首页> 外文期刊>Journal of radiological protection: Official journal of the Society for Radiological Protection >Establishment of scatter factors for use in shielding calculations and risk assessment for computed tomography facilities
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Establishment of scatter factors for use in shielding calculations and risk assessment for computed tomography facilities

机译:建立散射因子以用于计算机断层摄影设备的屏蔽计算和风险评估

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The specification of shielding for CT facilities in the UK and many other countries has been based on isodose scatter curves supplied by the manufacturers combined with the scanner's mAs workload. Shielding calculations for radiography and fluoroscopy are linked to a dose measurement of radiation incident on the patient called the kerma-area product (KAP), and a related quantity, the dose-length product (DLP), is now employed for assessment of CT patient doses. In this study the link between scatter air kerma and DLP has been investigated for CT scanners from different manufacturers. Scatter air kerma values have been measured and scatter factors established that can be used to estimate air kerma levels within CT scanning rooms. Factors recommended to derive the scatter air kerma at 1m from the isocentre are 0.36νGy(mGycm) ~(-1) for the body and 0.14νGy(mGycm) ~(-1) for head scans. The CT scanner gantries only transmit 10% of the scatter air kerma level and this can also be taken into account when designing protection. The factors can be used to predict scatter air kerma levels within a scanner room that might be used in risk assessments relating to personnel whose presence may be required during CT fluoroscopy procedures.
机译:英国和许多其他国家/地区的CT设施的屏蔽规范基于制造商提供的等剂量线散射曲线以及扫描仪的mAs工作量。放射线照相和荧光透视的屏蔽计算与入射到患者身上的辐射的剂量测量(称为角质面积积(KAP))相关,并且现在使用相关量剂量长度积(DLP)来评估CT患者剂量。在这项研究中,已经对来自不同制造商的CT扫描仪研究了散气比释动能和DLP之间的联系。已测量了散气比释动能值,并建立了散点因数,可用于估计CT扫描室内的散气比动能水平。建议从等中心线处获取1m处的散射空气比释动能的因素,对于身体而言为0.36νGy(mGycm)〜(-1),对于头部扫描而言为0.14νGy(mGycm)〜(-1)。 CT扫描机架仅传输散射空气比释动能水平的10%,在设计保护时也可以考虑这一点。这些因素可用于预测扫描仪室内的散射空气比释动能水平,该水平可能用于与在CT透视检查过程中可能需要其存在的人员有关的风险评估中。

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