Journal of periodontology.

[67]  A. B. Novaes,et al.  A modified surgical technique for root coverage with an allograft: a 12-month randomized clinical trial. , 2014, Journal of periodontology.

[68]  M. Maltz,et al.  Estimates and multivariable risk assessment of gingival recession in the population of adults from Porto Alegre, Brazil. , 2014, Journal of clinical periodontology.

[69]  M. McGuire,et al.  Evaluation of recession defects treated with coronally advanced flaps and either recombinant human platelet-derived growth factor-BB plus β-tricalcium phosphate or connective tissue: comparison of clinical parameters at 5 years. , 2014, Journal of periodontology.

[70]  C. Mazzotti,et al.  Coronally advanced flap + connective tissue graft techniques for the treatment of deep gingival recession in the lower incisors. A controlled randomized clinical trial. , 2014, Journal of clinical periodontology.

[71]  C. Mazzotti,et al.  Does the dimension of the graft influence patient morbidity and root coverage outcomes? A randomized controlled clinical trial. , 2014, Journal of clinical periodontology.

[72]  N. Bhavsar,et al.  Clinical evaluation of subepithelial connective tissue graft and guided tissue regeneration for treatment of Miller’s class 1 gingival recession (comparative, split mouth, six months study) , 2014, Journal of clinical and experimental dentistry.

[73]  D. Bates,et al.  Fitting Linear Mixed-Effects Models Using lme4 , 2014, 1406.5823.

[74]  M. Putcha,et al.  Comparison of coronally advanced and semilunar coronally repositioned flap for the treatment of gingival recession. , 2014, Journal of clinical and diagnostic research : JCDR.

[75]  R. Jung,et al.  Tunnel technique with connective tissue graft versus coronally advanced flap with enamel matrix derivative for root coverage: a RCT using 3D digital measuring methods. Part I. Clinical and patient-centred outcomes. , 2014, Journal of clinical periodontology.

[76]  R. Jung,et al.  Tunnel technique with connective tissue graft versus coronally advanced flap with enamel matrix derivative for root coverage: a RCT using 3D digital measuring methods. Part II. Volumetric studies on healing dynamics and gingival dimensions. , 2014, Journal of clinical periodontology.

[77]  R. Kathariya,et al.  Zucchelli's technique or tunnel technique with subepithelial connective tissue graft for treatment of multiple gingival recessions. , 2014, Journal of the International Academy of Periodontology.

[78]  C. Mazzotti,et al.  Coronally advanced flap with and without connective tissue graft for the treatment of multiple gingival recessions: a comparative short- and long-term controlled randomized clinical trial. , 2014, Journal of clinical periodontology.

[79]  F. Graziani,et al.  Efficacy of periodontal plastic procedures in the treatment of multiple gingival recessions. , 2014, Journal of clinical periodontology.

[80]  M. Nieri,et al.  Efficacy of periodontal plastic surgery procedures in the treatment of localized facial gingival recessions. A systematic review. , 2014, Journal of clinical periodontology.

[81]  E. Rompen,et al.  Coronally advanced flap versus the pouch technique combined with a connective tissue graft to treat Miller's class I gingival recession: a randomized controlled trial. , 2014, Journal of clinical periodontology.

[82]  B. Kuru,et al.  Clinical evaluation of coronally advanced flap with or without acellular dermal matrix graft on complete defect coverage for the treatment of multiple gingival recessions with thin tissue biotype. , 2014, Journal of clinical periodontology.

[83]  M. Bhongade,et al.  A comparative evaluation of rhPDGF-BB + β-TCP and subepithelial connective tissue graft for the treatment of multiple gingival recession defects in humans. , 2014, The International journal of periodontics & restorative dentistry.

[84]  P. Gümüş,et al.  Graft stabilization with cyanoacrylate decreases shrinkage of free gingival grafts. , 2014, Australian dental journal.

[85]  Lorenzo Tamagnone,et al.  Coronally advanced flap with and without a xenogenic collagen matrix in the treatment of multiple recessions: a randomized controlled clinical study. , 2014, The International journal of periodontics & restorative dentistry.

[86]  P. Gowda,et al.  Comparative evaluation of efficacy of stem cells in combination with PLA/PGA membrane versus sub-epithelial connective tissue for the treatment of multiple gingival recession defects: a clinical study. , 2014, Journal of stem cells.

[87]  G. Atilla,et al.  Platelet-rich fibrin in the treatment of localized gingival recessions: a split-mouth randomized clinical trial , 2014, Clinical Oral Investigations.

[88]  M. Nunn,et al.  Coronally advanced flaps (CAF) plus connective tissue graft (CTG) is the gold standard for treatment of Miller class I and II gingival defects. , 2013, The journal of evidence-based dental practice.

[89]  V. Lajnert,et al.  Coronally advanced flap alone or with connective tissue graft in the treatment of single gingival recession defects: a long-term randomized clinical trial. , 2013, Journal of periodontology.

[90]  M. Sağlam,et al.  Efficacy of collagen membrane seeded with autologous gingival fibroblasts in gingival recession treatment: a randomized, controlled pilot study. , 2013, Journal of periodontology.

