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不同能量和射野大小的光子束中钻石探测器与硅二极管及电离室的比较

Diamond detector versus silicon diode and ion chamber in photon beams of different energy and field size.

作者信息

Bucciolini M, Buonamici F Banci, Mazzocchi S, De Angelis C, Onori S, Cirrone G A P

机构信息

Dipartimento di Fisiopatologia Clinica dell'Università and INFN, Florence, Italy.

出版信息

Med Phys. 2003 Aug;30(8):2149-54. doi: 10.1118/1.1591431.

Abstract

The aim of this work was to test the suitability of a PTW diamond detector for nonreference condition dosimetry in photon beams of different energy (6 and 25 MV) and field size (from 2.6 cm x 2.6 cm to 10 cm x 10 cm). Diamond behavior was compared to that of a Scanditronix p-type silicon diode and a Scanditronix RK ionization chamber. Measurements included output factors (OF). percentage depth doses (PDD) and dose profiles. OFs measured with diamond detector agreed within 1% with those measured with diode and RK chamber. Only at 25 MV, for the smallest field size, RK chamber underestimated OFs due to averaging effects in a pointed shaped beam profile. Agreement was found between PDDs measured with diamond detector and RK chamber for both 6 MV and 25 MV photons and down to 5 cm x 5 cm field size. For the 2.6 cm x 2.6 cm field size, at 25 MV, RK chamber underestimated doses at shallow depth and the difference progressively went to zero in the distal region. PDD curves measured with silicon diode and diamond detector agreed well for the 25 MV beam at all the field sizes. Conversely, the nontissue equivalence of silicon led, for the 6 MV beam, to a slight overestimation of the diode doses in the distal region, at all the field sizes. Penumbra and field width measurements gave values in agreement for all the detectors but with a systematic overestimate by RK measurements. The results obtained confirm that ion chamber is not a suitable detector when high spatial resolution is required. On the other hand, the small differences in the studied parameters, between diamond and silicon systems, do not lead to a significant advantage in the use of diamond detector for routine clinical dosimetry.

摘要

这项工作的目的是测试PTW金刚石探测器在不同能量(6和25兆伏)和射野尺寸(从2.6厘米×2.6厘米到10厘米×10厘米)的光子束中进行非参考条件剂量测定的适用性。将金刚石探测器的性能与Scanditronix p型硅二极管和Scanditronix RK电离室的性能进行了比较。测量内容包括输出因子(OF)、百分深度剂量(PDD)和剂量分布。用金刚石探测器测量的OF与用二极管和RK电离室测量的结果在1%以内相符。仅在25兆伏时,对于最小射野尺寸,由于尖形射野轮廓中的平均效应,RK电离室低估了OF。对于6兆伏和25兆伏的光子以及直至5厘米×5厘米的射野尺寸,用金刚石探测器和RK电离室测量的PDD之间存在一致性。对于2.6厘米×2.6厘米的射野尺寸,在25兆伏时,RK电离室在浅深度处低估了剂量,且该差异在远端区域逐渐趋于零。对于25兆伏的射束,在所有射野尺寸下,用硅二极管和金刚石探测器测量的PDD曲线吻合良好。相反,由于硅的非组织等效性,对于6兆伏的射束,在所有射野尺寸下,二极管剂量在远端区域略有高估。半值层和射野宽度测量结果表明,所有探测器的测量值相符,但RK测量存在系统性高估。所获得的结果证实,当需要高空间分辨率时,电离室不是合适的探测器。另一方面,金刚石和硅系统在研究参数上的微小差异,并未导致在常规临床剂量测定中使用金刚石探测器具有显著优势。

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