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Effect of different interventions on orthodontic tooth movement acceleration:A network meta-analysis
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作者 CHEN Hui-ying ZHANG Li +2 位作者 ZHAN Le WAN Ni MO Li-wen 《Journal of Hainan Medical University》 CAS 2024年第2期41-50,共10页
Objective: To explore the effectiveness of various interventions in accelerating tooth movement, a systematic review and net-work meta analysis were used to draw a conclusion. Methods: MEDLINE, EMBASE, Willey Library,... Objective: To explore the effectiveness of various interventions in accelerating tooth movement, a systematic review and net-work meta analysis were used to draw a conclusion. Methods: MEDLINE, EMBASE, Willey Library, EBSCO, Web of Science Databases, and Cochrane Central Register of Controlled Trials databases to identify relevant studies. ADDIS 1.16.6 and Stata 16.0 software were used for NMA. Results: Five thousand five hundred and forty-two articles were searched out. After screening by two independent investigators, forty-seven randomized controlled trials, 1 390 participants, were included in this network meta-analysis. A total of 11 interventions involving Piezocision (Piezo), Photobiomodulation therapy (PBMT), Plate- let-rich plasma(PRP), Electromagnetic field(EF), Low intensity laser therapy(LLLT), Low intensity pulsed ultrasound(LI-PUS), Low-frequency vibrations(LFV), Distraction osteogenesis(DAD), Corticotomy(Corti), Microosteoperforations (MOPS), Traditional orthodontic(OT)were identified and classified into 3 classes including surgical treatment, non-surgical treatment and traditional orthodontic treatment. According to SUCRA probability ranking of the best intervention effect, when orthodontic treatment lasted for 1 month, PBMT (90.6%), Piezo(87.4%) and MOPs(73.6%)were the top three interventions to improve the efficiency of canine tooth movement. When orthodontic treatment lasted for 2 months, Corti (75.7%), Piezo (69.6%) and LFV(58.9%)were the top three interventions for improving the mobility efficiency of canine tooth movement. When orthodontic treatment lasted for 3 months, Cort (73.3%), LLLT(68.4%)and LFV(60.8%)were the top three interventions for improving the mobility efficiency of canine tooth movement. Conclusion: PBMT and Piezo can improve the efficiency of canine tooth movement significantly after 1 month, while Corti and LFV can improve the efficiency of canine tooth movement better after 2 and 3 months. 展开更多
关键词 Orthodontic tooth movement ACCELERATION Network Meta-analysis Randomized controlled trials
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Regular nicotine intake increased tooth movement velocity,osteoclastogenesis and orthodontically induced dental root resorptions in a rat model 被引量:4
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作者 christian kirschneck michael maurer +2 位作者 michael wolf claudia reicheneder peter proff 《International Journal of Oral Science》 SCIE CAS CSCD 2017年第3期174-184,共11页
Orthodontic forces have been reported to significantly increase nicotine-induced periodontal bone loss. At present, however, it is unknown, which further (side) effects can be expected during orthodontic treatment a... Orthodontic forces have been reported to significantly increase nicotine-induced periodontal bone loss. At present, however, it is unknown, which further (side) effects can be expected during orthodontic treatment at a nicotine exposure corresponding to that of an average European smoker. 63 male Fischer344 rats were randomized in three consecutive experiments of 21 animals each (A/B/C) to 3 experimental groups (7 rats, 112/3). (A) cone-beam-computed tomography (CBCT); (B) histology/serology; (C) reverse- transcription quantitative real-time polymerase chain reaction (RT-qPCR)/cotinine serology--(1) control; (2) orthodontic tooth movement (OTM) of the first and second upper left molar (NiTi closed coil spring, 0.25 N); (3) OTM with 1.89 mg-kg- 1 per day s.c. of L(- )-nicotine. After 14 days of OTM, serum cotinine and IL-6 concentration as well as orthodontically induced inflammatory root resorption (OIIRR), osteoclast activity (histology), orthodontic tooth movement velocity (CBCT, within 14 and 28 days of OTM) and relative gene expression of known inflammatory and osteoclast markers were quantified in the dental-periodontal tissue (RT-qPCR). Animals exposed to nicotine showed significantly heightened serum cotinine and IL-6 levels corresponding to those of regular European smokers. Both the extent of root resorption, osteoclast activity, orthodontic tooth movement and gene expression of inflammatory and osteoclast markers were significantly increased compared to controls with and without OTM under the influence of nicotine. We conclude that apart from increased periodontal bone loss, a progression of dental root resorption and accelerated orthodontic tooth movement are to be anticipated during orthodontic therapy, if nicotine consumption is present. Thus patients should be informed about these risks and the necessity of nicotine abstinence during treatment. 展开更多
