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Effect of multiple reuse of commonly used implant analogs on the changes in the distance between internal threads: An in vitro study

AIM: To assess the effect of multiple reuse of implant analogs of three different materials (SS, Ti, Al) on the changes in the distance between internal threads of implant analog by using two die materials at different time intervals (0, 3(rd), 6(th), 9(th), and 12(th)). SETTINGS AND DESIGN: An in v...

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Autores principales: Yalavarthy, Ravi Shankar, Alla, Jagadeesh Naidu, Kalluri, Srinivas, Mahadevan, Shiva Shankar, Kumar, Satyendra, Ronanki, Sunitha
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Wolters Kluwer - Medknow 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8884351/
https://www.ncbi.nlm.nih.gov/pubmed/36510947
http://dx.doi.org/10.4103/jips.jips_335_21
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author Yalavarthy, Ravi Shankar
Alla, Jagadeesh Naidu
Kalluri, Srinivas
Mahadevan, Shiva Shankar
Kumar, Satyendra
Ronanki, Sunitha
author_facet Yalavarthy, Ravi Shankar
Alla, Jagadeesh Naidu
Kalluri, Srinivas
Mahadevan, Shiva Shankar
Kumar, Satyendra
Ronanki, Sunitha
author_sort Yalavarthy, Ravi Shankar
collection PubMed
description AIM: To assess the effect of multiple reuse of implant analogs of three different materials (SS, Ti, Al) on the changes in the distance between internal threads of implant analog by using two die materials at different time intervals (0, 3(rd), 6(th), 9(th), and 12(th)). SETTINGS AND DESIGN: An in vitro study. MATERIALS AND METHODOLOGY: Three commonly used implant analog materials (stainless steel, titanium, and aluminum) and two Type– IV die stone materials (Kalrock and Zhermack Elite) were used to make the samples. A total of sixty implant analogs (20 each), sixty corresponding abutments (20 each) and 720 screws (240 each) were taken, which includes stainless steel, titanium, and aluminum manufactured by Adin, Genesis, and Equinox/Myriad plus, respectively. In addition, silicone (light body consistency) was used to make an impression for the internal thread of implant analogs. The obtained samples were tested for changes in the internal threads of implant analogs while reusing the implant analogs at the interval of times (0, 3(rd), 6(th), 9(th), and 12(th)) using a stereomicroscope at ×50. Here, the measured values at “0” interval were considered the control group. STATISTICAL ANALYSIS USED: The values obtained were statistically analyzed using One way ANOVA, independent t test, and dependent t test for multiple comparisons. RESULTS: Based on the results obtained, the overall comparison of the mean distance between threads 1–2, 3–4, and 5–6 on the replica of internal threads of the stainless steel, titanium, and aluminum implant analog materials at 1–2 has more decrease in distance from 0 to 12(th) intervals, at 3–4 has less amount of decrease in distance than thread distance at 1–2 from 0 to 12(th) intervals, and at 5–6 has very less decrease in distance than thread distance at 1–2 and 3–4 from 0 to 12(th) intervals. On order the mean distance reduction between threads is more at 1–2, followed to that less reduction at 3–4 and very less reduction at 5–6. This infers that the amount of increase in the distance between the internal threads of implant analog at 1–2 has more followed by 3–4 and 5–6, respectively. CONCLUSION: From the study, the following inferences are drawn: That the aluminum implant analog internal threads have more amount of increase in the distance between threads followed by stainless steel and titanium. Hence, among the three materials, titanium implant analogs were most efficient for reuse.
