The Effect of 1.5 Tesla MRI on Microleakage and Thermal Stability of Stainless Steel and Titanium Orthodontic Brackets: An in vitro Study
Maryam Paknahad, Yasaman Ghaedi, Fatemeh Hajipour, Shabnam Ajami

TL;DR
This study finds that 1.5 Tesla MRI exposure does not significantly affect orthodontic brackets made of stainless steel or titanium.
Contribution
The study provides new empirical evidence on the safety of MRI exposure for orthodontic brackets.
Findings
MRI exposure did not significantly increase microleakage in stainless steel or titanium brackets.
No significant temperature changes were observed in brackets after MRI exposure.
Fixed orthodontic appliances can remain in place during MRI without compromising bond integrity.
Abstract
Fixed orthodontic appliances, such as stainless steel and titanium brackets, might become exposed to magnetic resonance imaging (MRI) during treatment. However, the effects of MRI on microleakage and thermal changes in these brackets have not been thoroughly investigated. This study addresses these gaps to ensure safety and efficacy in patients undergoing orthodontic treatment while exposed to MRI. This study investigates and compares the effects of 1.5 tesla (T) MRI exposure on microleakage and temperature changes in stainless steel and titanium orthodontic brackets, evaluating their safety and bond integrity during orthodontic treatment. In this in vitro study, forty non-carious, freshly extracted human maxillary premolars were randomly divided into stainless steel and titanium bracket groups (n=20). Each group was further subdivided into MRI-exposed (case) and non-exposed (control)…
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Taxonomy
TopicsOrthodontics and Dentofacial Orthopedics · Dental Erosion and Treatment · Electromagnetic Fields and Biological Effects
