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Comparison of radiation dose for implant imaging using conventional spiral tomography, computed tomography, and cone-beam computed tomography

机译:使用常规螺旋断层扫描,计算机断层扫描和锥形束计算机断层扫描的植入成像的辐射剂量的比较

摘要

Objective: The objective of this study was to compare typical patient radiation dose delivered in implant imaging with spiral computed tomography (CT), conventional spiral tomography, and cone-beam CT (CBCT). Study design: The Scanora (Orion Corporation Soredex, Helsinki, Finland), Spiral HiSpeed/Fxi (General Electric, Milwaukee, WI), and Classic iCAT (Imaging Sciences International, Hatfield, PA) units were selected to represent conventional spiral tomography, spiral CT, and CBCT, respectively. Thermoluminescent dosimeters were used in a Rando phantom to measure radiation-absorbed doses to the lenses, parotid glands, submandibular glands, sublingual gland, and the thyroid for maxillary and mandibular implant imaging techniques. Results: Spiral CT delivered the highest absorbed dose, whereas CBCT delivered the lowest in both maxillary and mandibular implant scans. The salivary glands received the highest absorbed doses. Scanora delivered lower radiation doses than CBCT when the anterior region of the maxilla or mandible was irradiated. Conclusion: In implant imaging, CT delivers the highest radiation dose to the salivary glands, whereas the CBCT system studied delivers the lowest dose. Irrespective of imaging modality, during implant imaging as conducted for this study, salivary glands receive most radiation. © 2009 Mosby, Inc. All rights reserved.
机译:目的:本研究的目的是比较在植入物成像中使用螺旋计算机断层扫描(CT),常规螺旋断层扫描和锥形束CT(CBCT)进行的典型患者放射剂量。研究设计:选择Scanora(Orion Corporation Soredex,芬兰赫尔辛基),Spiral HiSpeed / Fxi(通用电气,密尔沃基,WI)和Classic iCAT(影像技术国际,Hatfield,PA)单元代表传统的螺旋层析成像,螺旋成像CT和CBCT。在兰多体模中使用热发光剂量计来测量晶状体,腮腺,下颌下腺,舌下腺和甲状腺的辐射吸收剂量,以用于上颌和下颌植入物成像技术。结果:在上颌和下颌种植体扫描中,螺旋CT吸收剂量最高,而CBCT吸收剂量最低。唾液腺吸收的剂量最高。当对上颌骨或下颌骨的前部区域进行照射时,Scanora的辐射剂量低于CBCT。结论:在植入物成像中,CT向唾液腺提供最高的辐射剂量,而所研究的CBCT系统则提供最低的剂量。不论成像方式如何,在本项研究的植入物成像过程中,唾液腺接受的辐射最多。 ©2009 Mosby,Inc.保留所有权利。

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  • 作者

    Chau ACM; Fung K;

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  • 年度 2009
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  • 原文格式 PDF
  • 正文语种 eng
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