[91]  A. A. R. Ghahroudi,et al.  Comparison of amnion allograft with connective tissue graft for root coverage procedures: a double-blind, randomized, controlled clinical trial. , 2013, Journal of the International Academy of Periodontology.

[92]  A. Soancă,et al.  Subepithelial connective tissue graft with or without enamel matrix derivative for the treatment of Miller class I and II gingival recessions: a controlled randomized clinical trial. , 2013, Journal of periodontal research.

[93]  M. Casati,et al.  Randomized controlled clinical trial evaluating connective tissue graft plus resin-modified glass ionomer restoration for the treatment of gingival recession associated with non-carious cervical lesion: 2-year follow-up. , 2013, Journal of periodontology.

[94]  A. Parlar,et al.  Enamel matrix derivative (emdogain) or subepithelial connective tissue graft for the treatment of adjacent multiple gingival recessions: a pilot study. , 2013, The International journal of periodontics & restorative dentistry.

[95]  M. Nieri,et al.  Patient perceptions of buccal gingival recessions and requests for treatment. , 2013, Journal of clinical periodontology.

[96]  A. Sculean,et al.  Treatment of multiple adjacent Miller class I and II gingival recessions with a Modified Coronally Advanced Tunnel (MCAT) technique and a collagen matrix or palatal connective tissue graft: a randomized, controlled clinical trial. , 2013, Journal of clinical periodontology.

[97]  Alex J. Sutton,et al.  Evidence Synthesis for Decision Making 1 , 2013, Medical decision making : an international journal of the Society for Medical Decision Making.

[98]  V. Thombre,et al.  Comparative evaluation of the effectiveness of coronally positioned flap with or without acellular dermal matrix allograft in the treatment of multiple marginal gingival recession defects. , 2013, The International journal of periodontics & restorative dentistry.

[99]  M. Baccini,et al.  Bayesian network meta-analysis of root coverage procedures: ranking efficacy and identification of best treatment. , 2013, Journal of clinical periodontology.

[100]  E. Marcantonio,et al.  Root coverage stability of the subepithelial connective tissue graft and guided tissue regeneration: a 30-month follow-up clinical trial. , 2013, Journal of dentistry.

[101]  N. Baldini,et al.  Treatment of gingival recession defects with a coronally advanced flap and a xenogeneic collagen matrix: a multicenter randomized clinical trial. , 2013, Journal of clinical periodontology.

[102]  Selin Yıldırım,et al.  Treatment of localized gingival recessions using gingival unit grafts: a randomized controlled clinical trial. , 2013, Journal of periodontology.

[103]  M. Nunn,et al.  Evaluation of human recession defects treated with coronally advanced flaps and either enamel matrix derivative or connective tissue: comparison of clinical parameters at 10 years. , 2012, Journal of periodontology.

[104]  G. Zucchelli,et al.  Root coverage in molar teeth: a comparative controlled randomized clinical trial. , 2012, Journal of clinical periodontology.

[105]  S. Bittencourt,et al.  Relationship between the width of the zone of keratinized tissue and thickness of gingival tissue in the anterior maxilla. , 2012, The International journal of periodontics & restorative dentistry.

[106]  A. B. Novaes,et al.  A Randomized comparative clinical study of two surgical procedures to improve root coverage with the acellular dermal matrix graft. , 2012, Journal of clinical periodontology.

[107]  M. Nieri,et al.  Coronally advanced flap with and without connective tissue graft for the treatment of single maxillary gingival recession with loss of inter-dental attachment. A randomized controlled clinical trial. , 2012, Journal of clinical periodontology.

[108]  D. Cipher,et al.  A comparative study of root defect coverage using an acellular dermal matrix with and without a recombinant human platelet-derived growth factor. , 2012, Journal of periodontology.

[109]  M. Casati,et al.  Surgical microscope may enhance root coverage with subepithelial connective tissue graft: a randomized-controlled clinical trial. , 2012, Journal of periodontology.

[110]  C. Pannuti,et al.  Evidence-based periodontal plastic surgery. II. An individual data meta-analysis for evaluating factors in achieving complete root coverage. , 2012, Journal of periodontology.

[111]  M. Taba,et al.  Acellular dermal matrix graft with or without enamel matrix derivative for root coverage in smokers: a randomized clinical study. , 2012, Journal of clinical periodontology.

[112]  S. Jankovic,et al.  Use of platelet-rich fibrin membrane following treatment of gingival recession: a randomized clinical trial. , 2012, The International journal of periodontics & restorative dentistry.

[113]  Lorenzo Tamagnone,et al.  Treatment of gingival recession defects using coronally advanced flap with a porcine collagen matrix compared to coronally advanced flap with connective tissue graft: a randomized controlled clinical trial. , 2012, Journal of periodontology.

[114]  A. Mahajan,et al.  Comparison of periosteal pedicle graft and subepithelial connective tissue graft for the treatment of gingival recession defects. , 2012, Australian dental journal.

