Liu Y-W H, Huang T T, Jiang S H, Liu H M
Department of Engineering and System Science, National Tsing Hua University, Hsinchu, Taiwan, ROC.
Appl Radiat Isot. 2004 Nov;61(5):1039-43. doi: 10.1016/j.apradiso.2004.05.042.
Heading for possible use for clinical trial, THOR (Tsing Hua Open-pool Reactor) at Taiwan was shutdown for renovation of a new epithermal neutron beam in January 2003. In November 2003, concrete cutting was finished for closer distance from core and larger treatment room. This article presents the design base that the construction of the new beam is based on. The filter/moderator design along the beam is Cd(0.1cm)+Al(10 cm)+FLUENTAL (16 cm)+Al(10 cm)+FLUENTAL(24 cm)+Void(18 cm)+Cd(0.1cm)+Bi(10 cm) with 6 cm Pb as reflector. Following the filter/moderator is an 88 cm long, 6 cm thick Bi-lined collimator with Li(2)CO(3)-PE at the end. The collimator is surrounded by Li(2)CO(3)-PE and Pb. The calculated beam parameters under 2 MW at the beam exit is phi(epi) = 3.4 x 10(9) n/cm(2)/s, Df/phi(epi) = 2.8 x 10(-11) cGy cm(2)/n, Dgamma/phi(epi) = 1.3 x 10(-11) cGy cm(2)/n, and J+/phi = 0.8. For a phantom placed 10 cm from beam exit, MCNP calculation shows that the advantage depth is 8.9 cm, and advantage ratio is 5.6 if boron concentration in tumor and normal tissue are assumed to be 65 and 18 ppm. The maximum dose rate for normal tissue is 50 cGy/min. The maximum therapeutic ratio is 6. The construction of the beam is scheduled to be finished by the end of April 2004.
为了可能用于临床试验,台湾的清华开放池式反应堆(THOR)于2003年1月关闭,以便对新的超热中子束进行改造。2003年11月,混凝土切割完成,目的是使与堆芯的距离更近并扩大治疗室。本文介绍了新束流建造所基于的设计基础。沿束流方向的过滤器/慢化剂设计为Cd(0.1厘米)+Al(10厘米)+氟塑料(16厘米)+Al(10厘米)+氟塑料(24厘米)+空隙(18厘米)+Cd(0.1厘米)+Bi(10厘米),并用6厘米厚的铅作为反射层。在过滤器/慢化剂之后是一个88厘米长、6厘米厚的衬铋准直器,末端为Li₂CO₃ - PE。准直器被Li₂CO₃ - PE和铅包围。在束流出口处2兆瓦功率下计算得到的束流参数为:φ(epi) = 3.4×10⁹ n/cm²/s,Df/φ(epi) = 2.8×10⁻¹¹ cGy cm²/n,Dγ/φ(epi) = 1.3×10⁻¹¹ cGy cm²/n,以及J⁺/φ = 0.8。对于放置在距束流出口10厘米处的模体,MCNP计算表明,如果假设肿瘤和正常组织中的硼浓度分别为65 ppm和18 ppm,则优势深度为8.9厘米,优势比为5.6。正常组织的最大剂量率为50 cGy/分钟。最大治疗比为6。束流建造计划于2004年4月底完成。