关键词 dental research inbred Fischer344 NICOTINE ORTHODONTICS rats root resorption tooth movement
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Three-dimensional Finite Element Analysis of the Mechanical Stress on Root from Orthodontic Tooth Movement by Sliding Mechanics 被引量:1
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作者 李平 毛靖 +1 位作者 彭周 谢晖 《Journal of Huazhong University of Science and Technology(Medical Sciences)》 SCIE CAS 2007年第6期745-747,共3页
In order to study mechanical stress on root from orthodontic tooth movement by sliding mechanics, a 3-dimensional finite element model incorporating all layers of a human mandibular dental arch with orthodontic applia... In order to study mechanical stress on root from orthodontic tooth movement by sliding mechanics, a 3-dimensional finite element model incorporating all layers of a human mandibular dental arch with orthodontic appliance has been developed to simulate mechanical stress on root from the orthodontic tooth movement. Simulated orthodontic force of 2 N at 0, 30 and 45 degree from the horizontal axis was applied to the crown of the teeth. The finite element analysis showed when orthodontic forces were applied to the tooth, the stress was mainly concentrated at the neck of the tooth decreasing uniformly to the apex and crown. The highest stress on the root was 0.621 N/mm^2 for cervical margin of the canine, and 0.114 N/mm^2 for apical region of the canine. The top of canine crown showed the largest amount of displacement (2.417 μm), while the lowest amount of displacement was located at the apical region of canine (0.043 μm). In conclusion, this model might enable one to simulate orthodontic tooth movements clinically. Sliding force at 2 N is ideal to ensure the bodily orthodontic tooth movement. The highest stress concentration in the roots was always localized at the cervical margin when orthodontic force of 2 N at 0, 30 and 45 degree from the horizontal axis, so there may be the same risk of root resorption when orthodontic force of 2 N at 0, 30 and 45 degree was used in clinic cases. 展开更多
关键词 tooth movement finite element methods sliding mechanics
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Histological changes following surgically-assisted rapid tooth movement through resistance reduction and distraction osteogenesis in dogs
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作者 Xi Chen1,Jian-Lin Liu2,Juan Dai3,Shuang Wang4,Ya-Li Huang11. Department of Stomatology,the First Affiliated Hospital,Medical School of Xi’an Jiaotong University,Xi’an 710061 2. Department of Stomatology,No.2 Traditional Chinese Medical Hospital,Shenzhen 518034 +1 位作者 3. Department of Orthodontics,School of Stomatology,Fourth Military Medical University,Xi’an 710032 4. Department of Orthodontics,Stomatological Hospital of Xi’an Jiaotong University,Xi’an 710004,China. 《Journal of Pharmaceutical Analysis》 SCIE CAS 2010年第2期139-142,共4页
Objective To investigate the histological changes of rapid tooth movement in dogs treated by resistance reduction and distraction osteogenesis,aiming to establish an animal model and further to reveal the remodeling m... Objective To investigate the histological changes of rapid tooth movement in dogs treated by resistance reduction and distraction osteogenesis,aiming to establish an animal model and further to reveal the remodeling mechanism of rapid tooth movement. Methods A total of 8 local hybrid dogs were selected as subjects for this study. The second pre-molar was extracted on both sides. The experimental side underwent alvelor surgery for resistance reduction and a home-made tooth-borne intraoral distraction device was installed for rapid tooth movement,while for the other side (control side) only tooth-borne intraoral distraction device was used for rapid tooth movement. The longest active force-delivery span was 2 weeks,followed by 6-week retention. The distance between the moved tooth and anchor unit was recorded weekly,and radiography was performed for each side before and after distraction. The surrounding tissues including periodontal ligament and alveolar bone were sectioned for histological analysis. Results The average distance of tooth movement was 3.55mm on the experimental side and 1.11mm on the control side. The rate of tooth movement was notably higher (P<0.01) and no significant apical root resorption was detected by X-ray on the experimental side. The active alvelor bone remodeling was found on the tension and pressure sides. However,there was no significant difference between the experimental side and the control side after the retention period. Conclusion The rate of orthodontic tooth movement can be accelerated through resistance reduction and periodontal distraction without any unfavorable effects but at minimal anchorage loss. 展开更多