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spelling pubmed-88843512023-01-01 Effect of multiple reuse of commonly used implant analogs on the changes in the distance between internal threads: An in vitro study Yalavarthy, Ravi Shankar Alla, Jagadeesh Naidu Kalluri, Srinivas Mahadevan, Shiva Shankar Kumar, Satyendra Ronanki, Sunitha J Indian Prosthodont Soc Research AIM: To assess the effect of multiple reuse of implant analogs of three different materials (SS, Ti, Al) on the changes in the distance between internal threads of implant analog by using two die materials at different time intervals (0, 3(rd), 6(th), 9(th), and 12(th)). SETTINGS AND DESIGN: An in vitro study. MATERIALS AND METHODOLOGY: Three commonly used implant analog materials (stainless steel, titanium, and aluminum) and two Type– IV die stone materials (Kalrock and Zhermack Elite) were used to make the samples. A total of sixty implant analogs (20 each), sixty corresponding abutments (20 each) and 720 screws (240 each) were taken, which includes stainless steel, titanium, and aluminum manufactured by Adin, Genesis, and Equinox/Myriad plus, respectively. In addition, silicone (light body consistency) was used to make an impression for the internal thread of implant analogs. The obtained samples were tested for changes in the internal threads of implant analogs while reusing the implant analogs at the interval of times (0, 3(rd), 6(th), 9(th), and 12(th)) using a stereomicroscope at ×50. Here, the measured values at “0” interval were considered the control group. STATISTICAL ANALYSIS USED: The values obtained were statistically analyzed using One way ANOVA, independent t test, and dependent t test for multiple comparisons. RESULTS: Based on the results obtained, the overall comparison of the mean distance between threads 1–2, 3–4, and 5–6 on the replica of internal threads of the stainless steel, titanium, and aluminum implant analog materials at 1–2 has more decrease in distance from 0 to 12(th) intervals, at 3–4 has less amount of decrease in distance than thread distance at 1–2 from 0 to 12(th) intervals, and at 5–6 has very less decrease in distance than thread distance at 1–2 and 3–4 from 0 to 12(th) intervals. On order the mean distance reduction between threads is more at 1–2, followed to that less reduction at 3–4 and very less reduction at 5–6. This infers that the amount of increase in the distance between the internal threads of implant analog at 1–2 has more followed by 3–4 and 5–6, respectively. CONCLUSION: From the study, the following inferences are drawn: That the aluminum implant analog internal threads have more amount of increase in the distance between threads followed by stainless steel and titanium. Hence, among the three materials, titanium implant analogs were most efficient for reuse. Wolters Kluwer - Medknow 2022 2022-01-27 /pmc/articles/PMC8884351/ /pubmed/36510947 http://dx.doi.org/10.4103/jips.jips_335_21 Text en Copyright: © 2022 The Journal of Indian Prosthodontic Society https://creativecommons.org/licenses/by-nc-sa/4.0/This is an open access journal, and articles are distributed under the terms of the Creative Commons Attribution-NonCommercial-ShareAlike 4.0 License, which allows others to remix, tweak, and build upon the work non-commercially, as long as appropriate credit is given and the new creations are licensed under the identical terms.
spellingShingle Research
Yalavarthy, Ravi Shankar
Alla, Jagadeesh Naidu
Kalluri, Srinivas
Mahadevan, Shiva Shankar
Kumar, Satyendra
Ronanki, Sunitha
Effect of multiple reuse of commonly used implant analogs on the changes in the distance between internal threads: An in vitro study
title Effect of multiple reuse of commonly used implant analogs on the changes in the distance between internal threads: An in vitro study
title_full Effect of multiple reuse of commonly used implant analogs on the changes in the distance between internal threads: An in vitro study
title_fullStr Effect of multiple reuse of commonly used implant analogs on the changes in the distance between internal threads: An in vitro study
title_full_unstemmed Effect of multiple reuse of commonly used implant analogs on the changes in the distance between internal threads: An in vitro study
title_short Effect of multiple reuse of commonly used implant analogs on the changes in the distance between internal threads: An in vitro study
title_sort effect of multiple reuse of commonly used implant analogs on the changes in the distance between internal threads: an in vitro study
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8884351/
https://www.ncbi.nlm.nih.gov/pubmed/36510947
http://dx.doi.org/10.4103/jips.jips_335_21
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