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Minimizing material damage using low temperature irradiation

机译:使用低温辐射将材料损坏降至最低

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摘要

Scientific advancements in healthcare driven both by technological breakthroughs and an aging and increasingly obese population have lead to a changing medical device market. Complex products and devices are being developed to meet the demands of leading edge medical procedures. Specialized materials in these medical devices, including pharmaceuticals and biologies as well as exotic polymers present a challenge for radiation sterilization as many of these components cannot withstand conventional irradiation methods. The irradiation of materials at dry ice temperatures has emerged as a technique that can be used to decrease the radiation sensitivity of materials. The purpose of this study is to examine the effect of low temperature irradiation on a variety of polymer materials, and over a range of temperatures from 0 °C down to - 80 °C. The effectiveness of microbial kill is also investigated under each of these conditions. The results of the study show that the effect of low temperature irradiation is material dependent and can alter the balance between crosslinking and chain scission of the polymer. Low temperatures also increase the dose required to achieve an equivalent microbiological kill, therefore dose setting exercises must be performed under the environmental conditions of use.
机译:由于技术突破,人口老龄化和肥胖症的推动,医疗保健领域的科学进步导致了医疗器械市场的变化。正在开发复杂的产品和设备,以满足前沿医疗程序的需求。这些医疗设备中的特殊材料,包括药物和生物制品,以及外来聚合物,对辐射灭菌提出了挑战,因为这些部件中的许多无法承受常规的辐射方法。在干冰温度下对材料的辐照作为一种可用于降低材料的辐射敏感性的技术出现。这项研究的目的是研究低温辐照对多种聚合物材料以及在0°C至-80°C的温度范围内的影响。在这些条件中的每一个条件下,也都研究了杀微生物的有效性。研究结果表明,低温辐射的影响取决于材料,并且可以改变聚合物的交联和断链之间的平衡。低温还会增加达到等效的微生物杀灭所需的剂量,因此必须在使用的环境条件下进行剂量设定运动。

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