Oral Biomedicine ›› 2021, Vol. 12 ›› Issue (3): 201-204.
Previous Articles Next Articles
Received:
2021-01-27
Revised:
2021-08-31
Online:
2021-09-25
Published:
2021-09-27
Add to citation manager EndNote|Reference Manager|ProCite|BibTeX|RefWorks
[1] | Y Z, X H, D Z.Study of bone remodeling in corticotomy-assisted orthodontic tooth movement in rats[J].Journal of cellular biochemistry, 2019, 120(9):15952-15962 |
[2] | Kurt G K, Eri H, Ki Ni Ci R.Rapid Tooth Movement and Orthodontic Treatment Using Dentoalveolar Distraction (DAD)[J]. Angle Orthodontist, 80(3):597-606. |
[3] | Po-Jung C, H C J, H D E, et al.The effect of alveolar decortication on orthodontically induced root resorption.[J]. The Angle orthodontist, 2020. |
[4] | Santinoni C D S, Oliveira H F F, de Souza Batista V E, et al.Influence of low-level laser therapy on the healing of human bone maxillofacial defects: A systematic review[J]. Journal of Photochemistry & Photobiology, B: Biology, 2017. |
[5] | Zhou Y, He X, Zhang D.Study of bone remodeling in corticotomy‐assisted orthodontic tooth movement in rats[J]. Journal of Cellular Biochemistry, 2019, 120(9). |
[6] | Wilcko M T, Wilcko W M, Bissada N F.An Evidence-Based Analysis of Periodontally Accelerated Orthodontic and Osteogenic Techniques: A Synthesis of Scientific Perspectives[J]., 14(4):316. |
[7] | Wilcko W M, Wilcko T, Bouquot J E, et al.Rapid orthodontics with alveolar reshaping: Two case reports of decrowding[J].International Journal of Periodontics & Restorative Dentistry, 2001, 21(1):9-19 |
[8] | Murakami-Malaquias-Silva F, Rosa E P, Almeida P A, et al.Evaluation of the effects of photobiomodulation on orthodontic movement of molar verticalization with mini-implant: A randomized double-blind protocol study[J]. Medicine, 2020, 99(99). |
[9] | A A, à R, E J, et al.Corticotomy in orthodontic treatment: systematic review[J].Heliyon, 2020, 6(5):e4013- |
[10] | S D, Jd S, J S.Piezocision: a minimally invasive,periodontally accelerated orthodontic tooth movement procedure[J].Compendium of continuing education in dentistry (Jamesburg, N.J.), 2009, 30(6):342-344 |
[11] | Y W, H Z, W S, et al.Macrophages mediate corticotomy-accelerated orthodontic tooth movement[J].Scientific reports, 2018, 8(1):16788- |
[12] | D H, F L, S C, et al.Mechanical load-induced HS production by periodontal ligament stem cells activates M1 macrophages to promote bone remodeling and tooth movement via STAT1[J].Stem cell research & therapy, 2020, 11(1):112- |
[13] | Yuanyuan Z, Yulou T, Xiaofeng Y, et al.MicroRNA?21 serves an important role during PAOO?facilitated orthodontic tooth movement.[J]. Molecular medicine reports, 2020. |
[14] | O G, My H, B B.Efficacy of piezocision-based flapless corticotomy in the orthodontic correction of severely crowded lower anterior teeth: a randomized controlled trial[J].European journal of orthodontics, 2019, 41(2):188-195 |
[15] | C C, G L, N J, et al.Piezocision-assisted orthodontic treatment using CADCAM customized orthodontic appliances: a randomized controlled trial in adults[J].European journal of orthodontics, 2019, 41(5):495-501 |
[16] | Maryam O, Mehrdad R, Majid A, et al.Evaluating the Efficacy of a Modified Piezo-Puncture Method on the Rate of Tooth Movement in Orthodontic Patients: A Clinical Study.[J]. Turkish journal of orthodontics, 2020, 33(1). |
[17] | Teixeira C C, Khoo E, Tran J, et al.Cytokine Expression and Accelerated Tooth Movement[J]. Journal of Dental Research, 2010, 89(10). |
[18] | Y Z, Y T, X Y, et al.MicroRNA?21 serves an important role during PAOO?facilitated orthodontic tooth movement[J].Molecular medicine reports, 2020, 22(1):474-482 |
[19] | T S, M Y, M S, et al.Micro-osteoperforations accelerate orthodontic tooth movement by stimulating periodontal ligament cell cycles[J].American journal of orthodontics and dentofacial orthopedics : official publication of the American Association of Orthodontists, its constituent societies, and the American Board of Orthodontics, 2018, 154(6):788-796 |
[20] | N B, S A, P S.Effect of mini-screw-facilitated micro-osteoperforation on the rate of orthodontic tooth movement: a single-center,split-mouth,randomized,controlled trial[J].Progress in orthodontics, 2020, 21(1):7- |
[21] | Mani A, Markos R, Billie Z, et al.Effect of micro-osteoperforations on the rate of tooth movement.[J]. American journal of orthodontics and dentofacial orthopedics : official publication of the American Association of Orthodontists, its constituent societies, and the American Board of Orthodontics, 2013, 144(5). |
