Radiographic texture analysis of the hard tissue changes following socket preservation with allograft and xenograft materials for dental implantation: a randomized clinical trial

Schropp L, Wenzel A, Kostopoulos L, Karring T (2003) Bone healing and soft tissue contour changes following single-tooth extraction: a clinical and radiographic 12-month prospective study. Int J Periodontics Restorative Dent 23(4):313–323

PubMed  Google Scholar 

Zhao JH, Tsai CH, Chang YC (2011) Clinical and histologic evaluations of healing in an extraction socket filled with platelet-rich fibrin. J Dent Sci 6(2):116–122

Article  Google Scholar 

Lin HK, Pan YH, Salamanca E, Te Lin Y, Chang WJ (2019) Prevention of bone resorption by HA/β-TCP+ collagen composite after tooth extraction: a case series. Int J Environ Res Public Health 16(23):4616

Article  PubMed  PubMed Central  Google Scholar 

Kim ES, Lee IK, Kang JY, Lee EY (2015) Various autogenous fresh demineralized tooth forms for alveolar socket preservation in anterior tooth extraction sites: a series of 4 cases. Maxillofac Plast Reconstr Surg 37(1):27

Article  PubMed  PubMed Central  Google Scholar 

Araújo MG, Lindhe J (2005) Dimensional ridge alterations following tooth extraction. An experimental study in the dog. J Clin Periodontol 32(2):212–8

Ayoub AH, Agbor AM (2017) Comparative study of extraction socket preservation using autogenous PRF and TCP. EC Dent Sci 8:26–37

Google Scholar 

Orgeas GV, Clementini M, De Risi V, de Sanctis M (2013) Surgical techniques for alveolar socket preservation: a systematic review. Int J Oral Maxillofac Implants 28(4):1049–1061

Article  Google Scholar 

Mastrangelo F, Quaresima R, Sebastianelli I, Dedola A, Kuperman S, Azzi L, Mortellaro C, Muttini A, Mijiritsky E, Poly D (2019) L-lactide-co-glycolic acid grafting material in sinus lift. J Craniofac Surg 30(4):1073–1077

Article  PubMed  Google Scholar 

Avila-Ortiz G, Rodriguez JC, Rudek I, Benavides E, Rios H, Wang HL (2014) Effectiveness of three different alveolar ridge preservation techniques: a pilot randomized controlled trial. Int J Periodontics Restor Dent 34(4):509–521

Article  Google Scholar 

Peltier LF, Bickel EY, Lillo R, Thein MS (1957) The use of plaster of Paris to fill defects in bone. Ann Surg 146(1):61–69

Article  PubMed  PubMed Central  Google Scholar 

Guarnieri R, Pecora G, Fini M, Giardino R, Orsini G, Piattelli A (2004) Medical grade calcium sulfate hemihydrate in healing of human extraction sockets: clinical and histological observations at 3 months. J Periodontol 75(6):902–908

Article  PubMed  Google Scholar 

Bartols A, Kasprzyk S, Walther W, Korsch M (2018) Lateral alveolar ridge augmentation with autogenous block grafts fixed at a distance versus resorbable Poly-D-L-lactide foil fixed at a distance: a single-blind, randomized, controlled trial. Clin Oral Implant Res 29(8):843–854

Article  Google Scholar 

von Arx T, Hardt N, Wallkamm B (1996) The TIME technique: a new method for localized alveolar ridge augmentation prior to placement of dental implants. Int J Oral Maxillofac Implants 11(3):387–394

Google Scholar 

Urist MR, Silverman BF, Büring K, Dubuc FL, Rosenberg JM (1967) The bone induction principle. Clin Orthop Relat Res 1(53):243–283

Google Scholar 

Márton K, Tamás SB, Orsolya N, Béla C, Ferenc D, Péter N, Csaba DN, Lajos C, Zsombor L, Eitan M, György S (2018) Microarchitecture of the augmented bone following sinus elevation with an albumin impregnated demineralized freeze-dried bone allograft (bonealbumin) versus anorganic bovine bone mineral: a randomized prospective clinical, histomorphometric, and micro-computed tomography study. Materials (Basel, Switzerland) 11(2):202

Article  PubMed  Google Scholar 

Cardaropoli G, Araújo M, Hayacibara R, Sukekava F, Lindhe J (2005) Healing of extraction sockets and surgically produced-augmented and non-augmented-defects in the alveolar ridge. An experimental study in the dog. J Clin Periodontol 32(5):435–40

