Casiraghi M, Bashkirov V A, Hurley R F, Schulte R W
Center for Proton Therapy, Paul Scherrer Institut, Villigen, PSI 5232, Switzerland
Department of Basic Sciences, Loma Linda University, 11175 Campus Street, Loma Linda, CA 92350, USA.
Radiat Prot Dosimetry. 2015 Sep;166(1-4):223-7. doi: 10.1093/rpd/ncv139. Epub 2015 Apr 15.
The spatial distribution of radiation-induced ionisations in sub-cellular structures plays an important role in the initial formation of radiation damage to biological tissues. Using the nanodosimetry approach, physical characteristics of the track structure can be measured and correlated to DNA damage. In this work, a novel nanodosimeter is presented, which detects positive ions produced by radiation interacting with a gas-sensitive volume in order to obtain a high resolution image of the radiation track structure. The characterisation of the detector prototype was performed and different configurations of the device were tested by varying the detector cathode material and the working gas. Preliminary results show that the ionisation cluster size distribution can be obtained with this approach. Further work is planned to improve the detector efficiency in order to register the complete three-dimensional track structure of ionising radiation.
辐射诱导的亚细胞结构中电离的空间分布在生物组织辐射损伤的初始形成过程中起着重要作用。使用纳米剂量学方法,可以测量径迹结构的物理特性并将其与DNA损伤相关联。在这项工作中,提出了一种新型纳米剂量仪,它通过检测辐射与气敏体积相互作用产生的正离子,以获得辐射径迹结构的高分辨率图像。对探测器原型进行了表征,并通过改变探测器阴极材料和工作气体对该装置的不同配置进行了测试。初步结果表明,通过这种方法可以获得电离簇尺寸分布。计划进一步开展工作以提高探测器效率,以便记录电离辐射的完整三维径迹结构。