关键词 periodontal ligament distraction osteogenesis resistance reduction rapid tooth movement
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Dynamic Analysis of the Expression of HSP70 during Experimental Tooth Movement in Rats
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作者 毛靖 齐娟 +1 位作者 李平 谢晖 《Journal of Huazhong University of Science and Technology(Medical Sciences)》 SCIE CAS 2006年第6期706-708,共3页
In this study, the expression of HSP70 during experimental tooth movement was dynamically observed and the relationship between HSP70 and orthodontic periodontal tissue remodeling were observed. The orthodontic applia... In this study, the expression of HSP70 during experimental tooth movement was dynamically observed and the relationship between HSP70 and orthodontic periodontal tissue remodeling were observed. The orthodontic appliance was placed between the right maxillary first molar and maxillary central incisors of adult SD rats to establish a rat molar movement model. Immunohistochemistry was performed 1, 3, 5, 7 and 14 day(s) after orthodontic force application to observe the expression and localization of inducible HSP70. The expression of HSP70 was strongly positive in the early stage of the tooth movement, became gradually less positive, and was weakly positive in the restoration stage. There was difference in staining pattern between different parts of PDL during the same period. These results suggest that the expression of HSP70 and difference in staining pattern among different parts of PDL during orthodontic tooth movement in rats may be implicated in stress response and remodeling of periodontal tissue. 展开更多
关键词 orthodontic tooth movement IMMUNOHISTOCHEMISTRY heat shock protein 70
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External Root Resorption During Standardised Orthodontic Tooth Movement In Young And Adult Rats 被引量:2
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作者 RENYi-jin JC.Maltha AMKuijpers-Jagtman 《口腔医学研究》 CAS CSCD 2004年第3期282-285,共4页
目的 :比较研究幼鼠和成年鼠正畸牙齿移动过程中的牙根吸收。方法 :本研究包括两组大鼠 ,其中幼鼠 30只 (年龄约 6周 ) ,成年鼠 30只 (年龄约 912个月 )。大鼠上颌牙一侧用于实验侧 ,另一侧用于对照。实验侧的三颗磨牙用结扎丝颌粘接剂... 目的 :比较研究幼鼠和成年鼠正畸牙齿移动过程中的牙根吸收。方法 :本研究包括两组大鼠 ,其中幼鼠 30只 (年龄约 6周 ) ,成年鼠 30只 (年龄约 912个月 )。大鼠上颌牙一侧用于实验侧 ,另一侧用于对照。实验侧的三颗磨牙用结扎丝颌粘接剂固为一个整体 ,在超弹性拉簧作用下 (力值为 0 .1牛顿 )向切牙侧移动。 1,2 ,4 ,8和 12周时给予大鼠过量麻醉剂 ,材料用于组织学研究。上颌第一磨牙的近中颊侧根为根吸收研究对象。压力侧和张力侧的牙根吸收程度在显微镜下进行长度测量。实验侧与对照侧 ,压力侧与张力侧 ,幼鼠与成年鼠之间的牙根吸收程度分别以实验时间为参照 ,在统计学手段下进行了组间和组内分析和比较 ,以探讨牙齿移动时间和年龄因素对于牙根吸收的影响。结果 :实验侧的牙根吸收在幼鼠与成年鼠之间在 1,2 ,4 ,8周时均没有统计学差异。而在第 12周时 ,成年鼠实验侧牙根吸收大于幼鼠 (P <0 .0 5 )。成年鼠实验组压力侧的牙根吸收明显大于对照组压力侧 ,而在幼鼠组没有发现这一差异。两组年龄幼鼠的实验组其压力侧和张力侧的牙根吸收均高度相关。结论 :相对于对照侧 ,正畸牙齿移动并没有在幼鼠的实验侧诱发更多的牙根吸收。在成年鼠 ,长期的正畸作用力倾向于诱发更多的牙根吸收。这些研究结果表明对于正? 展开更多
关键词 年龄 牙齿移动 牙根吸收 正畸力
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TRAIL Immunolocalisation in the Rat Periodontal Ligament during Experimental Tooth Movement. A Preliminary Study 被引量:1
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作者 Carla Loreto Giuseppe Musumeci +3 位作者 Sergio Castorina Jessica Valentino Salvatore Giunta Rosalia Leonardi 《Open Journal of Apoptosis》 2013年第3期31-36,共6页
The aim of this study was to evaluate immunohistochemically TRAIL (TNF-Related Apoptosis Inducing Ligand) expression in the periodontal ligament of rats’ molars considering its distribution pattern in the tension and... The aim of this study was to evaluate immunohistochemically TRAIL (TNF-Related Apoptosis Inducing Ligand) expression in the periodontal ligament of rats’ molars considering its distribution pattern in the tension and compressive regions of ligament during orthodontic movement. Sixteen Sprague-Dawley rats, weighing between 120 and 200 gwere used in the present study. Tooth movement was induced by placing elastic bands between the maxillary first and second molars. The elastic bands were left in place for 12 (time T1) and 24 (time T2) hours. After rats’ euthanasia, maxillae were dissected free and the sections were exposed to a primary rabbit polyclonal anti-TRAIL anti-body. The staining status was identified as either negative or positive by using 3,3’-diaminobenzidine (DAB) to develop the immunoreaction. Data were analyzed using ANOVA test and a post-hoc Dunn’s Multiple Comparison test. P-values of less than 0.05 were considered statistically significant. The staining for TRAIL in the tension side appeared darker (intensity of staining = 2) than in the compressive side (intensity of staining = 1) 12 h after the tooth movement. The stainings of both sides of PDL were observed to be up-regulated 24 h after the application of the force (tension side = 3, compression side = 2;P 0.05). TRAIL is expressed in the periodontal ligament of rats’ molars during experimental tooth movement both in the compression and in the tension sides. The latter showed the highest amount of TRAIL immunolabeling. 展开更多
