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Artykuły w czasopismach na temat "Orthodontic applications"

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I Girish Kumar, Jyothikiran H, Nidharshana Nair, and Madhuvanthi Gopalakrishnan. "Contemporary digital software applications in orthodontics: A review." International Journal of Science and Research Archive 11, no. 2 (2024): 288–301. http://dx.doi.org/10.30574/ijsra.2024.11.2.0403.

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Orthodontic technology has advanced significantly, allowing an orthodontist to precisely design the course of therapy. The software enables the analysis of dental mobility and the provision of digital treatment choices. Cephalometric analysis, digital imaging, intraoral and extraoral image capture, morphing capability to show patients what their teeth could look like after treatment, case presentation capability, treatment planning capability, and oral maxillofacial surgery applications are typical features of orthodontic practice software and orthodontic digital treatment planning systems. You can give patients graphics through these technologies that will assist them in understanding the benefits of proceeding with orthodontic or surgical-orthodontic therapy. Since patients can now comprehend and see the treatment plan, communication between clinicians and patients has also become easier due to digitization. Thanks to digital orthodontics, getting a healthier and straighter smile is much easier. Because of this, the majority of this assessment is based on software that is currently accessible for orthodontic applications.
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Joseph, Varsha, Bejoy PU, Lakshmi Lakshmanan, and Minu C. mathews. "A Review of Laser Applications in Orthodontics." Cross Current International Journal of Medical and Biosciences 3, no. 5 (2021): 48–50. http://dx.doi.org/10.36344/ccijmb.2021.v03i05.001.

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Lasers have been widely used in most fields of dentistry for many years, and they have recently gained popularity in orthodontics. Its use has allowed orthodontists to overcome some of the difficulties associated with traditional orthodontic treatment procedures. These include direct chair side clinical orthodontic procedures, adjunctive orthodontic and laboratory procedures. This review article is about the applications of lasers in field of orthodontics.
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V, Manisha, and Nallakunta Rajesh. "CAD/CAM in Orthodontics –A Magnanimous Journey." International Journal of Dental Materials 05, no. 01 (2023): 09–12. http://dx.doi.org/10.37983/ijdm.2023.5102.

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Orthodontics is one branch of dentistry which deals with dynamic manipulation and function of the stomatognathic system. Likewise, it has to witness the dynamic changes in its diagnosis method and treatment planning. The field of orthodontics has witnessed many revolutionary techniques and evolved enormously in terms of benefiting the patient. CAD/CAM is one promising methodology that has shown a significant impact in modern dentistry and surpassed some of the challenges an orthodontist has been facing all these years. It has changed the view through which we see the patient’s condition. The application of 3D technology allows the practitioner and patient to utilize virtual treatment planning software to better identify case objectives and visualize treatment outcomes. CAD/CAM has many applications in orthodontics, which include aids for diagnosis and treatment planning, clear aligner treatment, customized lingual appliances, customized brackets with patient-specific torque, machine-milled indirect bonding jigs, robotically bent archwires, indirect bonding systems, customization of orthodontic appliances like distalization appliance etc., Acceleration of orthodontic treatment (OT) has received growing attention in recent years, especially in adult patients.Digital workflow is the current trend in orthodontic practice and has speckled every aspect of orthodontics in terms of documentation, study casts, analysis of dental malocclusion, smile designing, treatment planning and fabrication of orthodontic appliances. The current article aimed to establish a narrative description of the digital workflow and applications of the CAD/CAM process in Orthodontics.
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Zakrzewski, Wojciech, Maciej Dobrzynski, Wojciech Dobrzynski, et al. "Nanomaterials Application in Orthodontics." Nanomaterials 11, no. 2 (2021): 337. http://dx.doi.org/10.3390/nano11020337.

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Nanotechnology has gained importance in recent years due to its ability to enhance material properties, including antimicrobial characteristics. Nanotechnology is applicable in various aspects of orthodontics. This scientific work focuses on the concept of nanotechnology and its applications in the field of orthodontics, including, among others, enhancement of antimicrobial characteristics of orthodontic resins, leading to reduction of enamel demineralization or control of friction force during orthodontic movement. The latter one enables effective orthodontic treatment while using less force. Emphasis is put on antimicrobial and mechanical characteristics of nanomaterials during orthodontic treatment. The manuscript sums up the current knowledge about nanomaterials’ influence on orthodontic appliances.
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Makkar, Mohit, Astitav Mittal, Ashish Gupta, and Nazia Beg. "Insight into applications of robotics in orthodontics: A review article." IP Indian Journal of Orthodontics and Dentofacial Research 9, no. 1 (2023): 20–25. http://dx.doi.org/10.18231/j.ijodr.2023.005.

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There is always room for improvement in the effectiveness and efficiency of orthodontic appliances. The standard of oral health would change as a result of improved orthodontic appliances and general dental care. Robotics in Orthodontics has lead it’s way after its successful use in dentistry, medical and industrial fields. Aim of using robotics is to improvise in manner of precision and saving time for orthodontic appliances. A literature review was performed using electronics searching methods for the robotics and orthodontics. Data acquired has lead to the compilation of this review article. The article sums up research and development of robotics and orthodontics in association. Future research has also been summarised.
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Wang, Qing, Ziran Jiang, Zhilun Xue, Wulin He, and Zhiwei He. "Application of Mathematical Model in Orthodontics." Mobile Information Systems 2022 (September 16, 2022): 1–12. http://dx.doi.org/10.1155/2022/5286225.

