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Artykuły w czasopismach na temat "Moyers Analysis; Study Plaster Models"

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Dikshit, Parajeeta, Senchhema Limbu, Sunita Khanal, Manisha Malla, and Lok Raj Dhakal. "Comparison of Aboul-Azm and Fouda’s approach of mixed dentition analysis with Moyers technique." Birat Journal of Health Sciences 7, no. 1 (2022): 1718–22. http://dx.doi.org/10.3126/bjhs.v7i1.45822.

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Introduction: The prediction of mesiodistal widths of unerupted canines and premolars are an important aspect of analysis of the developing permanent dentition. Various radiographic as well as non radiographic methods have been tested and researched to predict the width of these teeth. The Moyers mixed dentition analysis is a universally accepted technique. Whereas Aboul-Azm and Fouda’s approach of mixed dentition analysis is a concept that derives the measurement from equation based on the buccolingual width of the permanent first molars. It does not require any table for the prediction. Obje
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Kaur, Avninder, Reetu Singh, Sudhir Mittal, Sunila Sharma, Aditi Bector, and Surabhi Awasthi. "Evaluation and Applicability of Moyers Mixed Dentition Arch Analysis in Himachal Population." Dental Journal of Advance Studies 02, no. 02 (2014): 096–104. http://dx.doi.org/10.1055/s-0038-1671993.

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Abstract Introduction: The determination of a tooth-size to arch length discrepancy in mixed dentition requires an accurate prediction of the mesiodistal width of the unerupted permanent teeth. The Moyers mixed dentition space analysis is the non-radiographic method for detecting tooth-size arch length discrepancies. Moyers analysis was developed for North American children. Anthropological studies reveal that tooth size varies among different races and ethnicities. Aim: The present study was aimed to determine the applicability of Moyers mixed dentition arch analysis in children of Baddi, Him
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Sennimalai, Karthik, and Madhanraj Selvaraj. "Orthodontic model analysis in the permanent dentition: A review of past, and current methods." IP Indian Journal of Orthodontics and Dentofacial Research 8, no. 4 (2022): 220–26. http://dx.doi.org/10.18231/j.ijodr.2022.038.

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The study models are regarded as the gold standard tool in orthodontics since they aid in the diagnosis, treatment planning and monitoring of the changes that may occur throughout treatment. Besides these, plaster models are also used to monitor growth and clinical audits. A study model accurately replicates the teeth, surrounding soft tissues and occlusion. Traditionally, the orthodontic study models have been used to measure the overjet and overbite, tooth size, arch length, arch width, the curve of Wilson and Spee, space analysis and diagnostic setup. However, plaster models are still prefe
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Tancu, Ana Maria Cristina, Mihaela Pantea, Alexandra Totan, Mihaela Tanase, and Marina Imre. "3D Printed Dental Models A comparative analysis." Materiale Plastice 56, no. 1 (2019): 51–54. http://dx.doi.org/10.37358/mp.19.1.5121.

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The aim of this study is to compare two different methods used for obtaining printed dental models -intraoral scanning and extraoral scanning; the comparative analysis was made in correlation to the accuracy of the traditional plaster cast model. Nine dental models were obtained: three plaster cast ones, three printed after intraoral scanning and there printed after impression scanning. A total of 137 measurements (arch and tooth measurements) were done on the three types of models and a statistical evaluation was performed (t-test, Fisher Test). Our results highlighted that 3D printed dental
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Goonewardene, Roy W., Mithran S. Goonewardene, John M. Razza, and Kevin Murray. "Accuracy and validity of space analysis and irregularity index measurements using digital models." Australasian Orthodontic Journal 24, no. 2 (2008): 83–90. http://dx.doi.org/10.2478/aoj-2008-0012.

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Abstract Background Digital copies of study models may avoid the storage and retrieval issues of plaster study models, but measurements made on digital models may not be as accurate as measurements made on traditional study models. Aim To determine the reliability and validity of tooth size–arch length discrepancies (TALD), irregularity indices and arch lengths (four- and six-segment analyses) measured directly on study models with digital calipers with the same measurements measured on digital copies of the study models with proprietary software. Methods The irregularity indices and TALDs (fo
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Peh, Yew Jia, Ming Tak Chew, Hung Chew Wong, and Mimi Yow. "Validity and Reliability of Peer Assessment Rating Index Measurement Derived from Digital and Plaster Models." APOS Trends in Orthodontics 8 (September 1, 2018): 131–38. http://dx.doi.org/10.4103/apos.apos_39_18.

