Department of Radiotherapy, Shefaa-Alorman Hospital, Egypt.
Ionizing Radiation Metrology Laboratory, National Institute of Standards (NIS), Egypt.
Asian Pac J Cancer Prev. 2023 Aug 1;24(8):2757-2764. doi: 10.31557/APJCP.2023.24.8.2757.
The use of relatively narrow fields has become necessary with the advent of intricate and accurate radiation therapy delivery dose to patients; therefore, small-field dosimetry faces several difficulties. Both dose calculations and measurements require to be performed with extra care, due to the uncertainty that might be increased by using such small field sizes.
In this study, we investigated the effect of detectors size on the dosimetry of small fields [starting with radiation fields from (1cm x 1cm), (2cm x 1cm), and (3cm x 1cm)...etc., up to (4cm x 5cm) and (5cm x 5cm)]. We used the linear accelerator and different types of ionization chambers i.e. [Farmer FC65-P, CC13, and CC01 (pinpoint)] an addition to semiconductors i.e. (IBA Razor diode)], and we investigated all detectors to read the absorbed dose in water under the reference conditions (field 10cm x10cm, SSD 100cm and depth 10cm).
While measuring the absolute dose under reference conditions, all detectors had a non-significant difference of less than ±2%, except for the Razor diode, which showed a significant difference of ± 5%. On the other hand, when small fields were measured, we discovered a significant difference of 48%, compared to the Razor diode.
The Razor diode is more stable in small-field dosimetry than other detectors. Also, the Razor Diode is intended for relative dosimetry but, it shall not be used for absolute dose measurements.
随着复杂精确的放射治疗剂量输送技术的出现,相对较窄的射野变得非常必要;因此,小射野剂量测量面临着一些困难。由于使用如此小的射野尺寸可能会增加不确定性,因此需要格外小心地进行剂量计算和测量。
在这项研究中,我们研究了探测器尺寸对小射野剂量测量的影响[从(1cm x 1cm)、(2cm x 1cm)和(3cm x 1cm)... 等开始,直至(4cm x 5cm)和(5cm x 5cm)]。我们使用了直线加速器和不同类型的电离室,即[Farmer FC65-P、CC13 和 CC01(针尖)],以及半导体,即(IBA Razor 二极管),并研究了所有探测器在参考条件下(10cm x10cm 的射野、100cm 的 SSD 和 10cm 的深度)水中吸收剂量的读数。
在参考条件下测量绝对剂量时,除了 Razor 二极管外,所有探测器的差异均小于±2%,且无统计学意义,Razor 二极管的差异则具有统计学意义,为±5%。另一方面,当测量小射野时,我们发现与 Razor 二极管相比,差异有 48%。
与其他探测器相比,Razor 二极管在小射野剂量测量中更稳定。此外,Razor 二极管适用于相对剂量测量,但不能用于绝对剂量测量。