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With the development of digital information technology and big data technology, the medical industry has also undergone tremendous changes. Traditional medical treatment mainly relies on the technical experience of the attending doctor for treatment, and there is no sophisticated instrument or scientific analysis system to assist in treatment. With the improvement of people’s living standards, people’s attention to teeth has increased significantly. Traditional orthodontics is based on the subjective judgment of orthodontists and manual treatment. Due to the differences in the experience of orthodontists, the traditional orthodontic effect is often very poor. Using digital information and big data technology to carry out quantitative diagnosis and treatment analysis of teeth, 3D modeling, and simulation of prosthesis, personalized treatment of the prosthesis model, and finally applied to orthodontics, digital-based orthodontics make the orthodontic diagnosis and treatment process evidence-based, safer, and more effective. This article compares orthodontics and traditional oral orthodontics based on the mathematical model, to analyze the comfort of orthodontics, the aesthetics of orthodontics, the matching degree of aligners, and the stability of the environment in the periodontal ligament. It is concluded that the average orthodontic comfort based on the mathematical model is 85.6%, and the average aesthetic degree is 64.0%, which are more than 20% better than traditional orthodontics. It is also superior to traditional orthodontics in terms of the degree of matching of the appliance and the stability of the environment in the periodontal ligament. Therefore, the combination of mathematical models and orthodontics can lead to better orthodontic results.
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Mobeen, Nausheen, Shreya Kishore, Rasiga Gandhi, Sangeetha Duraisamy, and Ravi K. "Biosafety of Nanoparticles Used in Orthodontics - A Literature Review." Journal of Evolution of Medical and Dental Sciences 10, no. 32 (2021): 2658–64. http://dx.doi.org/10.14260/jemds/2021/543.

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Nanotechnology is the science of manipulating matter, measured in the billionths of a nanometer, roughly the size of two or three atoms. It is widely used in our day-today life including its use in medicine and is considered as a vital current technology of the 21st century based on its economic and scientific potential. Its application is being experimented in various domains in orthodontics, from surface coatings to the development of novel materials. Orthodontic materials must have specific characteristics such as biological safety, functionality, and adequate tissue response. They have to pass specific biocompatibility tests to meet regulatory standards. Any material used in oral cavity might encourage unnecessary disturbance due to its complex and varied environment. The nanomaterials have many advantages in the field of orthodontics, especially with improved mechanical and antimicrobial properties. Nanoparticles can easily penetrate tissues and can affect biological behaviours at different levels. The introduction of nanotechnology gives better opportunities to both patient and orthodontist to new physicochemical, mechanical, and antibacterial properties of nanosized materials and can be used in coating orthodontic wires, elastomeric ligatures, and brackets, producing shape memory polymers and orthodontic bonding materials. The present review article focuses on the application of nanoparticles in orthodontics. This article presents a brief overview of nanotechnology, types of nanoparticles, biological safety of different nanoparticles used in orthodontics and their applications in the field of dentistry and orthodontics. KEY WORDS Nanoparticles, Biocompatibility, Orthodontics, Nanoscience
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Philip, Sachin, Varun Goyal, Gurkeerat Singh, et al. "Robotic Applications in Orthodontics: Overview of Existing Research." SVOA Dentistry 4, no. 6 (2023): 273–75. http://dx.doi.org/10.58624/svoade.2023.04.0161.

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Malocclusion is the world's third most common oral ailment. The fixed orthodontic procedure is now the most successful treatment strategy for malocclusion. Archwire bending is an important part of orthodontic therapy. However, because to the great stiffness and exceptional flexibility of orthodontic wire, it is a very difficult task. The old method of obtaining the created archwire curve is dependent on manual operation, which would bring various errors induced by human causes. Customised archwires are required in clinics for lingual orthodontics treatment. Previously, only expert orthodontists could physically bend these archwires. This is a pattern demands specialised skill training, precision, and extensive chairside time, but cannot guarantee the accuracy of appliances. So, what are the most recent developments?
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Pulatov Khamidullo Talyat Ugli. "The Role of Cephalometry in The Diagnosis of Orthodontic Patients." Texas Journal of Medical Science 26 (November 8, 2023): 61–62. http://dx.doi.org/10.62480/tjms.2023.vol26.pp61-62.

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Orthodontics is a department of dentistry that focuses on the alignment and positioning of enamel and jaws to acquire top of the line oral fitness and function. To supply high quality orthodontic treatment, correct prognosis is crucial. The use of cephalometry, a specialised imaging technique, performs a pivotal function in evaluating and diagnosing orthodontic patients. This article objectives to spotlight the importance of cephalometry in orthodontic diagnosis, showcasing its advantages and applications.
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Borysenko, A., I. Batig, N. Kuzniak, and V. Batig. "Influence of orthodontic treatment on periodont (literature review)." SUCHASNA STOMATOLOHIYA 110, no. 1-2 (2022): 68. http://dx.doi.org/10.33295/1992-576x-2022-1-2-68.

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Summary. Today, the need for orthodontic treatment of anomalies of tooth position and occlusion is constantly growing. In the practice of orthodontics use a variety of orthodontic appliances. The most widely used non-removable appliances that allow treatment of adult patients. However, dentists often intensify orthodontic appliances to speed up the end of treatment result. Unfortunately, this has a very adverse effect on periodontal tissues. This article analyzes the data of the dental literature on the impact of orthodontic treatment on the hard tissues of the teeth and, especially, on the periodontium. The main factors of periodontal damage during orthodontic treatment are determined. An analysis of possible areas of prevention of periodontal disease during orthodontic treatment was presented. Key words: orthodontic treatment, oral cavity, periodontium, periodontal lesions, prevention.
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