关键词 IMMUNOHISTOCHEMISTRY Pperiodontal LIGAMENT tooth movement TRAIL
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Interleukin-1α and tumor necrosis factor-α expression on the compressed side of gingiva during orthodontic tooth movement 被引量:1
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作者 Hyoung-Seon Baik Chong-Kwan Kim +1 位作者 Won Hee Lim Youn Sic Chun 《Open Journal of Stomatology》 2012年第3期182-187,共6页
Objectives: The aim of this study was to investigate the effect of orthodontic loading on the expression of interleukin-1α (IL-1α) and tumor necrosis factor-α (TNF-α) in compressed gingiva. Materials and Methods: ... Objectives: The aim of this study was to investigate the effect of orthodontic loading on the expression of interleukin-1α (IL-1α) and tumor necrosis factor-α (TNF-α) in compressed gingiva. Materials and Methods: Twenty-four male Wistar rats were used with four rats as controls at day 0. In ten rats, corticotomy was performed on either left or right side and the re-maining side was served as control, and killed at 7 and 14 days. In the remaining ten rats, maxillary right and left first molars were moved orthodontically with a constant force of 20 g;appliance and appliance in conjunction with cortictomy (appliance-corticotomy) were sequentially alternated between left and right sides and euthanized at 7 and 14 days. Real time polymerase chain reactions of compressed gingiva excised from the euthanized rats was performed to measure mRNA expressions of IL-1α and TNF-α. Results: There were no significant differences in the expression of IL-1α between all the groups. On the other hand, TNF-α from the pressure side in the ap- pliance group and the appliance in conjunction with corticotomy group showed significant increase on the 7th day compared to that of either control or corticotomy group. Conclusions: Orthodontic loading induced the elevation of TNF-α in compressed 展开更多
关键词 tooth movement GINGIVA Compressed SIDE IL-1Α TNF-α
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Cell biology in orthodontic tooth movement:The known and the unknown
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作者 RENYi-jin 《上海口腔医学》 CAS CSCD 2005年第2期182-189,共8页
This review is aimed at providing, at the cellular level, a concise and complete overview of the important knowledge on the mechanism of orthodontic tooth movement to orthodontists and postgraduates who are involved o... This review is aimed at providing, at the cellular level, a concise and complete overview of the important knowledge on the mechanism of orthodontic tooth movement to orthodontists and postgraduates who are involved or interested in basic research. The construction of this article was oriented to the following key questions: Where an osteoclast starts to its first resorption site? When the cascade of a resorption cycle starts? What are the factors involved in bone remodeling and how they orchestrate? What happens before and after the formation of a resorption pit? Major findings in these aspects were summarized and discussed. In addition, related biological phenomenon such as orthodontically induced root resorption was intensively reviewed. By means of an updated and systematic review, the author intended to introduce more biological evidence to orthodontic intervention and to encourage evidence-based treatment in daily orthodontic practice. 展开更多
关键词 细胞生物学 牙疾病 牙科医生 治疗 破骨细胞
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EFFECT OF PULSED ELECTROMAGNETIC FIELD AND BIOMECHANICAL FORCE ON ORTHODONTIC TOOTH MOVEMENT
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作者 陈青蓉 楼昭华 +2 位作者 蔡中 刘侃 彭适生 《Medical Bulletin of Shanghai Jiaotong University》 CAS 1991年第2期81-85,共5页
The purpose of this experiment is to investigate the effect of pulsed electromagnetic field (PEMF) and biomechanical force on orthodontic tooth movement by means of measurement of gross tooth movement anatomic data, l... The purpose of this experiment is to investigate the effect of pulsed electromagnetic field (PEMF) and biomechanical force on orthodontic tooth movement by means of measurement of gross tooth movement anatomic data, light microscopic evaluation and transmission electromicroscopic evaluation. The results indicate that PEMF combined with biomechanical force could accelerate the rate and amount of orthodontic tooth movement, enhance bone deposition in tension side and resorption in compression side. The results also suggest that PEMF could accelerate orthodontic tooth movement as a result of increase in quantity of active cells, PEMF couldn’t change the ultrastructure of cells. 展开更多
