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DICOM Structured Report to Track Patient's Radiation Dose to Organs from Abdominal CT Exam

机译:DICOM结构化报告可跟踪患者从腹部CT检查到器官的辐射剂量

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The dramatic increase of diagnostic imaging capabilities over the past decade has contributed to increased radiation exposure to patient populations. Several factors have contributed to the increase in imaging procedures: wider availability of imaging modalities, increase in technical capabilities, rise in demand by patients and clinicians, favorable reimbursement, and lack of guidelines to control utilization. The primary focus of this research is to provide in depth information about radiation doses that patients receive as a result of CT exams, with the initial investigation involving abdominal CT exams. Current dose measurement methods (i.e. CTDI_(vol) Computed Tomography Dose Index) do not provide direct information about a patient's organ dose. We have developed a method to determine CTDI_(vol) normalized organ doses using a set of organ specific exponential regression equations. These exponential equations along with measured CTDI_(vol) are used to calculate organ dose estimates from abdominal CT scans for eight different patient models. For each patient, organ dose and CTDI_(vol) were estimated for an abdominal CT scan. We then modified the DICOM Radiation Dose Structured Report (RDSR) to store the pertinent patient information on radiation dose to their abdominal organs.
机译:在过去的十年中,诊断成像功能的显着提高导致增加了对患者人群的辐射暴露。导致成像程序增加的因素有几个:成像方式的更广泛使用,技术能力的提高,患者和临床医生的需求增加,有利的报销以及缺乏控制利用率的指南。这项研究的主要重点是提供有关患者因CT检查而接受的辐射剂量的深入信息,而最初的研究则涉及腹部CT检查。当前的剂量测量方法(即CTDI_(vol)计算机断层摄影剂量指数)无法提供有关患者器官剂量的直接信息。我们已经开发出一种使用一组特定于器官的指数回归方程来确定CTDI_(vol)标准化器官剂量的方法。这些指数方程式与测得的CTDI_(vol)一起用于从针对八种不同患者模型的腹部CT扫描中计算器官剂量估计值。对于每位患者,估计腹部CT扫描的器官剂量和CTDI_(vol)。然后,我们修改了DICOM放射剂量结构报告(RDSR),以存储有关患者腹部器官放射剂量的相关信息。

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