Frenzel Thorsten, Grohmann Carsten, Schumacher Udo, Krüll Andreas
Universitätsklinikum Hamburg-Eppendorf, Ambulanzzentrum des UKE GmbH, Bereich Strahlentherapie, Martinistraße 52, 20246 Hamburg, Germany.
Universitätsklinikum Hamburg-Eppendorf, Zentrum für Experimentelle Medizin, Institut für Anatomie und Experimentelle Morphologie, Martinistraße 52, 20246 Hamburg, Germany.
Z Med Phys. 2014 Dec;24(4):352-62. doi: 10.1016/j.zemedi.2014.02.002. Epub 2014 Mar 12.
Dedicated precise small laboratory animal irradiation sources are needed for basic cancer research and to meet this need expensive high precision radiation devices have been developed. To avoid such expenses a cost efficient way is presented to construct a device for partial body irradiation of small laboratory animals by adding specific components to an industrial X-ray tube.
A custom made radiation field tube was added to an industrial 200 kV X-ray tube. A light field display as well as a monitor ionization chamber were implemented. The field size can rapidly be changed by individual inserts of MCP96 that are used for secondary collimation of the beam. Depth dose curves and cross sectional profiles were determined with the use of a custom made water phantom. More components like positioning lasers, a custom made treatment couch, and a commercial isoflurane anesthesia unit were added to complete the system.
With the accessories described secondary small field sizes down to 10 by 10 mm2 (secondary collimator size) could be achieved. The dosimetry of the beam was constructed like those for conventional stereotactical clinical linear accelerators. The water phantom created showed an accuracy of 1 mm and was well suited for all measurements. With the anesthesia unit attached to the custom made treatment couch the system is ideal for the radiation treatment of small laboratory animals like mice.
It was feasible to shrink the field size of an industrial X-ray tube from whole animal irradiation to precise partial body irradiation of small laboratory animals. Even smaller secondary collimator sizes than 10 by 10 mm2 are feasible with adequate secondary collimator inserts. Our custom made water phantom was well suited for the basic dosimetry of the X-ray tube.
基础癌症研究需要专用的精确小型实验动物辐照源,为满足这一需求,已开发出昂贵的高精度辐射装置。为避免此类费用,本文提出一种经济高效的方法,即通过在工业X射线管上添加特定组件来构建小型实验动物局部身体辐照装置。
在工业200 kV X射线管上添加定制的辐射野管。安装了光野显示器以及监测电离室。通过单独插入用于光束二次准直的MCP96可快速改变野大小。使用定制的水模体确定深度剂量曲线和横截面轮廓。添加了更多组件,如定位激光、定制的治疗床和商用异氟烷麻醉装置,以完善该系统。
使用所述附件可实现低至10×10 mm2(二次准直器尺寸)的二次小野大小。该光束的剂量学构建方式与传统立体定向临床直线加速器相同。所制作的水模体精度为1 mm,非常适合所有测量。将麻醉装置连接到定制的治疗床上,该系统非常适合对小鼠等小型实验动物进行放射治疗。
将工业X射线管的野大小从小动物全身辐照缩小到精确的局部身体辐照是可行的。使用合适的二次准直器插入件,甚至可以实现小于10×10 mm2的更小二次准直器尺寸。我们定制的水模体非常适合X射线管的基础剂量学研究。