关键词 putsed ELECTROMAGNETIC field ORTHODONTIC tooth movement
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Factors Associated with Orthodontic Tooth Movement in Periodontally Compromised Patients
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作者 Devinder Preet Singh 《Open Journal of Stomatology》 2015年第11期268-279,共12页
There is no consistent relationship between malocclusion and periodontal disease but certain characteristics of malocclusion can promote a pathologic environment conducive to periodontal disease. One of the dramatic m... There is no consistent relationship between malocclusion and periodontal disease but certain characteristics of malocclusion can promote a pathologic environment conducive to periodontal disease. One of the dramatic means available to improve the local environmental factors is through orthodontic tooth movement. The pretreatment periodontal conditions can include excessive tooth mobility, advanced crestal bone loss, infrabony defects, tipped molars, furcation involvement, and hard and soft tissue dehiscences. Movement of teeth in the presence of periodontal inflammation can result in an increased loss of attachment and irreversible crestal loss. Although absolute reduction in bone and attachment levels does not contraindicate orthodontic correction, it does increase the difficulty of delivering controlled orthodontic mechanics that would potentially minimize further bone loss. The present review article discusses the various factors that are associated with orthodontic tooth movement in periodontally compromised patients namely: 1) tooth movement into infrabony pockets;2) tooth movement into compromised bone areas;3) tooth movement through cortical bone;4) extrusion (eruption);5) intrusion;6) tipping. 展开更多
关键词 MALOCCLUSION ORTHODONTIC tooth movement PERIODONTAL DISEASE
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Heavy mechanical force decelerates orthodontic tooth movement via Piezo1-induced mitochondrial calcium down-regulation
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作者 Ye Zhu Xuehuan Meng +7 位作者 Qiming Zhai Liangjing Xin Hao Tan Xinyi He Xiang Li Guoyin Yang Jinlin Song Leilei Zheng 《Genes & Diseases》 2025年第2期414-424,共11页
Orthodontic tooth movement(OTM)depends on periodontal ligament cells(PDLCs),which sense biomechanical stimuli and initiate alveolar bone remodeling.Light(optimal)forces accelerate OTM,whereas heavy forces decelerate i... Orthodontic tooth movement(OTM)depends on periodontal ligament cells(PDLCs),which sense biomechanical stimuli and initiate alveolar bone remodeling.Light(optimal)forces accelerate OTM,whereas heavy forces decelerate it.However,the mechanisms by which PDLCs sense biomechanical stimuli and affect osteoclastic activities under different mechanical forces(MFs)remain unclear.This study demonstrates that mechanosensitive ion channel Piezo1-medi-ated Ca^(2+)signal conversion is crucial for sensing and delivering biomechanical signals in PDLCs un-der heavy-force conditions.Heavy MF up-regulated Piezo1 in PDLCs,reducing mitochondrial Ca^(2+)influx by inhibiting ITPR3 expression in mitochondria-associated membranes.Decreased mito-chondrial calcium uptake led to reduced cytoplasmic release of mitochondrial DNA and inhibited the activation of the cGAS-STING signaling cascade,subsequently inhibiting monocyte-to-osteo-clast differentiation.Inhibition of Piezo1 or up-regulation of STING expression under heavy MF conditions significantly increased osteoclast activity and accelerated OTM.These findings suggest that heavy MF-induced Piezo1 expression in PDLCs is closely related to the control of osteoclast activity during OTM and plays an essential role in alveolar bone remodeling.This mechanism may be a potential therapeutic target for accelerating OTM. 展开更多
关键词 BIOMECHANICS Bone remodeling/regeneration MECHANO-TRANSDUCTION Orthodontic tooth movement Periodontal ligament
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Effective techniques and emerging alternatives in orthodontic tooth movement:A systematic review
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作者 Rushikesh Sangle Manasvi Parab +2 位作者 Aditya Gujare Pankaj Dhatrak Sonali Deshmukh 《Medicine in Novel Technology and Devices》 2023年第4期11-22,共12页