[115]  Om N. Baghele,et al.  An evaluation of the effectiveness and predictability of transpositional flap vs connective tissue graft for coverage of Miller's class-I and class-II facial marginal tissue recession lesions: a clinical study. , 2012, Indian journal of dental research : official publication of Indian Society for Dental Research.

[116]  Vincenzo Mirisola di Torresanto,et al.  Split-mouth comparison of a coronally advanced flap with or without enamel matrix derivative for coverage of multiple gingival recession defects: 6- and 24-month follow-up. , 2012, The International journal of periodontics & restorative dentistry.

[117]  A. B. Novaes,et al.  Treatment of gingival recessions in heavy smokers using two surgical techniques: a controlled clinical trial. , 2012, Brazilian dental journal.

[118]  A. Parlar,et al.  EMD or subepithelial connective tissue graft for the treatment of single gingival recessions: a pilot study. , 2011, Journal of periodontal research.

[119]  Mahvash Mousavi Jazi,et al.  Acellular dermal matrix allograft versus subepithelial connective tissue graft in treatment of gingival recessions: a 5-year randomized clinical study. , 2011, Journal of clinical periodontology.

[120]  O. Ozcelik,et al.  Coronally advanced flap adjunct with low intensity laser therapy: a randomized controlled clinical pilot study. , 2011, Journal of clinical periodontology.

[121]  E. Stellini,et al.  Coronally advanced flap combined with a subepithelial connective tissue graft using full- or partial-thickness flap reflection. , 2011, Journal of periodontology.

[122]  J. Sterne,et al.  The Cochrane Collaboration’s tool for assessing risk of bias in randomised trials , 2011, BMJ : British Medical Journal.

[123]  M. Nieri,et al.  Fourteen-year outcomes of coronally advanced flap for root coverage: follow-up from a randomized trial. , 2011, Journal of clinical periodontology.

[124]  A. Lafzi,et al.  Comparative clinical study of coronally advanced flap with and without use of plasma rich in growth factors in the treatment of gingival recession. , 2011, American journal of dentistry.

[125]  O. Ozcelik,et al.  Treatment of multiple gingival recessions using a coronally advanced flap procedure combined with button application. , 2011, Journal of clinical periodontology.

[126]  P. Cury,et al.  Use of anorganic bovine-derived hydroxyapatite matrix/cell-binding peptide (P-15) in the treatment isolated Class I gingival recession of defects: a pilot study. , 2011, Journal of periodontology.

[127]  D. Consonni,et al.  Subepithelial connective tissue graft for treatment of gingival recessions with and without enamel matrix derivative: a multicenter, randomized controlled clinical trial. , 2011, The International journal of periodontics & restorative dentistry.

[128]  B. Mealey,et al.  Relationship between clinical periodontal biotype and labial plate thickness: an in vivo study. , 2011, The International journal of periodontics & restorative dentistry.

[129]  M. Esposito,et al.  Human dermis graft versus autogenous connective tissue grafts for thickening soft tissue and covering multiple gingival recessions: 6-month results from a preference clinical trial. , 2011, European journal of oral implantology.

[130]  J. Shulman,et al.  A comparative study of root coverage using two different acellular dermal matrix products. , 2010, Journal of periodontology.

[131]  A. M. Marcaccini,et al.  Comparison between micro- and macrosurgical techniques for the treatment of localized gingival recessions using coronally positioned flaps and enamel matrix derivative. , 2010, Journal of periodontology.

[132]  M. Borghi,et al.  Application of subepithelial connective tissue graft with or without enamel matrix derivative for root coverage: a split-mouth randomized study. , 2010, Journal of oral science.

[133]  M. McGuire,et al.  Xenogeneic collagen matrix with coronally advanced flap compared to connective tissue with coronally advanced flap for the treatment of dehiscence-type recession defects. , 2010, Journal of periodontology.

[134]  G. Ambrosano,et al.  The influence of local anatomy on the outcome of treatment of gingival recession associated with non-carious cervical lesions. , 2010, Journal of periodontology.

[135]  C. Mazzotti,et al.  Patient morbidity and root coverage outcome after subepithelial connective tissue and de-epithelialized grafts: a comparative randomized-controlled clinical trial. , 2010, Journal of clinical periodontology.

[136]  Y. Çiçek,et al.  Root surface biomodification with Nd:YAG laser for the treatment of gingival recession with subepithelial connective tissue grafts. , 2010, Photomedicine and laser surgery.

[137]  P. Eickholz,et al.  Ten-year results after connective tissue grafts and guided tissue regeneration for root coverage. , 2010, Journal of periodontology.

[138]  S. Dibart,et al.  A clinical comparison of two flap designs for coronal advancement of the gingival margin: semilunar versus coronally advanced flap. , 2010, Journal of clinical periodontology.

[139]  M. Nieri,et al.  Coronally advanced flap versus connective tissue graft in the treatment of multiple gingival recessions: a split-mouth study with a 5-year follow-up. , 2010, Journal of clinical periodontology.

[140]  G. Tomar,et al.  Acellular dermal matrix seeded with autologous gingival fibroblasts for the treatment of gingival recession: a proof-of-concept study. , 2010, Journal of periodontology.

