Phys Med Biol. 1996 Dec;41(12):2605-25. doi: 10.1088/0031-9155/41/12/002.
This new code of practice for the determination of absorbed dose for x-rays below 300 kV has recently been approved by the IPEMB and introduces the following changes to the previous codes: (i) The determination of absorbed dose is based on the air kerma determination (exposure measurement) method. (ii) An air kerma calibration factor for the ionization chamber is used. (iii) The use of the F (rad/röentgen) conversion factor is abandoned and replaced by the ratio of the mass-energy absorption coefficients of water and air for converting absorbed dose to air to absorbed dose to water. New values for ratios of these coefficients are recommended. Perturbation and other correction factors are incorporated in the equations. (iv) New backscatter factors are recommended. (v) Three separate energy ranges are defined, with specific procedures for each range. These ranges are: (a) 0.5 to 4 mm Cu HVL; for this range calibration at 2 cm depth in water with a thimble ion chamber is recommended. (b) 1.0 to 8.0 mm AI HVL; for this range calibration in air with a cylindrical ion chamber and the use of tabulated values of the backscatter factor are recommended. (c) 0.035 to 1.0 mm AI HVL; for this range calibration on the surface of a phantom with a parallel-plate ionization chamber is recommended.
IPEMB最近批准了这套用于确定300 kV以下X射线吸收剂量的新操作规范,该规范对先前的规范做出了如下修改:(i) 吸收剂量的确定基于空气比释动能确定(照射量测量)方法。(ii) 使用电离室的空气比释动能校准因子。(iii) 不再使用F(拉德/伦琴)转换因子,而是用水与空气的质能吸收系数之比将空气吸收剂量转换为水吸收剂量。推荐了这些系数之比的新值。微扰和其他校正因子已纳入公式中。(iv) 推荐了新的反向散射因子。(v) 定义了三个单独的能量范围,每个范围有特定的程序。这些范围是:(a) 0.5至4毫米铜半值层;对于此范围,建议使用指形电离室在水中2厘米深度处进行校准。(b) 1.0至8.0毫米铝半值层;对于此范围,建议使用圆柱形电离室在空气中进行校准,并使用反向散射因子的表格值。(c) 0.035至1.0毫米铝半值层;对于此范围,建议使用平行板电离室在模体表面进行校准。