Academic literature on the topic 'Orthodontics corticotomy accelerated tooth movement'

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Journal articles on the topic "Orthodontics corticotomy accelerated tooth movement"

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Rahma Mansyur, Shinta, and Mardiana Andi Adam. "Wilckodontics-an interdisciplinary periodontics-orthodontic approach to accelerate orthodontic treatment time: a literature review." Makassar Dental Journal 11, no. 1 (2022): 89–94. http://dx.doi.org/10.35856/mdj.v11i1.517.

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Objective: Orthodontic treatment is the longest dental procedure performed. To accelerate tooth movement, orthodontists and periodontists have developed a new technique, termed Wilckodontics or periodontal accelerated osteogenic orthodontics. This technique combines selective alveolar corticotomy techniques, particulate bone grafts, and orthodontic force. This review aims to discuss the concepts and technique of Wilckodontics as a combination of interdisciplinary treatment. Methods: An internet-based search was conducted to identify various literatures discussing Wilckodontics using several ke
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Feller, Liviu, Razia A. G. Khammissa, Andreas Siebold, Andre Hugo, and Johan Lemmer. "Biological events related to corticotomy-facilitated orthodontics." Journal of International Medical Research 47, no. 7 (2019): 2856–64. http://dx.doi.org/10.1177/0300060519856456.

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Corticotomy-facilitated orthodontics is a clinical treatment modality comprising the application of conventional orthodontic forces combined with selective decortication of the alveolar process of the bone, which generates a localized process of bone remodeling (turnover) that enables accelerated orthodontic tooth movement. Compared with conventional orthodontic treatment, corticotomy-facilitated orthodontics is associated with reduced treatment time and reduces the frequency of apical external root resorption; however, this modality increases morbidity and financial costs. Although the clinic
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Danny, Alexander Abril-Pesántez, Nicole Calle-Calle Samantha, Alejandra Capelo-Jiménez Jamileth, Yamileth Granda-Calva Heidy, Vanesa Rodas-Barrera Paola, and Yolanda Yunga-Picón María. "Techniques to accelerate dental movement in orthodontics: Piezocision and Corticotomy: A review of the literature." World Journal of Advanced Research and Reviews 19, no. 1 (2023): 959–70. https://doi.org/10.5281/zenodo.10279791.

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<strong>Aim:</strong> The objective of this review of the literature is oriented towards an analysis of the current available evidence on the efficacy of corticotomy and piezocision procedures in the acceleration of orthodontic dental movement.<strong>Methodology:</strong> It has been made an electronic search in 3 databases with the following selection criteria; randomized controlled trials (RCTs) of the last 10 years, in which apply orthodontic treatments combined with corticotomy or piezocision in front of the conventional orthodontic treatment.<strong>Results:</strong> Eleven randomized co
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Farran, Waleed, Malik Alghamdi, Abdullah Almohammadi, et al. "The Efficacy and Modes of Accelerating Orthodontic Tooth Movement." Journal of Healthcare Sciences 3, no. 12 (2023): 735–43. http://dx.doi.org/10.52533/johs.2023.31226.

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Orthodontic treatment, while highly advantageous for correcting dental misalignments and enhancing oral health, typically demands a substantial time commitment. To reduce treatment duration and improve various aspects of the orthodontic process, accelerated methods for tooth movement have been explored. These methods aim to offer benefits such as decreased discomfort, enhanced patient compliance, and overall treatment efficiency. This study undertakes a review of existing literature, aiming to comprehensively assess the current evidence on accelerated orthodontic tooth movement. The review enc
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Dsouza, Sheehan R., Amitha Ramesh, Sharath K. S., and Biju Thomas. "CORTICOTOMY-PERIODONTALLY ACCELERATED OSTEOGENIC ORTHODONTICS - A SURGICAL TECHNIQUE AND CASE REPORT." Journal of Health and Allied Sciences NU 04, no. 03 (2014): 112–14. http://dx.doi.org/10.1055/s-0040-1703815.

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AbstractCorticotomy-assisted orthodontic treatment involves selective alveolar decortication in the form of decortication lines and dots performed around the teeth that are to be moved. It is done to induce a state of increased tissue turnover and a transient osteopenia, which is followed by a faster rate of orthodontic tooth movement.This technique has several advantages, including faster tooth movement, shorter treatment time, safer expansion of constricted arches, enhanced post-orthodontic treatment stability and extended envelope of tooth movement.This case report describes a surgical tech
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Baghdadi, Leila Shahsavand, and Mohammad Amin Nouroozi. "Periodontally Accelerated Osteogenic Orthodontic in Patients Treated With In-house Clear Aligner: A Case Report." Avicenna Journal of Dental Research 16, no. 2 (2024): 128–33. http://dx.doi.org/10.34172/ajdr.1677.