[22] | Amal A, Emad A, Hisham A, et al.Three-dimensional assessment of the effect of micro-osteoperforations on the rate of tooth movement during canine retraction in adults with Class II malocclusion: A randomized controlled clinical trial[J]. American Journal of Orthodontics & Dentofacial Orthopedics, 153(6):771-785. |
[23] | Masood F, Dana Z, Majid H, et al.The use of micro-osteoperforation concept for accelerating differential tooth movement[J]. Journal of the World Federation of Orthodontists, 7(2):56-60. |
[24] | Shik J W, Yeol L J, Woo C J.Large-Scale Study of Long-Term Vertical Skeletal Stability in a Surgery-First Orthognathic Approach Without Presurgical Orthodontic Treatment: Part II.[J]. The Journal of craniofacial surgery, 2018, 29(4). |
[25] | Liou E J W, Chen P, Wang Y, et al.Surgery-First Accelerated Orthognathic Surgery: Postoperative Rapid Orthodontic Tooth Movement[J]. Journal of Oral and Maxillofacial Surgery, 2010, 69(3). |
[26] | J B S, A B D.Oral surgeons' considerations in surgical orthodontic treatment.[J]. Dental clinics of North America, 1988, 32(3). |
[27] | Shik J W, Yeol L J, Woo C J.Large-Scale Study of Long-Term Anteroposterior Stability in a Surgery-First Orthognathic Approach Without Presurgical Orthodontic Treatment.[J]. The Journal of craniofacial surgery, 2017, 28(8). |
[28] | Hernández-Alfaro F, Guijarro-Martínez R.On a definition of the appropriate timing for surgical intervention in orthognathic surgery[J]. International Journal of Oral & Maxillofacial Surgery, 2014, 43(7). |
[29] | Sugawara J, Aymach Z, Nagasaka D H, et al.quot;Surgery first" orthognathics to correct a skeletal class II malocclusion with an impinging bite[J].J Clin Orthod, 2010, 44(7):429-438 |
[30] | 黄丹青,康非吾,周小康,等.下颌截骨术对兔颌骨非术区骨改建的影响[J].口腔颌面外科杂志, 2016, 26(02):83-87 |
[31] | Li W, Zhao J, Sun W, et al.Osteocytes promote osteoclastogenesis via autophagy-mediated RANKL secretion under mechanical compressive force[J]. Archives of Biochemistry and Biophysics, 2020, 694. |
[32] | Zou Y, Xu L, Lin H.Stress overload‐induced periodontal remodelling coupled with changes in high mobility group protein B1 during tooth movement: an in‐vivo study[J]. European Journal of Oral Sciences, 2019, 127(5). |
[33] | He D, Liu F, Cui S, et al.Mechanical load-induced H2S production by periodontal ligament stem cells activates M1 macrophages to promote bone remodeling and tooth movement via STAT1[J]. Stem Cell Research & Therapy, 2020, 11(5). |
[34] | Gil A P S, Haas O L, Méndez-Manjón I, et al.Alveolar corticotomies for accelerated orthodontics: A systematic review[J]. Journal of Cranio-Maxillo-Facial Surgery, 2018, 46(3). |
[35] | Miles P.Accelerated orthodontic treatment ‐ what' s the evidence?[J]. Australian Dental Journal, 2017, 62. |
[36] | Peron A P L M, Johann A C B R, Papalexiou V, et al.Tissue responses resulting from tooth movement surgically assisted by corticotomy and corticision in rats[J]. Angle Orthodontist, 2016:102731-102915. |
[37] | Y Z, L X, H L.Stress overload-induced periodontal remodelling coupled with changes in high mobility group protein B1 during tooth movement: an in-vivo study[J].European journal of oral sciences, 2019, 127(5):396-407 |
[38] | Y J, L D, Z D, et al.Tensile force-induced PDGF-BBPDGFRβ signals in periodontal ligament fibroblasts activate JAK2STAT3 for orthodontic tooth movement[J].Scientific reports, 2020, 10(1):11269- |
[39] | W L, J Z, W S, et al.Osteocytes promote osteoclastogenesis via autophagy-mediated RANKL secretion under mechanical compressive force[J].Archives of biochemistry and biophysics, 2020, 694:108594- |
[1] | . The clinical evaluation of clear aligners in tooth movements efficiency with first premolar extraction treatment in adults [J]. Oral Biomedicine, 2021, 12(4): 252-256. |
[2] | . Three-dimensional digital dental casts: a review of technology and applications in orthodontics [J]. , 2014, 5(3): 152-157. |
[3] | ZHU Lin, LI Hu, XIA Wen-Qian, LIU Xiang, CHEN Wen-Jing, SHAO Sheng, LIN Tang-Yi. Expression of Osterix in periodontal ligament during orthodontic tooth movement [J]. , 2012, 3(1): 30-33. |
[4] | . A comparative study about the effects of salvia miltiorrhiza and drynaria on the orthodontic tooth movement [J]. , 2012, 3(1): 17-29. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||