[1] |
Smeets R, Matthies L, Windisch P, et al. Horizontal augmentation techniques in the mandible: A systematic review[J]. Int J Implant Dent, 2022, 8(1): 23.
doi: 10.1186/s40729-022-00421-7
pmid: 35532820
|
[2] |
Ramezanzade S, Yates J, Tuminelli FJ, et al. Zygomatic implants placed in atrophic maxilla: An overview of current systematic reviews and meta-analysis[J]. Maxillofac Plast Reconstr Surg, 2021, 43(1): 1.
doi: 10.1186/s40902-020-00286-z
pmid: 33409713
|
[3] |
Acar AH, Alan H, Özgür C, et al. Is more cortical bone decortication effective on guided bone augmentation?[J]. J Craniofac Surg, 2016, 27(7): 1879-1883.
pmid: 27763979
|
[4] |
Alvira-González J, De Stavola L. The role of cortical perforations in bone regeneration: A systematic review[J]. Int J Oral Maxillofac Surg, 2020, 49(7): 945-951.
|
[5] |
Wang HL, Boyapati L. “PASS” principles for predictable bone regeneration[J]. Implant Dent, 2006, 15(1): 8-17.
|
[6] |
Tresguerres FGF, Tresguerres IF, Iglesias O, et al. The role of cortical perforations in allogeneic block grafting for lateral augmentation in maxilla: A randomized clinical trial[J]. Clin Implant Dent Relat Res, 2021, 23(4): 530-542.
|
[7] |
Danesh-Sani SA, Tarnow D, Yip JK, et al. The influence of cortical bone perforation on guided bone regeneration in humans[J]. Int J Oral Maxillofac Surg, 2017, 46(2): 261-266.
|
[8] |
Faria PEP, Okamoto R, Bonilha-Neto RM, et al. Immunohistochemical, tomographic and histological study on onlay iliac grafts remodeling[J]. Clin Oral Implants Res, 2008, 19(4): 393-401.
|
[9] |
Pedrosa WF Jr, Okamoto R, Faria PEP, et al. Immunohistochemical, tomographic and histological study on onlay bone graft remodeling. PartⅡ: Calvarial bone[J]. Clin Oral Implants Res, 2009, 20(11): 1254-1264.
|
[10] |
Buser D, Dula K, Belser U, et al. Localized ridge augmentation using guided bone regeneration. 1. Surgical procedure in the maxilla[J]. Int J Periodontics Restorative Dent, 1993, 13(1): 29-45.
|
[11] |
Seol KY, Kim SG, Kim HK, et al. Effects of decortication in the treatment of bone defect around particulate dentin-coated implants: An experimental pilot study[J]. Oral Surg Oral Med Oral Pathol Oral Radiol Endod, 2009, 108(4): 529-536.
|
[12] |
宿玉成. 口腔种植学词典[M]. 北京: 人民卫生出版社, 2020: 408.
|
[13] |
宫苹. 口腔种植学[M]. 1版. 北京: 人民卫生出版社, 2020: 104.
|
[14] |
Crea A, Deli G, Littarru C, et al. Intrabony defects, open-flap debridement, and decortication: A randomized clinical trial[J]. J Periodontol, 2014, 85(1): 34-42.
doi: 10.1902/jop.2013.120753
pmid: 23537123
|
[15] |
Ulm C, Strbac GD, Stavropoulos A, et al. Improved access to the bone marrow space by multiple perforations of the alveolar bundle bone after tooth extraction—a case report[J]. Clin Exp Dent Res, 2022, 8(1): 3-8.
|
[16] |
Pathomkulmai T, Chanmanee P, Samruajbenjakun B. Effect of extending corticotomy depth to trabecular bone on accelerating orthodontic tooth movement in rats[J]. Dent J, 2022, 10(9): 158.
|
[17] |
Sugimori T, Yamaguchi M, Shimizu M, et al. Micro-osteoperforations accelerate orthodontic tooth movement by stimulating periodontal ligament cell cycles[J]. Am J Orthod Dentofacial Orthop, 2018, 154(6): 788-796.
|
[18] |
Guo Y, Guo C. Enhancement of bone perfusion through cortical perforations to improve healing of medication-related osteonecrosis of the jaw: A retrospective study[J]. Int J Oral Maxillofac Surg, 2021, 50(6): 740-745.
|
[19] |
Gutta R, Baker RA, Bartolucci AA, et al. Barrier membranes used for ridge augmentation: Is there an optimal pore size?[J]. J Oral Maxillofac Surg, 2009, 67(6): 1218-1225.
|
[20] |
Barbosa DZ, de Assis WF, Shirato FB, et al. Autogenous bone graft with or without perforation of the receptor bed: Histologic study in rabbit calvaria[J]. Int J Oral Maxillofac Implants, 2009, 24(3): 463-468.
|
[21] |
Min S, Sato S, Murai M, et al. Effects of marrow penetration on bone augmentation within a titanium cap in rabbit calvarium[J]. J Periodontol, 2007, 78(10): 1978-1984.