Orthodontic procedures can be inconvenient in nature.To overcome this problem,accelerated orthodontics play a very important role to reduce existing trouble and discomfort.The most common inconvenience caused during o... Orthodontic procedures can be inconvenient in nature.To overcome this problem,accelerated orthodontics play a very important role to reduce existing trouble and discomfort.The most common inconvenience caused during orthodontic treatment procedures is that they are very time consuming which can result in several drawbacks,including an increased risk of tooth decay,gingival recession,and root resorption.Various methods can be employed to expedite orthodontic treatment by accelerating tooth movement,including surgical-assisted procedures,biological interventions,and the utilization of devices.These approaches effectively reduce the overall period of treatment.The purpose of this review is to study the effective techniques for orthodontic tooth movement as well as highlight various orthodontic accelerating methods in the respective approaches.Some nonsurgical studies indicated that drug-induced methods can have a therapeutic effect on tooth movement.One of the approaches involves the local administration of Vitamin 1.25D,which has been found to expedite tooth movement.Vibrational orthodontic devices are a painless and cost-effective option that is considered the least invasive approach for accelerating tooth movement.Meanwhile,surgical approach is also a successful method,wherein great results and strong PDL tissue response were observed,but they cause a lot of pain and discomfort to the patient.Therefore,due to the strengths and limitations of each procedure covered in the study,more research should be done to identify the fastest way to speed up tooth mobility。 展开更多
关键词 Orthodontic tooth movement MALOCCLUSION tooth alignment Bone remodeling tooth movement biology Surgical method Drug-induced tooth movement Device-assisted tooth movement
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Rapid tooth movement through distraction osteogenesis of the periodontal ligament in dogs 被引量:9
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作者 AI Hong XU Qing-feng LU Hong-fei MAI Zhi-hui AN Ai-qun LIU Guo-ping 《Chinese Medical Journal》 SCIE CAS CSCD 2008年第5期455-462,共8页
Background Animal models are needed for the study of rapid tooth movement into the extraction socket through distraction osteogenesis of the periodontal ligament. Methods Modified distraction devices were placed on ei... Background Animal models are needed for the study of rapid tooth movement into the extraction socket through distraction osteogenesis of the periodontal ligament. Methods Modified distraction devices were placed on eight dogs between the first and third mandibular premolars on the left sides; similar placement of traditional straight wise appliances on the right sides served as the control. The experimental distractors were activated (0.25 mm/d) twice a day and the control devices were activated (100 g) for two weeks with consolidation periods at weeks two, three, six, and ten. Two dogs were sacrificed at each consolidation time point; rates and patterns of tooth movement, loss of anchorage, and periapical films were evaluated, and the affected premolars and surrounding periodontal tissues were decalcified and examined histologically. General observations, X-ray periapical filming and histology examination were performed. Results Distal movement ((3.66±0.14) mm) measured two weeks after modified distraction exceeded that achieved using the traditional device ((1.15±0.21) mm; P 〈0.05). Loss of anchorage was minimally averaged (0.34±0.06) mm and (0.32±0.07) mm in the experimental and control sides, respectively. By radiography, apical and lateral surface root resorptions on both sides were minimal. Alveolar bone lesions were never evident. Fibroblasts were enriched in periodontal ligaments and bone spicules formed actively along directions of distraction. Conclusions The canine model is suitable for the study of rapid tooth movement through distraction osteogenesis of the periodontal ligament. The technique accelerates tooth movement, periodontal remodeling, alveolar bone absorption, and may induce fibroblast formation, as compared to the traditional orthodontic method, without adversely affecting root absorption, bone loss, tooth mobility and anchorage loss. 展开更多
关键词 animal model distraction osteogenesis periodontal ligament rapid tooth movement bone formation
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Lithium chloride promotes osteogenesis and suppresses apoptosis during orthodontic tooth movement in osteoporotic model via regulating autophagy 被引量:10
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作者 Li Huang Xing Yin +5 位作者 Jun Chen Ruojing Liu Xiaoyue Xiao Zhiai Hu Yan He Shujuan Zou 《Bioactive Materials》 SCIE 2021年第10期3074-3084,共11页
