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Linear accelerator: A reproducible, efficacious and cost effective alternative for blood irradiation

机译:线性加速器:一种可重现,有效且经济高效的血液照射替代品

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Background: The dedicated devices for blood irradiation are available only at a few centers in developing countries thus the irradiation remains a service with limited availability due to prohibitive cost. Objective: To implement a blood irradiation program at our center using linear accelerator. Materials and methods: The study is performed detailing the specific operational and quality assurance measures employed in providing a blood component-irradiation service at tertiary care hospital. X-rays generated from linear accelerator were used to irradiate the blood components. To facilitate and standardize the blood component irradiation, a blood irradiator box was designed and fabricated in acrylic. Using Elekta Precise Linear Accelerator, a dose of 25. Gy was delivered at the centre of the irradiation box. Standardization was done using five units of blood obtained from healthy voluntary blood donors. Each unit was divided to two parts. One aliquot was subjected to irradiation. Biochemical and hematological parameters were analyzed on various days of storage. Cost incurred was analyzed. Results: Progressive increase in plasma hemoglobin, potassium and lactate dehydrogenase was noted in the irradiated units but all the parameters were within the acceptable range indicating the suitability of the product for transfusion. The irradiation process was completed in less than 30. min. Validation of the radiation dose done using TLD showed less than ±3% variation. Conclusion: This study shows that that the blood component irradiation is within the scope of most of the hospitals in developing countries even in the absence of dedicated blood irradiators at affordable cost.
机译:背景:用于血液辐照的专用设备仅在发展中国家的少数几个中心可用,因此由于成本过高,辐照仍然是一种服务,可用性有限。目的:使用线性加速器在我们中心实施血液照射程序。材料和方法:进行了详细研究,详细介绍了在三级医院提供血液成分辐照服务时采用的特定操作和质量保证措施。从线性加速器产生的X射线用于照射血液成分。为了促进和规范化血液成分的照射,设计了一种血液辐照箱,并用丙烯酸制成。使用Elekta精确线性加速器,将25. Gy的剂量输送到辐照箱的中央。使用从健康自愿献血者获得的五单位血液进行标准化。每个单元分为两部分。将一份等分试样进行辐射。在不同的储存天数分析生化和血液学参数。分析了发生的成本。结果:在受辐照的单位中,血浆血红蛋白,钾和乳酸脱氢酶逐渐增加,但所有参数均在可接受范围内,表明该产品适合输血。不到30分钟即可完成辐照过程。使用TLD进行的辐射剂量验证显示偏差小于±3%。结论:这项研究表明,即使没有价格可承受的专用血液辐照器,发展中国家大多数医院的血液辐照范围也包括在内。

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