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The thickness of the alveolar bone is one of the limiting factors of orthodontic tooth movement. Crossing these limitations in orthodontic movements may cause periodontal diseases, root resorption, pulpitis, and the like. Osteogenic orthodontics that is accelerated by the periodontium is one method for overcoming these restrictions and negative effects. Over the last ten years, a large body of research has been conducted on the well-known and efficient technique of alveolar decortication-assisted orthodontic treatment. Corticotomy combined with guided bone regeneration can increase the range o
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Shetty, Dr Sharath Kumar, Dr Shylashree S, Dr Mahesh Kumar Y, and Dr S. V. Paramesh Gowda. "Corticotomy–An Accelerated Orthodontic Procedure." Scholars Journal of Dental Sciences 8, no. 7 (2021): 189–92. http://dx.doi.org/10.36347/sjds.2021.v08i07.001.

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Corticotomy found to be effective in accelerating orthodontic treatment. It involves selective alveolar decortication in the form of decortication lines and dots performed around the teeth that are to be moved. It is done to induce a state of increased tissue turnover and a transient osteopenia, which is followed by a faster rate of orthodontic tooth movement. This technique has several advantages, including faster tooth movement, shorter treatment time, safer expansion of constricted arches, enhanced post-orthodontic treatment stability and extended envelope of tooth movement.
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Liu, Ruojing, Li Huang, Xiaoyue Xiao, et al. "Biomechanical Interfaces of Corticotomies on Periodontal Tissue Remodeling during Orthodontic Tooth Movement." Coatings 11, no. 1 (2020): 1. http://dx.doi.org/10.3390/coatings11010001.

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Corticotomy is an effective approach in accelerating orthodontic tooth movement (OTM) in clinical treatment. Corticotomy causes regional acceleratory phenomenon (RAP) in the alveolar bone of surgical sites. However, the molecular mechanism of RAP after corticotomy remains unclear. Herein, we established a mouse model to study the biomechanical interfaces of corticotomy-assisted OTM and to investigate the histological responses and underlying cellular mechanism. A total of 144 male C57BL/6 mice were randomly assigned into four groups: corticotomy alone (Corti), sham operation (Sham), corticotom
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Gupta, Dhriti, Anisha Singh, Shruti Singh, Anil Kumar Jha, and Chetan Chandra. "Advancement in periodontal accelerated osteogenic orthodontics: Exploring the synergy between periodontal and orthodontic treatment – A case report." Asian Journal of Oral Health and Allied Sciences 14 (December 7, 2024): 16. https://doi.org/10.25259/ajohas_12_2024.

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Periodontally accelerated osteogenic orthodontics (PAOO) is a surgical technique that merges targeted corticotomy, particle grafting, and appropriate orthodontic forces. This approach shortens treatment duration, enhances tooth stability, and prevents the relapse of tooth movement. By leveraging the regional acceleratory phenomenon, PAOO promotes faster orthodontic tooth movement and improves the healing process of bone. It also increases the width of the alveolar bone, reduces the overall treatment time, enhances post-treatment stability, and minimizes the risk of dehiscence. The focus of thi
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Singh, Ritunja, Shilpa Chourasia, Palak Sharma, Soumya Gupta, Gangesh Singh, and Ankita Srivastava. "Wilckodontics: The Periodontal Orthodontics." Dental Journal of Advance Studies 6, no. 02/03 (2018): 053–56. http://dx.doi.org/10.1055/s-0038-1677628.

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AbstractPeriodontally accelerated osteogenic orthodontics (PAOO), also known as Wilckodontics, is a clinical procedure that combines corticotomy (a surgical technique in which the bone is cut, perforated, or mechanically altered), particulate bone grafting, and orthodontic force application. By this procedure, the teeth can be made to move through the bone rapidly by means of harnessing and stimulating the innate potential of the bone and utilizing tissue engineering principles. Once the tooth movement gets completed, bone rebuilds around the tooth, thereby reducing the time of orthodontic tre
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Dissertations / Theses on the topic "Orthodontics corticotomy accelerated tooth movement"

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Khan, Nida. "Corticotomy-assisted orthodontics." Thesis, 2015. http://hdl.handle.net/2440/98719.

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The aims of the present study were to evaluate the root structure changes in untreated and buccal orthodontic tooth movement groups, with or without adjunctive flap surgery or corticotomy in an animal model, using Micro-CT. The null hypothesis was that there are no differences in the root structure following orthodontic tooth movement, flap surgery, corticotomy or combinations of orthodontic tooth movement and surgery compared with a control group, in both experimental and contralateral sides. Thirty six male Sprague-Dawley rats were randomly divided into six groups (three control and three e
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Jong, Mun Jing. "Corticotomy enhanced orthodontics." Thesis, 2012. http://hdl.handle.net/2440/75525.

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The main aims of this study were to evaluate the effect of both a flap and corticotomy procedure on orthodontic tooth movement in rats and to compare the bone changes against a control group. Furthermore, the study aimed to introduce a new design for an appliance, which would allow buccal tooth movement in a rat model. Male Sprague-Dawley rats (n=36) aged 6-8 weeks were obtained from Laboratory Animal Services (Adelaide University) with ethics approval from The University of Adelaide Animal Ethics Committee (Project number: M-2009-172). There were 3 control groups, each with 6 rats: nil interv
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De, Vit Alessia. "A review of available surgical techniques to accelerate orthodontic tooth movement." Thesis, 2017. https://hdl.handle.net/2144/26247.

