Singh M P, Iyer P S
Strahlentherapie. 1976 Feb;151(2):151-5.
Because of the large source size in telegamma therapy units, the boundaries of the radiation beam beyond the collimator are not well defined and a zone of falling dose and resulting penumbra are produced. In general, the collimator design is such that the geometrical penumbra is nearly equal in magnitude to the source diameter. However, the magnitude of the physical or radiation penumbra is influenced by the radiation transmitted through the edge of the collimator, the geometrical penumbra and the scatter from the source and the collimator. In the present study, the variation of radiation penumbra with field size has been investigated for two different makes of telegamma units. It is seen that the radiation penumbra can be as large as 4.8 cm for a 20 X 20 cm field. The effect of such large penumbra on the integral dose is discussed.
由于远距离γ治疗机的源尺寸较大,准直器之外的辐射束边界定义不清晰,会产生剂量下降区域和随之而来的半影。一般来说,准直器的设计使得几何半影的大小几乎与源直径相等。然而,物理半影或辐射半影的大小受透过准直器边缘的辐射、几何半影以及源和准直器的散射影响。在本研究中,针对两种不同型号的远距离γ治疗机,研究了辐射半影随射野大小的变化。可以看出,对于20×20 cm的射野,辐射半影可达4.8 cm。讨论了如此大的半影对积分剂量的影响。