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Understanding automated dose control in dynamic X-ray imaging systems

机译:了解动态X射线成像系统中的自动剂量控制

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摘要

Learning Objectives: To understand the inner workings of the automatic dose rate control (ADRC) which controls radiographic factors during interventional procedures. This understanding will help clinicians utilise the X-ray system in the most optimal manner – to maximise image quality with the lowest possible radiation dose to both the patient and staff. Background: Modern interventional X-ray systems control X-ray output via an automated closed-loop control system. The ADRC makes systems straightforward to use in clinical practice, maintaining acceptable patient doses whilst providing adequate image quality and ensuring the X-ray tube and generator are operated within their specified working parameters. This poster aims to benefit both clinical staff and hospital physicists by providing information on ADRC operation. Procedure Details: The different ADRC operational modes (fluoroscopy, cine and digital subtraction angiography) will be described, with details provided on how differences in patient size, imaging geometry, and user actions affect X-ray output. The constraints that the ADRC operates under will be explained, including X-ray tube limits and legal radiation dose limits. The complex relationship between patient dose and image quality will be described with reference to how the ADRC must balance the two. Data from simulations and system measurements will be used to illustrate the description. Conclusion: An understanding of ADRC operating mechanisms by clinical users facilitates improved X-ray system usage, which can lead to lower radiation doses and improved image quality. It also allows improved clinical support and equipment testing by physicists.
机译:学习目标:了解自动剂量率控制(ADRC)的内部工作原理,该方法在介入治疗过程中控制射线照相因素。这种理解将帮助临床医生以最佳方式利用X射线系统-以最低的对患者和医护人员的辐射剂量最大化图像质量。背景技术:现代介入X射线系统通过自动闭环控制系统控制X射线输出。 ADRC使系统易于在临床实践中使用,在保持可接受的患者剂量的同时提供足够的图像质量,并确保X射线管和发生器在其指定的工作参数范围内运行。该海报旨在通过提供有关ADRC操作的信息使临床人员和医院物理学家受益。程序详细信息:将描述不同的ADRC操作模式(荧光检查,电影和数字减影血管造影),并提供有关患者大小,成像几何形状和用户动作差异如何影响X射线输出的详细信息。将说明ADRC的操作限制,包括X射线管限制和合法的辐射剂量限制。将参考ADRC如何平衡两者来描述患者剂量和图像质量之间的复杂关系。来自仿真和系统测量的数据将用于说明说明。结论:临床用户对ADRC操作机制的了解有助于改进X射线系统的使用,从而可以降低辐射剂量并提高图像质量。它还可以改善物理学家的临床支持和设备测试。

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