Metal Artifact Reduction by Using MARS System of a CBCT Unit with Different Components of Fixed Orthodontic Appliances: An In vitro CBCT Analysis

Sheikh Zahid Nazir, Mohammad Mushtaq
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Abstract

Introduction: During Cone beam computed tomography (CBCT) imaging in the head and neck region of patients who are undergoing fixed orthodontic treatment, the different components of fixed orthodontic appliances can produce various metal artifacts which may degrade the diagnostic image quality in the region of interest. Therefore, the metal artifact reduction software (MARS) system can be used in most CBCT units to reduce the amount of artifacts generated from various fixed orthodontic appliance components including skeletal anchorage devices. Aims and objectives: The main purpose of this study was to quantitatively evaluate the effectiveness of MARS system of a CBCT unit in reducing the amount of artifacts generated by various fixed orthodontic appliance components during CBCT imaging. Materials and methods: Four dental arch shaped phantoms that were fabricated along with different fixed orthodontic appliance components (metal bracket, molar band, transpalatal arch, mini-implant) underwent CBCT scanning without and with the MARS setting option. After using the MARS system of a CBCT unit, the reduction in the amount of artifacts that were generated by various fixed orthodontic appliance component was calculated by using Google Colab software that utilized Python code and OpenCV system to generate a binary mask image. The resulting mask image highlights the areas where artifacts are detected, allowing for further analysis or visual inspection. The contours found within the mask image represent the boundaries of the artifact regions. Results: After calculating the percentage decrease in artifact area for each component of fixed orthodontic appliance, one-way analysis of variance (ANOVA) test was performed to compare the percentage decrease in artifact area for each component of fixed orthodontic appliances. *P-values are calculated using one-way analysis of variance ( p < 0.05). The percentage decrease in artifact area for different components of fixed orthodontic appliance ranged from 39.67% to 48.58%. The stainless steel bracket showed the significant artifact area reduction with a mean percentage decrease of 48.58% as compared to other components. Conclusion: The effect of MARS system in reducing the amount of metal artifacts generated varied according to the component type of fixed orthodontic appliance and, MARS system was more efficient for stainless steel brackets as compared to other components. CBCT imaging of head and neck region can be carried out without taking off the orthodontic appliances by applying MARS system which can significantly decrease the artifact area.
使用 CBCT 装置的 MARS 系统减少固定正畸矫治器不同组件的金属伪影:体外 CBCT 分析
简介:在对接受固定正畸治疗的患者的头颈部进行锥形束计算机断层扫描(CBCT)成像时,固定正畸装置的不同组件会产生各种金属伪影,从而降低相关区域的诊断图像质量。因此,金属伪影减少软件(MARS)系统可用于大多数 CBCT 设备,以减少包括骨骼固定装置在内的各种固定正畸装置部件所产生的伪影量。目的和目标:本研究的主要目的是定量评估 CBCT 设备的 MARS 系统在减少 CBCT 成像过程中各种固定正畸装置部件产生的伪影数量方面的有效性。材料和方法四个牙弓形状的模型与不同的固定正畸装置部件(金属托槽、臼齿带、跨腭弓、微型种植体)一起,在未使用和使用 MARS 设置选项的情况下进行了 CBCT 扫描。在使用 CBCT 设备的 MARS 系统后,使用谷歌 Colab 软件计算了各种固定正畸装置组件产生的伪影的减少量,该软件利用 Python 代码和 OpenCV 系统生成二进制掩膜图像。生成的遮罩图像会突出显示检测到伪影的区域,以便进行进一步分析或视觉检查。掩膜图像中的轮廓线代表了伪影区域的边界。结果在计算出固定矫正器各组件的伪影面积减少百分比后,进行了单因素方差分析(ANOVA)测试,以比较固定矫正器各组件的伪影面积减少百分比。*P 值通过单因素方差分析计算得出(P < 0.05)。固定正畸装置不同组件的伪影面积减少百分比从 39.67% 到 48.58% 不等。与其他组件相比,不锈钢托槽明显减少了伪影面积,平均百分比减少了 48.58%。结论MARS 系统在减少金属伪影方面的效果因固定正畸装置的组件类型而异,与其他组件相比,MARS 系统对不锈钢托槽的效果更好。应用 MARS 系统可以在不摘下正畸装置的情况下对头颈部区域进行 CBCT 成像,从而显著减少伪影面积。
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