pmid: 17916000
|
[22] |
Lee SH, Lim P, Yoon HJ. The influence of cortical perforation on guided bone regeneration using synthetic bone substitutes: A study of rabbit cranial defects[J]. Int J Oral Maxillofac Implants, 2014, 29(2): 464-471.
|
[23] |
Shimoji S, Miyaji H, Sugaya T, et al. Bone perforation and placement of collagen sponge facilitate bone augmentation[J]. J Periodontol, 2009, 80(3): 505-511.
doi: 10.1902/jop.2009.080511
pmid: 19254135
|
[24] |
Murai M, Sato S, Fukase Y, et al. Effects of different sizes of beta-tricalcium phosphate particles on bone augmentation within a titanium cap in rabbit calvarium[J]. Dent Mater J, 2006, 25(1): 87-96.
pmid: 16706302
|
[25] |
Nishimura I, Shimizu Y, Ooya K. Effects of cortical bone perforation on experimental guided bone regeneration[J]. Clin Oral Implants Res, 2004, 15(3): 293-300.
|
[26] |
Liu WZ, Du B, Tan SY, et al. Vertical guided bone regeneration in the rabbit calvarium using porous nanohydroxyapatite block grafts coated with rhVEGF165 and cortical perforation[J]. Int J Nanomedicine, 2020, 15: 10059-10073.
|
[27] |
Oh KC, Cha JK, Kim CS, et al. The influence of perforating the autogenous block bone and the recipient bed in dogs. PartⅠ: A radiographic analysis[J]. Clin Oral Implants Res, 2011, 22(11): 1298-1302.
|
[28] |
Cha JK, Kim CS, Choi SH, et al. The influence of perforating the autogenous block bone and the recipient bed in dogs. PartⅡ: Histologic analysis[J]. Clin Oral Implants Res, 2012, 23(8): 987-992.
|
[29] |
Adeyemo WL, Reuther T, Bloch W, et al. Influence of host periosteum and recipient bed perforation on the healing of onlay mandibular bone graft: An experimental pilot study in the sheep[J]. Oral Maxillofac Surg, 2008, 12(1): 19-28.
doi: 10.1007/s10006-008-0098-4
pmid: 18600357
|
[30] |
Dayangac E, Araz K, Oguz Y, et al. Radiological and histological evaluation of the effects of cortical perforations on bone healing in mandibular onlay graft procedures[J]. Clin Implant Dent Relat Res, 2016, 18(1): 82-88.
|
[31] |
de Avila ED, Filho JS, de Oliveira Ramalho LT, et al. Alveolar ridge augmentation with the perforated and nonperforated bone grafts[J]. J Periodontal Implant Sci, 2014, 44(1): 33-38.
|
[32] |
Imoto K, Yamauchi K, Odashima K, et al. Periosteal expansion osteogenesis using an innovative, shape-memory polyethylene terephthalate membrane: An experimental study in rabbits[J]. J Biomed Mater Res B Appl Biomater, 2021, 109(9): 1327-1333.
|
[33] |
Saulacic N, Hug C, Bosshardt DD, et al. Relative contributions of osteogenic tissues to new bone formation in periosteal distraction osteogenesis: Histological and histomorphometrical evaluation in a rat calvaria[J]. Clin Implant Dent Relat Res, 2013, 15(5): 692-706.
|
[34] |
Oda T, Kinoshita K, Ueda M. Effects of cortical bone perforation on periosteal distraction: An experimental study in the rabbit mandible[J]. J Oral Maxillofac Surg, 2009, 67(7): 1478-1485.
|
[35] |
Yamauchi K, Nogami S, Tanaka K, et al. The effect of decortication for periosteal expansion osteogenesis using shape memory alloy mesh device[J]. Clin Implant Dent Relat Res, 2015, 17(Suppl 2): e376-e384.
|
[36] |
Nakahara K, Haga-Tsujimura M, Sawada K, et al. Effects of collagen membrane application and cortical bone perforation on de novo bone formation in periosteal distraction: An experimental study in a rabbit calvaria[J]. Oral Surg Oral Med Oral Pathol Oral Radiol, 2017, 123(2): 173-182.
|
[37] |
Greenstein G, Greenstein B, Cavallaro J, et al. The role of bone decortication in enhancing the results of guided bone regeneration: A literature review[J]. J Periodontol, 2009, 80(2): 175-189.
doi: 10.1902/jop.2009.080309
pmid: 19186957
|
[38] |
Verdugo F, D'Addona A, Pontón J. Clinical, tomographic, and histological assessment of periosteal guided bone regeneration with cortical perforations in advanced human critical size defects[J]. Clin Implant Dent Relat Res, 2012, 14(1): 112-120.
|
[39] |
Frost HM. The regional acceleratory phenomenon: A review[J]. Henry Ford Hosp Med J, 1983, 31(1): 3-9.
pmid: 6345475
|