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Corticotomies have been used to assist orthodontic treatment since the late 18th century. This review describes and compares different surgical techniques available to accelerate tooth movement: PAOO™, Corticision, Piezocision™ and Propel. All of the approaches described accelerate orthodontic tooth movement and may protect against root resorption. PAOO™ and Piezocision™ offer the option of bone and soft tissue grafting at time of surgery. Corticision, Piezocision™ and Propel are considered minimally invasive procedures thanks to the flapless approach, but the use of the mallet in Corticisi
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Books on the topic "Orthodontics corticotomy accelerated tooth movement"

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Brugnami, Federico, and Alfonso Caiazzo. Orthodontically Driven Corticotomy. Wiley & Sons, Incorporated, John, 2014.

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Orthodontically Driven Corticotomy: Tissue Engineering to Enhance Orthodontic and Multidisciplinary Treatment. Wiley-Blackwell, 2014.

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Brugnami, Federico, and Alfonso Caiazzo. Orthodontically Driven Corticotomy: Tissue Engineering to Enhance Orthodontic and Multidisciplinary Treatment. Wiley & Sons, Limited, John, 2014.

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Book chapters on the topic "Orthodontics corticotomy accelerated tooth movement"

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Ferguson, Donald J. "Accelerated tooth movement following alveolar corticotomy." In Orthodontically Driven Corticotomy. John Wiley & Sons, Inc, 2014. http://dx.doi.org/10.1002/9781118937853.ch2.

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Teixeira, Cristina C., Edmund Khoo, and Mani Alikhani. "Different Methods of Accelerating Tooth Movement." In Clinical Guide to Accelerated Orthodontics. Springer International Publishing, 2017. http://dx.doi.org/10.1007/978-3-319-43401-8_2.

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Teixeira, Cristina C., Sarah Alansari, Chinapa Sangsuwon, Jeanne Nervina, and Mani Alikhani. "Biphasic Theory and the Biology of Tooth Movement." In Clinical Guide to Accelerated Orthodontics. Springer International Publishing, 2017. http://dx.doi.org/10.1007/978-3-319-43401-8_1.

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K. Patil, Anand, Anupama V. Jain, and Roopak D. Naik. "Non-Invasive Methods of Acceleration of Orthodontic Tooth Movement." In Dentistry. IntechOpen, 2024. http://dx.doi.org/10.5772/intechopen.113374.

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Orthodontic tooth movement involves application of orthodontic force using various appliances to bring about tooth movement for correction of malocclusion. The applied force causes a microtrauma in the underlying periodontal tissue in which there is a cellular response elicited. The cascade of cellular activity which includes mainly osteoclasts, osteoblasts, fibroblasts, and osteocytes brings about the bone remodeling and effects the tooth movement. By stimulating these cells their activity can be increased and the enhanced response hence created causes more speedier bone remodeling bringing a
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Yadav, Dr Deepti, Dr Rahul Paul, Dr Vandana Gulia, Dr Mudita Gupta, Dr Ish Kumar Sharma, and Dr Teisovinuo Kesiezie. "CLINICAL APPLICATIONS OF MINI IMPLANT." In Futuristic Trends in Medical Sciences Volume 3 Book 15. Iterative International Publishers, Selfypage Developers Pvt Ltd, 2024. http://dx.doi.org/10.58532/v3bams15p2ch1.

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Mini-implants, also known as temporary anchorage devices (TADs), have emerged as a transformative innovation in the field of orthodontics, providing a robust and versatile means of achieving precise tooth movement. These small, screw-like implants, strategically placed within the jawbone, offer significant advantages over conventional anchorage methods such as headgear and elastics. A primary application of mini-implants lies in cases demanding absolute anchorage, where tooth movement must occur without compromising the position of adjacent teeth. Mini-implants serve as steadfast anchor points
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Conference papers on the topic "Orthodontics corticotomy accelerated tooth movement"

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Bani-Hani, Muath, M. Amin Karami, Nikta Amiri, and Mostafa Tavakkoli Anbarani. "Piezoelectric Teeth Aligners for Accelerated Orthodontics." In ASME 2018 Conference on Smart Materials, Adaptive Structures and Intelligent Systems. American Society of Mechanical Engineers, 2018. http://dx.doi.org/10.1115/smasis2018-8199.

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In this paper, a new prototype is proposed for accelerated orthodontic tooth treatment. In contrast to conventional methods, where heavy vibration generators are used, the proposed design is light and small and may remain into patient’s mouth without obstructing his daily activities. To do that, a PVDF Piezoelectric actuator layer is incorporated into a bio-compatible flexible structure which is to be excited by an external electric source. Generally, application of cyclic loading (vibration) reverses bone loss, stimulates bone mass, induces cranial growth, and accelerates tooth movement. This
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