[141]  S. Dibart,et al.  Clinical evaluation of single-stage advanced versus rotated flaps in the treatment of gingival recessions. , 2010, Journal of periodontology.

[142]  K. Nagy,et al.  Treatment of class III multiple gingival recessions: a randomized-clinical trial. , 2010, Journal of clinical periodontology.

[143]  I. Milinkovic,et al.  The coronally advanced flap in combination with platelet-rich fibrin (PRF) and enamel matrix derivative in the treatment of gingival recession: a comparative study. , 2010, The European journal of esthetic dentistry : official journal of the European Academy of Esthetic Dentistry.

[144]  L. Chambrone,et al.  Treatment of Miller Class I and II localized recession defects using laterally positioned flaps: a 24-month study. , 2009, American journal of dentistry.

[145]  M. Fraga,et al.  The association of a polydioxanone tent without a guided tissue regeneration membrane to a coronal sliding flap for root coverage. , 2009, Journal of periodontology.

[146]  Jeremy Grimshaw,et al.  AMSTAR is a reliable and valid measurement tool to assess the methodological quality of systematic reviews. , 2009, Journal of clinical epidemiology.

[147]  G. Ambrosano,et al.  Connective tissue graft plus resin-modified glass ionomer restoration for the treatment of gingival recession associated with non-carious cervical lesion: a randomized-controlled clinical trial. , 2009, Journal of clinical periodontology.

[148]  C. Mazzotti,et al.  Coronally advanced flap with and without vertical releasing incisions for the treatment of multiple gingival recessions: a comparative controlled randomized clinical trial. , 2009, Journal of periodontology.

[149]  M. Chitsazi,et al.  Coronally advanced flap in combination with acellular dermal matrix with or without enamel matrix derivatives for root coverage. , 2009, Indian journal of dental research : official publication of Indian Society for Dental Research.

[150]  M. Casati,et al.  Semilunar coronally positioned flap or subepithelial connective tissue graft for the treatment of gingival recession: a 30-month follow-up study. , 2009, Journal of periodontology.

[151]  Hom-lay Wang,et al.  Significance of the epithelial collar on the subepithelial connective tissue graft. , 2009, Journal of periodontology.

[152]  A. Lafzi,et al.  A comparative study of the long term results of root coverage with connective tissue graft or enamel matrix protein: 24-month results. , 2009, Medicina oral, patologia oral y cirugia bucal.

[153]  M. Casati,et al.  Cervical restoration and the amount of soft tissue coverage achieved by coronally advanced flap: a 2-year follow-up randomized-controlled clinical trial. , 2009, Journal of clinical periodontology.

[154]  L. Chambrone,et al.  Root coverage procedures for the treatment of localised recession-type defects. , 2009, The Cochrane database of systematic reviews.

[155]  B. Golestan,et al.  A comparative study of two root-coverage techniques with regard to interdental papilla dimension as a prognostic factor. , 2009, The International journal of periodontics & restorative dentistry.

[156]  J. Shibli,et al.  Dimensional changes between free gingival grafts fixed with ethyl cyanoacrylate and silk sutures. , 2009, Journal of the International Academy of Periodontology.

[157]  M. McGuire,et al.  Growth factor-mediated treatment of recession defects: a randomized controlled trial and histologic and microcomputed tomography examination. , 2009, Journal of periodontology.

[158]  N. Sforza,et al.  Hand and ultrasonic instrumentation in combination with root-coverage surgery: a comparative controlled randomized clinical trial. , 2009, Journal of periodontology.

[159]  H. Greenwell,et al.  Root coverage using acellular dermal matrix and comparing a coronally positioned tunnel with and without platelet-rich plasma: a pilot study in humans. , 2009, Journal of periodontology.

[160]  D. Etienne,et al.  Clinical evaluation of a modified coronally advanced flap alone or in combination with a platelet-rich fibrin membrane for the treatment of adjacent multiple gingival recessions: a 6-month study. , 2009, Journal of periodontology.

[161]  G. Cardaropoli,et al.  Healing of gingival recessions using a collagen membrane with a hemineralized xenograft: a randomized controlled clinical trial. , 2009, The International journal of periodontics & restorative dentistry.

[162]  L. Francetti,et al.  Does placement of a connective tissue graft improve the outcomes of coronally advanced flap for coverage of single gingival recessions in upper anterior teeth? A multi-centre, randomized, double-blind, clinical trial. , 2009, Journal of clinical periodontology.

[163]  M. Radvar,et al.  Treatment of gingival recessions by guided tissue regeneration and coronally advanced flap. , 2009, The New York state dental journal.

[164]  D. Moher,et al.  Preferred reporting items for systematic reviews and meta-analyses: the PRISMA statement. , 2009, Journal of clinical epidemiology.

[165]  A. B. Novaes,et al.  Acellular dermal matrix allograft. The results of controlled randomized clinical studies. , 2008, Journal of the International Academy of Periodontology.

[166]  L. Chambrone,et al.  Can subepithelial connective tissue grafts be considered the gold standard procedure in the treatment of Miller Class I and II recession-type defects? , 2008, Journal of dentistry.