Osteoporosis is a widely distributed disease that may cause complications such as accelerated tooth movement,bone resorption,and tooth loss during orthodontic treatment.Promoting bone formation and reducing bone resor... Osteoporosis is a widely distributed disease that may cause complications such as accelerated tooth movement,bone resorption,and tooth loss during orthodontic treatment.Promoting bone formation and reducing bone resorption are strategies for controlling these complications.For several decades,the autophagy inducer lithium chloride(LiCl)has been explored for bipolar.In this study,we investigated the autophagy-promoting effect of LiCl on bone remodeling under osteoporotic conditions during tooth movement.Ovariectomy was used to induce osteoporosis status in vivo.The results showed that LiCl rejuvenated autophagy,decreased apoptosis,and promoted bone formation,thus protecting tooth movement in osteoporotic mice.Furthermore,in vitro experiments showed that LiCl reversed the effects of ovariectomy on bone marrow-derived mesenchymal stem cells(BMSCs)extracted from ovariectomized mice,promoting osteogenesis and suppressing apoptosis by positively regulating autophagy.These findings suggest that LiCl can significantly decrease adverse effects of osteoporosis on bone remodeling,and that it has great potential significance in the field of bone formation during tooth movement in osteoporosis patients. 展开更多
关键词 Lithium chloride AUTOPHAGY OSTEOGENESIS Orthodontic tooth movement APOPTOSIS
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Photobiomodulation therapy assisted orthodontic tooth movement:potential implications,challenges,and new perspectives 被引量:4
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作者 Jiawen YONG Sabine GROGER +5 位作者 Julia VON BREMEN Marcia MARTINS MARQUES Andreas BRAUN Xiaoyan CHEN Sabine RUF Qianming CHEN 《Journal of Zhejiang University-Science B(Biomedicine & Biotechnology)》 SCIE CSCD 2023年第11期957-973,共17页
Over the past decade,dramatic progress has been made in dental research areas involving laser therapy.The photobiomodulatory effect of laser light regulates the behavior of periodontal tissues and promotes damaged tis... Over the past decade,dramatic progress has been made in dental research areas involving laser therapy.The photobiomodulatory effect of laser light regulates the behavior of periodontal tissues and promotes damaged tissues to heal faster.Additionally,photobiomodulation therapy(PBMT),a non-invasive treatment,when applied in orthodontics,contributes to alleviating pain and reducing inflammation induced by orthodontic forces,along with improving tissue healing processes.Moreover,PBMT is attracting more attention as a possible approach to prevent the incidence of orthodontically induced inflammatory root resorption(OIIRR)during orthodontic treatment(OT)due to its capacity to modulate inflammatory,apoptotic,and anti-antioxidant responses.However,a systematic review revealed that PBMT has only a moderate grade of evidence-based effectiveness during orthodontic tooth movement(OTM)in relation to OIIRR,casting doubt on its beneficial effects.In PBMT-assisted orthodontics,delivering sufficient energy to the tooth root to achieve optimal stimulation is challenging due to the exponential attenuation of light penetration in periodontal tissues.The penetration of light to the root surface is another crucial unknown factor.Both the penetration depth and distribution of light in periodontal tissues are unknown.Thus,advanced approaches specific to orthodontic application of PBMT need to be established to overcome these limitations.This review explores possibilities for improving the application and effectiveness of PBMT during OTM.The aim was to investigate the current evidence related to the underlying mechanisms of action of PBMT on various periodontal tissues and cells,with a special focus on immunomodulatory effects during OTM. 展开更多
关键词 Photobiomodulation therapy Low-level laser therapy(LLLT) Low-intensity laser therapy(LILT) Orthodontic tooth movement ORTHODONTICS Immunorthodontics
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Biocompatible reduced graphene oxide stimulated BMSCs induce acceleration of bone remodeling and orthodontic tooth movement through promotion on osteoclastogenesis and angiogenesis 被引量:4
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作者 Delong Jiao Jing Wang +5 位作者 Wenting Yu Ke Zhang Ning Zhang Lingyan Cao Xinquan Jiang Yuxing Bai 《Bioactive Materials》 SCIE 2022年第9期409-425,共17页
