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首页> 外文期刊>Australasian physical & engineering sciences in medicine >Characterisation of out‑of‑field dose at shallow depths for external beam radiotherapy: implications for eye lens dose
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Characterisation of out‑of‑field dose at shallow depths for external beam radiotherapy: implications for eye lens dose

机译:外梁放射治疗浅深度外场剂量的特征:眼镜剂量的影响

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Re-evaluation of the eye lens radio-sensitivity by the ICRP in 2011 resulted in a significant reduction of the threshold for lens opacities from 8 Gy to 0.5 Gy. This has led to an increase in concern for eye lens doses from treatment sites further from the eye than previously considered. The aim of this study was to examine the out-of-field dose far from the field edge and develop an effective method to accurately characterise the constituent components of this dose at varying depths. Dose profile scans using a 0.6 cm(3) cylindrical ionisation chamber in a motorised water tank were compared with previous studies and displayed good agreement. At points more than 20 cm from the field edge patient scatter becomes insignificant, and the dose is dominated by head leakage and collimator scatter. Point depth-dose measurements made with a Roos parallel plate chamber in solid water at distances of 52 cm and 76 cm from central axis showed that the highest dose is at the surface. Since the sensitive region of the eye can be as shallow as 3 mm, in vivo measurements carried out with a detector with buildup more than 3 mm water equivalent thickness may be underestimating the dose to the lens. It is therefore recommended that for in vivo measurements for the eye lens further than 20 cm from the field edge the detector should have only 3 mm build-up material over the effective point of measurement.
机译:ICRP在2011年再次评估眼睛透镜无线电敏感性导致镜片不透射率从8 GY到0.5Gy的显着降低。这导致对眼睛镜片的担忧增加,从眼睛进一步从眼睛中进一步从眼睛看起来比先前考虑在一起。本研究的目的是检查远离场边缘的场外剂量,并开发一种有效的方法,以精确地表征在不同深度下该剂量的组成部分。将使用0.6cm(3)圆柱电离室的剂量剖面扫描与先前的研究进行比较并显示出良好的一致性。在距离场边缘患者散射超过20厘米的点变得微不足道,并且剂量由头部泄漏和准直器散射主导。在距离中心轴线为52cm和76cm的距离处的固体水中的ROOS平行板室制成的点深度测量结果显示,最高剂量在表面处。由于眼睛的敏感区域可以是3mm的浅,因此在用累积的探测器进行的体内测量中,累积超过3mm的水当量厚度可以低估给透镜的剂量。因此,建议在距离场边缘20厘米的眼镜的体内测量后,检测器应在有效的测量点上仅具有3毫米的积聚材料。

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