[167]  A. B. Novaes,et al.  Comparative clinical study of a subepithelial connective tissue graft and acellular dermal matrix graft for the treatment of gingival recessions: six- to 12-month changes. , 2008, Journal of the International Academy of Periodontology.

[168]  E. Karabulut,et al.  Use of platelet gel with connective tissue grafts for root coverage: a randomized-controlled trial. , 2008, Journal of clinical periodontology.

[169]  Márcio F. M. Grisi,et al.  Comparison between two surgical techniques for root coverage with an acellular dermal matrix graft. , 2008, Journal of clinical periodontology.

[170]  M. Casati,et al.  Coronally positioned flap plus resin-modified glass ionomer restoration for the treatment of gingival recession associated with non-carious cervical lesions: a randomized controlled clinical trial. , 2008, Journal of periodontology.

[171]  G. Eckert,et al.  Changes in gingival dimensions following connective tissue grafts for root coverage: comparison of two procedures. , 2008, Journal of periodontology.

[172]  H. Greenwell,et al.  Root coverage using acellular dermal matrix and comparing a coronally positioned tunnel to a coronally positioned flap approach. , 2008, Journal of periodontology.

[173]  J. Dixit,et al.  A patient-centered clinical evaluation of acellular dermal matrix graft in the treatment of gingival recession defects. , 2007, Journal of periodontology.

[174]  H-K Lu,et al.  Is coronally positioned flap procedure adjunct with enamel matrix derivative or root conditioning a relevant predictor for achieving root coverage? A systemic review. , 2007, Journal of periodontal research.

[175]  M. Casati,et al.  Root surface biomodification with EDTA for the treatment of gingival recession with a semilunar coronally repositioned flap. , 2007, Journal of periodontology.

[176]  A. Droździk,et al.  Subepithelial connective tissue graft in the treatment of multiple gingival recession. , 2007, Oral surgery, oral medicine, oral pathology, oral radiology, and endodontics.

[177]  A. Lafzi,et al.  Effect of connective tissue graft orientation on the root coverage outcomes of coronally advanced flap , 2007, Clinical Oral Investigations.

[178]  M. Taba,et al.  Comparison of two surgical procedures for use of the acellular dermal matrix graft in the treatment of gingival recessions: a randomized controlled clinical study. , 2007, Journal of periodontology.

[179]  J. C. Joly,et al.  Root coverage in isolated gingival recessions using autograft versus allograft: a pilot study. , 2007, Journal of periodontology.

[180]  D. Peruzzo,et al.  Coronally positioned flap for treatment of restored root surfaces: a 6-month clinical evaluation. , 2007, Journal of periodontology.

[181]  M. Nunn,et al.  A comparative study of root coverage using acellular dermal matrix with and without enamel matrix derivative. , 2007, Journal of periodontology.

[182]  M. Paolantonio,et al.  Root coverage with a coronally positioned flap used in combination with enamel matrix derivative: 18-month clinical evaluation. , 2006, Journal of periodontology.

[183]  P. Damoulis,et al.  Postoperative complications following gingival augmentation procedures. , 2006, Journal of periodontology.

[184]  Hom-lay Wang,et al.  Flap thickness as a predictor of root coverage: a systematic review. , 2006, Journal of periodontology.

[185]  M. Casati,et al.  A two-year prospective study of coronally positioned flap with or without acellular dermal matrix graft. , 2006, Journal of clinical periodontology.

[186]  Kenneth J Erley,et al.  Gingival recession treatment with connective tissue grafts in smokers and non-smokers. , 2006, Journal of periodontology.

[187]  R. Cohen,et al.  The effect of EDTA in attachment gain and root coverage. , 2006, Compendium of continuing education in dentistry.

[188]  M. Rahmani,et al.  Comparative clinical evaluation of acellular dermal matrix allograft and connective tissue graft for the treatment of gingival recession. , 2006, The journal of contemporary dental practice.

[189]  H. Tal,et al.  Comparative study of two root coverage procedures: a 24-month follow-up multicenter study. , 2006, Journal of periodontology.

[190]  M. Casati,et al.  Comparative 6-month clinical study of a semilunar coronally positioned flap and subepithelial connective tissue graft for the treatment of gingival recession. , 2006, Journal of periodontology.

[191]  R. Caffesse,et al.  Enamel matrix derivative and coronal flaps to cover marginal tissue recessions. , 2006, Journal of periodontology.

[192]  M. McGuire,et al.  Comparison of recombinant human platelet-derived growth factor-BB plus beta tricalcium phosphate and a collagen membrane to subepithelial connective tissue grafting for the treatment of recession defects: a case series. , 2006, The International journal of periodontics & restorative dentistry.

[193]  Gábor Csárdi,et al.  The igraph software package for complex network research , 2006 .

[194]  C. Debernardi,et al.  Coronally advanced flap with or without enamel matrix derivative for root coverage: a 2-year study. , 2005, Journal of clinical periodontology.

[195]  J. Bernimoulin,et al.  Coverage of Miller class I and II recession defects using enamel matrix proteins versus coronally advanced flap technique: a 2-year report. , 2005, Journal of periodontology.

