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Influence of conventional and extended CT scale range on quantification of Hounsfield units of medical implants and metallic objects

机译:常规和扩展CT级范围对医用植入物和金属物体的量化单位量化的影响

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We report on the suitability of two different ranges of Hounsfield units (HU) in computed tomography (CT) for the quantification of metallic components of active implantable medical devices (AIMD). The conventional Hounsfield units (CHU) range, which is traditionally used in radiology, is well suited for tissue but suspected inappropriate for metallic materials. Precise HU values are notably beneficial in radiotherapy (RT) for accurate dose calculations, thus for the safety of patient carrying implants. Some of today’s CT machines offers an extended Hounsfield units (EHU) range. This study presents CT acquisitions of a water phantom containing various metallic discs and an implantable-cardioverter defibrillator (IPG). We show that the comparison of HU values at EHU and CHU ranges clearly reveals the superiority and accuracy of EHU. Some geometrical discrepancies perpendicular to slices are observed. At EHU metal artifact reduction algorithms (MAR) underestimates HU values rendering MAR potentially inappropriate for RT.
机译:我们在计算断层扫描(CT)中的两个不同范围的Hounsfield单元(HU)的适用性报告了有源可植入医疗器械(AIMD)的金属组分的定量。传统的Hounsfield单元(CHU)范围,传统上用于放射学,非常适合组织,但怀疑不适合金属材料。精确的HU值在放射疗法(RT)中是有益的,以便精确剂量计算,从而用于患者携带植入物的安全性。今天的一些CT机器提供延长的Hounsfield单位(EHU)范围。本研究介绍了含有各种金属椎间盘的水体模型和可植入的 - 心脏过热器除颤器(IPG)的CT采集。我们表明,尤湖和楚的HU值的比较显着揭示了尤乌的优越性和准确性。观察到垂直于切片的一些几何差异。在尤乌金属伪影减少算法(MAR)下低估了HU值呈现MAS可能不适合RT。

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