We has synthesized the biocompatible gelatin reduced graphene oxide(GOG)in previous research,and in this study we would further evaluate its effects on bone remodeling in the aspects of osteoclastogenesis and angiogen... We has synthesized the biocompatible gelatin reduced graphene oxide(GOG)in previous research,and in this study we would further evaluate its effects on bone remodeling in the aspects of osteoclastogenesis and angiogenesis so as to verify its impact on accelerating orthodontic tooth movement.The mouse orthodontic tooth movement(OTM)model tests in vivo showed that the tooth movement was accelerated in the GOG local injection group with more osteoclastic bone resorption and neovascularization compared with the PBS injection group.The analysis on the degradation of GOG in bone marrow stromal stem cells(BMSCs)illustrated its good biocompatibility in vitro and the accumulation of GOG in spleen after local injection of GOG around the teeth in OTM model in vivo also didn’t influence the survival and life of animals.The co-culture of BMSCs with hematopoietic stem cells(HSCs)or human umbilical vein endothelial cells(HUVECs)in transwell chamber systems were constructed to test the effects of GOG stimulated BMSCs on osteoclastogenesis and angiogenesis in vitro.With the GOG stimulated BMSCs co-culture in upper chamber of transwell,the HSCs in lower chamber manifested the enhanced osteoclastogenesis.Meanwhile,the co-culture of GOG stimulated BMSCs with HUVECs showed a promotive effect on the angiogenic ability of HUVECs.The mechanism analysis on the biofunctions of the GOG stimulated BMSCs illustrated the important regulatory effects of PERK pathway on osteoclastogenesis and angiogenesis.All the results showed the biosecurity of GOG and the biological functions of GOG stimulated BMSCs in accelerating bone remodeling and tooth movement. 展开更多
关键词 Bone remodeling Reduced graphene oxide ANGIOGENESIS OSTEOCLASTOGENESIS Orthodontic tooth movement
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The Finite Element Analysis of Optimal Orthodontic Force for Canine Distalization with Long-Arm Brackets
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作者 Zhidan Zhu Xiaojing Sun +4 位作者 Bin Lu Qijie Shi Yun Tang Siyu Zou Qian Jiang 《Journal of Biosciences and Medicines》 2025年第1期196-205,共10页
Objective: To compare the stress distribution in the periodontal ligament under different orthodontic forces during canine distalization using long-arm brackets, and to determine the optimal force value for this devic... Objective: To compare the stress distribution in the periodontal ligament under different orthodontic forces during canine distalization using long-arm brackets, and to determine the optimal force value for this device in orthodontic treatment. Methods: A finite element model was constructed after extracting the mandibular first premolar, and a long-arm bracket with a traction height of 6 mm was placed on the labial side of the mandibular canine. Three working conditions of 50 g, 100 g, and 150 g were simulated, and the magnitude and distribution of von Mises stress in the periodontal ligament were compared for each condition. Results: The maximum von Mises stress in the periodontal ligament was 0.013281 MPa in the 50 g condition, 0.02536 MPa in the 100 g condition, and 0.035549 MPa in the 150 g condition. As the orthodontic force increased, the stress distribution area in the periodontal ligament also expanded. Conclusion: A 100 g orthodontic force is the most suitable when using long-arm brackets, providing a relatively uniform stress distribution in the periodontal ligament and keeping the stress within a reasonable range. 展开更多
关键词 Orthodontic Force tooth movement Finite Element Analysis Periodontal Ligament Stress
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大鼠牙齿空间移动评估及牙槽骨微观结构变化追踪研究
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作者 钱心瑶 姜迪 +6 位作者 谢玉婷 吴斌 唐雯 陆玲波 李禹江 谢理哲 严斌 《南京医科大学学报(自然科学版)》 北大核心 2025年第4期478-486,522,共10页
目的:显微CT(micro-computed tomography,Micro-CT)活体扫描观测并量化正畸力下大鼠的牙齿移动,张力区及压力区骨小梁微观结构的连续变化情况。方法:对5只雄性8周龄SD大鼠的左侧上颌第一磨牙施加50 g矫治力,使用Micro-CT在加力前及加力... 目的:显微CT(micro-computed tomography,Micro-CT)活体扫描观测并量化正畸力下大鼠的牙齿移动,张力区及压力区骨小梁微观结构的连续变化情况。方法:对5只雄性8周龄SD大鼠的左侧上颌第一磨牙施加50 g矫治力,使用Micro-CT在加力前及加力后的不同时间点对大鼠进行活体扫描,在统一空间坐标系下计算大鼠正畸牙齿移动距离,并测量统计移动牙张力区及压力区的骨小梁微观形态和力学特性相关参数,分析其动态变化特征。结果:大鼠磨牙在0~3 d有明显位移,3~14 d移动速率下降,21~28 d速率增加(P<0.001);张力区及压力区多项骨小梁参数分别以7、14 d为转折点,骨体积分数(bone volume fraction,BV/TV)和骨小梁厚度(trabecular thickness,Tb.Th)先下降后升高,孔隙总体积[total volume of pore space,Po.V(tot)]、结构模型指数(structure model index,SMI)、骨小梁间隙(trabecular separation,Tb.Sp)和分形维数(fractal dimension,FD)先升高后下降,牙移动前期张力区增量斜率较压力区更大,牙移动后期BV/TV、Po.V(tot)、SMI和Tb.Sp数值在张力区及压力区差异有统计学意义(P均<0.05)。结论:大鼠正畸牙移动具有三阶段性;张力区及压力区骨小梁微观结构改建存在差异,骨量及骨质量均先降低后升高,并分别在7 d和14 d前后达到最低点;张力区的骨吸收活跃期较早,张力区牙槽骨骨形成滞后于压力区骨吸收。 展开更多
关键词 MICRO-CT 正畸牙齿移动 骨小梁 微观结构 追踪研究
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低能量激光治疗加速正畸牙齿移动及减轻疼痛的临床研究
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作者 时之凯 王斌 +1 位作者 韩爽 陶玉飞 《实用口腔医学杂志》 北大核心 2025年第2期235-238,共4页
目的:评估低能量激光治疗在正畸治疗过程中加速牙齿移动及减轻疼痛的效果。方法:纳入安氏Ⅱ类一分类错[牙合]畸形患者26例,随机选择上颌左侧或右侧牙齿作为实验侧和对照侧,两侧同时加力关闭第一前磨牙间隙。实验侧牙齿接受低能量激光治... 目的:评估低能量激光治疗在正畸治疗过程中加速牙齿移动及减轻疼痛的效果。方法:纳入安氏Ⅱ类一分类错[牙合]畸形患者26例,随机选择上颌左侧或右侧牙齿作为实验侧和对照侧,两侧同时加力关闭第一前磨牙间隙。实验侧牙齿接受低能量激光治疗,每个位点7.5 J/cm^(2),每个患牙10个位点。对照侧以0功率进行照射。比较实验侧和对照侧的疼痛情况和牙齿移动速度。结果:对照侧牙齿7 d内疼痛平均值明显高于实验侧牙齿7 d内疼痛平均值(P<0.001)。实验侧牙齿平均移动速率明显高于对照组侧(P<0.05)。结论:低能量激光治疗可以辅助加速牙齿移动并减轻正畸牙齿移动时的疼痛。 展开更多
关键词 低能量激光治疗 牙齿移动 减轻疼痛
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