[196]  Hom-lay Wang,et al.  Acellular dermal matrix for mucogingival surgery: a meta-analysis. , 2005, Journal of periodontology.

[197]  T. Tözüm,et al.  Treatment of gingival recession: comparison of two techniques of subepithelial connective tissue graft. , 2005, Journal of periodontology.

[198]  Randall J. Harris,et al.  A comparison of three techniques to obtain root coverage on mandibular incisors. , 2005, Journal of periodontology.

[199]  W. Giannobile,et al.  The effect of platelet-rich plasma on the coronally advanced flap root coverage procedure: a pilot human trial. , 2005, Journal of periodontology.

[200]  B. Boyan,et al.  A 2-year follow-up of root coverage using sub-pedicle acellular dermal matrix allografts and subepithelial connective tissue autografts. , 2005, Journal of periodontology.

[201]  M. Nunn,et al.  Evaluation of the safety and efficacy of periodontal applications of a living tissue-engineered human fibroblast-derived dermal substitute. II. Comparison to the subepithelial connective tissue graft: a randomized controlled feasibility study. , 2005, Journal of periodontology.

[202]  L. Francetti,et al.  The influence of anatomical features on the outcome of gingival recessions treated with coronally advanced flap and enamel matrix derivative: a 1-year prospective study. , 2005, Journal of periodontology.

[203]  K. Leknes,et al.  Coronally positioned flap procedures with or without a biodegradable membrane in the treatment of human gingival recession. A 6-year follow-up study. , 2005, Journal of clinical periodontology.

[204]  M. Taba,et al.  New surgical approach for root coverage of localized gingival recession with acellular dermal matrix: a 12-month comparative clinical study. , 2005, Journal of esthetic and restorative dentistry : official publication of the American Academy of Esthetic Dentistry ... [et al.].

[205]  T. Testori,et al.  Microsurgical treatment of gingival recession: a controlled clinical study. , 2005, The International journal of periodontics & restorative dentistry.

[206]  N. Lang,et al.  Coverage of localized gingival recessions: comparison of micro- and macrosurgical techniques. , 2005, Journal of clinical periodontology.

[207]  E. Allen,et al.  Histologic evaluation of autogenous connective tissue and acellular dermal matrix grafts in humans. , 2005, Journal of periodontology.

[208]  T. Griffin,et al.  A comparative study of root coverage with connective tissue and platelet concentrate grafts: 8-month results. , 2004, Journal of periodontology.

[209]  Hom-lay Wang,et al.  Effect of enamel matrix derivative on collagen guided tissue regeneration-based root coverage procedure. , 2004, Journal of periodontology.

[210]  M. Taba,et al.  A 6-month comparative clinical study of a conventional and a new surgical approach for root coverage with acellular dermal matrix. , 2004, Journal of periodontology.

[211]  M. Casati,et al.  Coronally positioned flap with or without acellular dermal matrix graft in the treatment of Class I gingival recessions: a randomized controlled clinical study. , 2004, Journal of periodontology.

[212]  M. Nunn,et al.  A comparative study of coronally advanced flaps with and without the addition of enamel matrix derivative in the treatment of marginal tissue recession. , 2004, Journal of periodontology.

[213]  Randall J. Harris A short-term and long-term comparison of root coverage with an acellular dermal matrix and a subepithelial graft. , 2004, Journal of periodontology.

[214]  H. Tal,et al.  A multicenter comparative study of two root coverage procedures: coronally advanced flap with addition of enamel matrix proteins and subpedicle connective tissue graft. , 2004, Journal of periodontology.

[215]  J. C. Joly,et al.  Root coverage using the coronally positioned flap with or without a subepithelial connective tissue graft. , 2004, Journal of periodontology.

[216]  N. Bissada,et al.  Effect of connective tissue graft orientation on root coverage and gingival augmentation. , 2004, The International journal of periodontics & restorative dentistry.

[217]  Y. Shyr,et al.  Treatment of gingival recession using a collagen membrane with or without the use of demineralized freeze-dried bone allograft for space maintenance. , 2004, Journal of periodontology.

[218]  H. Greenwell,et al.  The clinical effect of acellular dermal matrix on gingival thickness and root coverage compared to coronally positioned flap alone. , 2004, Journal of periodontology.

[219]  J. Gunsolley,et al.  Surgical therapies for the treatment of gingival recession. A systematic review. , 2003, Annals of periodontology.

[220]  C. Kowalski,et al.  Guided tissue regeneration-based root coverage: meta-analysis. , 2003, Journal of periodontology.

[221]  N. Sforza,et al.  Bilaminar techniques for the treatment of recession-type defects. A comparative clinical study. , 2003, Journal of clinical periodontology.

[222]  K. Balos,et al.  Comparative clinical study of connective tissue graft and two types of bioabsorbable barriers in the treatment of localized gingival recessions. , 2003, Journal of periodontology.

[223]  M. Nunn,et al.  Evaluation of human recession defects treated with coronally advanced flaps and either enamel matrix derivative or connective tissue. Part 1: Comparison of clinical parameters. , 2003, Journal of periodontology.