Carmagnola D, Adriaens P, Berglundh T (2003) Healing of human extraction sockets filled with Bio-Oss. Clin Oral Implant Res 14(2):137–143

Article  Google Scholar 

Draenert FG, Gebhart F, Neugebauer C, Coppenrath E, Mueller-Lisse U (2008) Imaging of bone transplants in the maxillofacial area by NewTom 9000 cone-beam computed tomography: a quality assessment. Oral Surg Oral Med Oral Pathol Oral Radiol Endod 106(1):e31–e35

Article  PubMed  Google Scholar 

Gonçalves BC, de Araújo EC, Nussi AD, Bechara N, Sarmento D, Oliveira MS, Santamaria MP, Costa AL, Lopes S (2020) Texture analysis of cone-beam computed tomography images assists the detection of furcal lesion. J Periodontol 91(9):1159–1166

Article  PubMed  Google Scholar 

Haralick RM, Shanmugam K, Dinstein IH (1973) Textural features for image classification. IEEE Trans Syst Man Cybern 6:610–621

Article  Google Scholar 

Haralick RM (1979) Statistical and structural approaches to texture. Proc IEEE 67(5):786–804

Article  Google Scholar 

Bonilha L, Kobayashi E, Castellano G, Coelho G, Tinois E, Cendes F, Li LM (2003) Texture analysis of hippocampal sclerosis. Epilepsia 44(12):1546–1550

Article  PubMed  Google Scholar 

de Albuquerque M, Anjos LG, de Oliveira MS, Castellano G, Nucci A, Junior F (2015) MRI Texture analysis reveals deep gray nuclei damage in amyotrophic lateral sclerosis. J Neuroimaging: Off J Am Soc Neuroimaging 26(2):201–206

Article  Google Scholar 

Lubner MG, Smith AD, Sandrasegaran K, Sahani DV, Pickhardt PJ (2017) CT Texture analysis: definitions, applications, biologic correlates, and challenges. Radiographics: a review Publication of the Radiological Society of North America, Inc. 37(5):1483–503

De Rosa CS, Bergamini ML, Palmieri M, de Santana Sarmento DJ, de Carvalho MO, Ricardo AL, Hasseus B, Jonasson P, Braz-Silva PH, Costa AL (2020) Differentiation of periapical granuloma from radicular cyst using cone beam computed tomography images texture analysis. Heliyon 6(10):e05194

Article  PubMed  PubMed Central  Google Scholar 

Oda M, Staziaki PV, Qureshi MM, Andreu-Arasa VC, Li B, Takumi K, Chapman MN, Wang A, Salama AR, Sakai O (2019) Using CT texture analysis to differentiate cystic and cystic-appearing odontogenic lesions. Eur J Radiol 120:108654

Article  PubMed  Google Scholar 

Costa AL, de Souza CB, Fardim KA, Nussi AD, da Silva Lima VC, Miguel MM, Jardini MA, Santamaria MP, de Castro Lopes SL (2021) Texture analysis of cone beam computed tomography images reveals dental implant stability. Int J Oral Maxillofac Surg 50(12):1609–1616

Article  PubMed  Google Scholar 

Obuchowicz R, Nurzynska K, Obuchowicz B, Urbanik A, Piórkowski A (2020) Caries detection enhancement using texture feature maps of intraoral radiographs. Oral Radiol 36(3):275–287

Article  PubMed  Google Scholar 

Ricardo AL, da Silva GA, Ogawa CM, Nussi AD, De Rosa CS, Martins JS, de Castro Lopes SL, Appenzeller S, Braz-Silva PH, Costa AL (2023) Magnetic resonance imaging texture analysis for quantitative evaluation of the mandibular condyle in juvenile idiopathic arthritis. Oral Radiol 39(2):329–340

Article  PubMed  Google Scholar 

Mundim MB, Dias DR, Costa RM, Leles CR, Azevedo-Marques PM, Ribeiro-Rotta RF (2016) Intraoral radiographs texture analysis for dental implant planning. Comput Methods Programs Biomed 136:89–96

Swami V, Vijayaraghavan V, Swami V (2016) Current trends to measure implant stability. J Indian Prosthodont Soc 16(2):124

Article  PubMed  PubMed Central  Google Scholar 

Comments (0)

No login
gif