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Aims The aim of the study was to determine the validity and reliability of Peer Assessment Rating (PAR) index score derived from digital and plaster models of the same patient. Subjects and Methods Thirty orthodontic plaster study models were digitalized using the 3Shape R700™ Orthodontic 3D scanner. PAR Index scoring was carried out on both the plaster and digital models by one independent examiner calibrated in the PAR Index. The measurements were repeated at a second sitting. Measurements were made on plaster models with the PAR Index ruler and on digital models with the 3Shape OrthoAnalyze
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Bedi, Prince, Divya Shetty, Bhupender Singh, Ayushi Nagar, and Payal Sharma. "Orthodontics in 3D: Unveiling the precision of printed models vs plaster traditions." Journal of Contemporary Orthodontics 9, no. 1 (2025): 111–16. https://doi.org/10.18231/j.jco.2025.015.

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Orthodontic treatment relies heavily on accurate diagnosis and treatment planning. Traditionally, study casts obtained from plaster models have been an essential component of orthodontic records. However, advancements in three-dimensional imaging and modeling have introduced digital alternatives, offering ease of access, storage, and transfer of patient information. To compare the accuracy of linear measurements obtained from 3D printed models with those taken from plaster study models and identify the most reliable type of printed model. The study was conducted on ten patients requiring fixed
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Lo Giudice, Antonino, Simone Muraglie, Stefano Martina, Vincenzo Ronsivalle, and Rosalia Leonardi. "Accuracy and Reliability of Space Analysis Measurements in Digital Models with Different Degrees of Crowding." Open Dentistry Journal 13, no. 1 (2019): 505–11. http://dx.doi.org/10.2174/1874210601913010505.

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Background: With the introduction of digital systems in the orthodontic field, it is not still clear if such systems can accurately substitute analogical systems in the diagnosis and orthodontic treatment plane. Objective: The study compared the Arch Length Discrepancy (TALD) and Bolton ratio obtained from plaster dental casts (gold standard) and digital models and tested the null hypothesis that TALD and Bolton ratio measurements in digital models are affected by the degree of crowding. Methods: The sample included 40 dental models divided into five sub-groups, according to the American Board
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Petrović, Valentina, Martina Šlaj, Mia Buljan, Tadej Čivljak, Ana Zulijani, and Berislav Perić. "Comparison of Tooth Size Measurements in Orthodontics Using Conventional and 3D Digital Study Models." Journal of Clinical Medicine 13, no. 3 (2024): 730. http://dx.doi.org/10.3390/jcm13030730.

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(1) Background: The objective of this study was to assess which digitization method produces the biggest deviation in the 3D images of tooth size from plaster models made using alginate impressions, which are considered the gold standard in orthodontics. (2) Methods: The sample used in this study included 30 subjects (10 males and 20 females). Measurements were made on four types of models: (1) digital models obtained through intraoral scanning and digitized models of plaster cast made from (2) alginate impressions, (3) silicone impressions, and (4) conventional plaster models. Mesio-distal (M
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Kardach, Hubert, Anna Szponar-Żurowska, and Barbara Biedziak. "A Comparison of Teeth Measurements on Plaster and Digital Models." Journal of Clinical Medicine 12, no. 3 (2023): 943. http://dx.doi.org/10.3390/jcm12030943.

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(1) Background: Modern imaging methods and constantly developing technologies extend the range of diagnostic tools in medicine and in orthodontics. Thanks to them, scientists and doctors can use devices designed to diagnose 3D structures of the human body. The aim of the study was to assess the usefulness of digital orthodontic models as a diagnostic tool in the work of an orthodontist through a comparative analysis of the value of orthodontic measurements made on traditional plaster models and virtual models. (2) Methods: A total of 80 sets of models were made, including 40 sets of plaster mo
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Rozprawy doktorskie na temat "Moyers Analysis; Study Plaster Models"

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Lundner, Aaron S. "Comparison of comprehensive cast analysis on plaster and digital study models." 2006. http://proquest.umi.com/pqdweb?did=1075700611&sid=4&Fmt=2&clientId=39334&RQT=309&VName=PQD.

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Thesis (M.S.)--State University of New York at Buffalo, 2006.<br>Title from PDF title page (viewed on Aug. 03, 2006) Available through UMI ProQuest Digital Dissertations. Thesis adviser: Lampasso, Judith D. Includes bibliographical references.
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Raporty organizacyjne na temat "Moyers Analysis; Study Plaster Models"

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Welch, David, and Gregory Deierlein. Technical Background Report for Structural Analysis and Performance Assessment (PEER-CEA Project). Pacific Earthquake Engineering Research Center, University of California, Berkeley, CA, 2020. http://dx.doi.org/10.55461/yyqh3072.

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This report outlines the development of earthquake damage functions and comparative loss metrics for single-family wood-frame buildings with and without seismic retrofit of vulnerable cripple wall and stem wall conditions. The underlying goal of the study is to quantify the benefits of the seismic retrofit in terms of reduced earthquake damage and repair or reconstruction costs. The earthquake damage and economic losses are evaluated based on the FEMA P-58 methodology, which incorporates detailed building information and analyses to characterize the seismic hazard, structural response, earthqu
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