[224]  M. Nieri,et al.  Evidence-based mucogingival therapy. Part 1: A critical review of the literature on root coverage procedures. , 2003, Journal of periodontology.

[225]  M. Nieri,et al.  Evidence-based mucogingival therapy. Part 2: Ordinary and individual patient data meta-analyses of surgical treatment of recession using complete root coverage as the outcome variable. , 2003, Journal of periodontology.

[226]  P. Coulthard,et al.  The assessment of systematic reviews in dentistry. , 2003, European journal of oral sciences.

[227]  A. Sallum,et al.  Root coverage: comparison of coronally positioned flap with and without titanium-reinforced barrier membrane. , 2003, Journal of periodontology.

[228]  T. Testori,et al.  Enamel matrix proteins (Emdogain) in combination with coronally advanced flap or subepithelial connective tissue graft in the treatment of shallow gingival recessions. , 2002, The International journal of periodontics & restorative dentistry.

[229]  H. Tal,et al.  Root coverage of advanced gingival recession: a comparative study between acellular dermal matrix allograft and subepithelial connective tissue grafts. , 2002, Journal of periodontology.

[230]  M. Sanz,et al.  Periodontal plastic surgery for treatment of localized gingival recessions: a systematic review. , 2002, Journal of clinical periodontology.

[231]  G. Perinetti,et al.  Subpedicle acellular dermal matrix graft and autogenous connective tissue graft in the treatment of gingival recessions: a comparative 1-year clinical study. , 2002, Journal of periodontology.

[232]  W. Giannobile,et al.  Comparative histologic analysis of coronally advanced flap with and without collagen membrane for root coverage. , 2002, Journal of periodontology.

[233]  J. Bernimoulin,et al.  Comparative study of Emdogain and coronally advanced flap technique in the treatment of human gingival recessions. A prospective controlled clinical study. , 2002, Journal of clinical periodontology.

[234]  M. Paolantonio Treatment of gingival recessions by combined periodontal regenerative technique, guided tissue regeneration, and subpedicle connective tissue graft. A comparative clinical study. , 2002, Journal of periodontology.

[235]  A. B. Novaes,et al.  Comparative 6-month clinical study of a subepithelial connective tissue graft and acellular dermal matrix graft for the treatment of gingival recession. , 2001, Journal of periodontology.

[236]  M. G. Grusovin,et al.  Comparison of 2 techniques of subepithelial connective tissue graft in the treatment of gingival recessions. , 2001, Journal of periodontology.

[237]  Y. Shyr,et al.  Comparison of 2 clinical techniques for treatment of gingival recession. , 2001, Journal of periodontology.

[238]  C. Romagna-Genon Comparative clinical study of guided tissue regeneration with a bioabsorbable bilayer collagen membrane and subepithelial connective tissue graft. , 2001, Journal of periodontology.

[239]  R. Yukna,et al.  Clinical evaluation of acellular allograft dermis for the treatment of human gingival recession. , 2001, Journal of periodontology.

[240]  F. Regennitter,et al.  Predictable multiple site root coverage using an acellular dermal matrix allograft. , 2001, Journal of periodontology.

[241]  R. Romagnoli,et al.  Coronally advanced flap for the treatment of buccal gingival recessions with and without enamel matrix derivative. A split-mouth study. , 2000, Journal of periodontology.

[242]  J. Maynard,et al.  Treatment of human mucogingival defects utilizing a bioabsorbable membrane with and without a demineralized freeze-dried bone allograft. , 2000, Journal of periodontology.

[243]  G. Goissis,et al.  Treatment of gingival recession: comparative study between subepithelial connective tissue graft and guided tissue regeneration. , 2000, Journal of periodontology.

[244]  H. Greenwell,et al.  Improved bone regeneration and root coverage using a resorbable membrane with physically assisted cell migration and DFDBA. , 2000, The International journal of periodontics & restorative dentistry.

[245]  J. Skavland,et al.  Coronally positioned flap procedures with or without a bioabsorbable membrane in the treatment of human gingival recession. , 2000, Journal of periodontology.

[246]  S. Murai,et al.  A preliminary comparative study of the guided tissue regeneration and free gingival graft procedures for adjacent facial root coverage. , 2000, Quintessence international.

[247]  R. Caffesse,et al.  Citric acid demineralization and subepithelial connective tissue grafts. , 2000, Journal of periodontology.

[248]  L. Trombelli,et al.  Gingival recession treatment: guided tissue regeneration with bioabsorbable membrane versus connective tissue graft. , 2000, Journal of periodontology.

[249]  M. Nieri,et al.  Coronally advanced flap procedure for root coverage. Flap with tension versus flap without tension: a randomized controlled clinical study. , 2000, Journal of periodontology.

[250]  R. Harris A comparative study of root coverage obtained with an acellular dermal matrix versus a connective tissue graft: results of 107 recession defects in 50 consecutively treated patients. , 2000, The International journal of periodontics & restorative dentistry.

[251]  M. Nieri,et al.  Coronally advanced flap procedure for root coverage. Is flap thickness a relevant predictor to achieve root coverage? A 19-case series. , 1999, Journal of periodontology.

