Toward Enhanced Machine-Based Release in X-ray Sterilization.

Q4 Medicine Biomedical Instrumentation and Technology Pub Date : 2024-01-01 Epub Date: 2024-02-07 DOI:10.2345/0899-8205-58.1.18
Damien Prieels, Cody Wilson, Florent Kuntz, Josef Mittendorfer, John Logar
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Abstract

Trends toward the use of irradiator parameter release (also called machine-based release) put pressure on equipment manufacturers to guarantee accuracy and reliability of monitored process parameters. In the specific case of X-ray processing, relevance of these monitored parameters is questionable due to the additional difficulty coming from the fact that the X-ray converter does not have associated parameters or a monitored feedback mechanism. To bridge this gap, this article presents a novel method to verify in real-time consistency of certain X-ray field properties. It covers the description of an X-ray flux monitor and its experimental characterization. The proposed detector can be used as a control and monitoring tool in addition to the conventional "passive" dosimetry per ISO 11137-1 and ISO 11137-3. It can detect photon flux deviation on the order of magnitude of 1%. Its performance would allow real-time monitoring of each pallet being processed and ensure that the correct X-ray beam is directed to the product. Further, the known response of the detector to a product can serve as a validation that the correct product is in front of the beam. Moreover, a detector of this type could contribute to moving from the current dosimetric release to irradiator parameter release. Compared with current practices, benefits would include an increased number of control points used to verify process conformity, real-time information on the radiation field (process output validation), limited manual handling of dosimeters, and verification that the product treated is the same as the performance qualification dose-mapped product.

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在 X 射线灭菌中实现基于机器的强化释放。
使用辐照装置参数释放(也称为基于机器的释放)的趋势给设备制造商带来了压力,要求他们保证监控工艺参数的准确性和可靠性。在 X 射线加工的特殊情况下,由于 X 射线转换器没有相关参数或监控反馈机制,因此这些监控参数的相关性值得怀疑。为了弥补这一缺陷,本文提出了一种新方法来实时验证某些 X 射线场特性的一致性。文章介绍了 X 射线流量监测器及其实验特性。除了按照 ISO 11137-1 和 ISO 11137-3 标准进行传统的 "被动 "剂量测定外,该探测器还可用作控制和监测工具。它可以检测到 1%数量级的光子通量偏差。它的性能允许对每个正在处理的托盘进行实时监控,并确保正确的 X 射线束照射到产品上。此外,探测器对产品的已知响应可以验证光束前方是否有正确的产品。此外,这种探测器还有助于从目前的剂量发布转变为辐照装置参数发布。与目前的做法相比,它的好处包括增加了用于验证流程是否符合要求的控制点数量,实时提供辐射场信息(流程输出验证),限制剂量计的人工处理,以及验证所处理的产品与性能鉴定剂量映射产品相同。
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来源期刊
Biomedical Instrumentation and Technology
Biomedical Instrumentation and Technology Computer Science-Computer Networks and Communications
CiteScore
1.10
自引率
0.00%
发文量
16
期刊介绍: AAMI publishes Biomedical Instrumentation & Technology (BI&T) a bi-monthly peer-reviewed journal dedicated to the developers, managers, and users of medical instrumentation and technology.
期刊最新文献
Effect of Gamma and X-ray Irradiation on Polymers Commonly Used in Healthcare Products. Effect of Vaporized Hydrogen Peroxide and Nitrogen Dioxide Sterilization on Nitinol. Toward Enhanced Machine-Based Release in X-ray Sterilization. Beyond Endoscopes: Pilot Study of Surgical Instrument Lumen Inspection. Advantages and Limitations of Physical and Virtual Dose Mapping.
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