[252]  M. Nieri,et al.  Coronally advanced flap procedure for root coverage. Treatment of root surface: root planning versus polishing. , 1999, Journal of periodontology.

[253]  H. Müller,et al.  Root coverage employing an envelope technique or guided tissue regeneration with a bioabsorbable membrane. , 1999, Journal of periodontology.

[254]  J. Déjou,et al.  Comparative clinical study of a bioabsorbable membrane and subepithelial connective tissue graft in the treatment of human gingival recession. , 1999, Journal of periodontology.

[255]  A. Kingman,et al.  Gingival recession, gingival bleeding, and dental calculus in adults 30 years of age and older in the United States, 1988-1994. , 1999, Journal of periodontology.

[256]  R. Harris A comparison of 2 root coverage techniques: guided tissue regeneration with a bioabsorbable matrix style membrane versus a connective tissue graft combined with a coronally positioned pedicle graft without vertical incisions. results of a series of consecutive cases. , 1998, Journal of periodontology.

[257]  L. Trombelli,et al.  Subpedicle connective tissue graft versus guided tissue regeneration with bioabsorbable membrane in the treatment of human gingival recession defects. , 1998, Journal of periodontology.

[258]  C. Cafiero,et al.  Guided tissue regeneration versus coronally repositioned flap in the treatment of recession with double papillae. , 1998, The International journal of periodontics & restorative dentistry.

[259]  S. Jepsen,et al.  Treatment of gingival recession with titanium reinforced barrier membranes versus connective tissue grafts. , 1998, Journal of periodontology.

[260]  M. Calandriello,et al.  Mucogingival versus guided tissue regeneration procedures in the treatment of deep recession type defects. , 1998, Journal of periodontology.

[261]  G. Ozcan,et al.  Combined use of root conditioning, fibrin-fibronectin system and a collagen membrane to treat a localized gingival recession: a 10-case report. , 1997, Journal of Marmara University Dental Faculty.

[262]  R. Harris A comparative study of root coverage obtained with guided tissue regeneration utilizing a bioabsorbable membrane versus the connective tissue with partial-thickness double pedicle graft. , 1997, Journal of periodontology.

[263]  A. Cattabriga,et al.  Subpedicle connective tissue graft versus free gingival graft in the coverage of exposed root surfaces. A 5-year clinical study. , 1997, Journal of clinical periodontology.

[264]  G. Rasperini,et al.  A clinical/statistical comparison between the subpedicle connective tissue graft method and the guided tissue regeneration technique in root coverage. , 1996, The International journal of periodontics & restorative dentistry.

[265]  G. Pini Prato,et al.  Guided tissue regeneration versus mucogingival surgery in the treatment of human buccal recessions. A 4-year follow-up study. , 1996, Journal of periodontology.

[266]  L. Trombelli,et al.  Fibrin glue application in conjunction with tetracycline root conditioning and coronally positioned flap procedure in the treatment of human gingival recession defects. , 1996, Journal of clinical periodontology.

[267]  J. Wennström,et al.  Increased gingival dimensions. A significant factor for successful outcome of root coverage procedures? A 2-year prospective clinical study. , 1996, Journal of clinical periodontology.

[268]  M. Roccuzzo,et al.  Comparative study of a bioresorbable and a non-resorbable membrane in the treatment of human buccal gingival recessions. , 1996, Journal of periodontology.

[269]  C. Scapoli,et al.  Healing response of human buccal gingival recessions treated with expanded polytetrafluoroethylene membranes. A retrospective report. , 1995, Journal of periodontology.

[270]  A. Borghetti,et al.  Controlled clinical evaluation of the subpedicle connective tissue graft for the coverage of gingival recession. , 1994, Journal of periodontology.

[271]  J. Ouhayoun,et al.  Subepithelial connective tissue grafts in the treatment of gingival recessions. A comparative study of 2 procedures. , 1994, Journal of periodontology.

[272]  A. C. Richardson,et al.  Thick free gingival and connective tissue autografts for root coverage. , 1993, Journal of periodontology.

[273]  G. Pini Prato,et al.  Guided tissue regeneration versus mucogingival surgery in the treatment of human buccal gingival recession. , 1992, Journal of periodontology.

[274]  D. Salsburg,et al.  A Randomized Controlled Clinical Trial , 2016 .

[275]  J. Laney,et al.  A comparison of two techniques for attaining root coverage. , 1992, Journal of periodontology.

[276]  W. Laverty,et al.  Effects of citric acid treatment on autogenous free graft coverage of localized recession. , 1985, Journal of periodontology.

[277]  W. Laverty,et al.  Effects of citric acid treatment on pedicle flap coverage of localized recession. , 1985, Journal of periodontology.

[278]  H. Tenenbaum,et al.  [Treatment of gingival recession]. , 1982, Revue d'odonto-stomatologie.

[279]  J. Ainamo,et al.  The increase with age of the width of attached gingiva. , 1976, Journal of periodontal research.

[280]  C. Woofter The prevalence and etiology of gingival recession. , 1969, Periodontal abstracts.

[281]  W. J. Gorman Prevalence and etiology of gingival recession. , 1967, Journal of periodontology.