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首页> 外文期刊>Journal of applied clinical medical physics / >Absorbed dose and dose rate using the Varian OBI 1.3 and 1.4 CBCT system
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Absorbed dose and dose rate using the Varian OBI 1.3 and 1.4 CBCT system

机译:使用Varian OBI 1.3和1.4 CBCT系统的吸收剂量和剂量率

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According to published data, the absorbed dose used for a CBCT image acquisition with Varian OBI v1.3 can be as high as 100 mGy. In 2008 Varian released a new OBI version (v1.4), which promised to reduce the imaging dose. In this study, absorbed doses used for CBCT image acquisitions with the default irradiation techniques of Varian OBI v1.3 and v1.4 are measured. TLDs are used to derive dose distributions at three planes inside an anthropomorphic phantom. In addition, point doses and dose profiles inside a ‘stack’ of three CTDI body phantoms are measured using a new solid state detector, the CT Dose Profiler. With the CT Dose Profiler, the individual pulses from the X‐ray tube are also studied. To verify the absorbed dose measured with the CT Dose Profiler, it is compared to TLD. The image quality is evaluated using a Catphan phantom. For OBI v1.3, doses measured in transverse planes of the Alderson phantom range between 64 mGy and 144 mGy. The average dose is around 100 mGy. For OBI v1.4, doses measured in transverse planes of the Alderson phantom range between 1 mGy and 51 mGy. Mean doses range between 3‐35 mGy depending on CBCT mode. CT Dose Profiler data agree with TLD measurements in a CTDI phantom within the uncertainty of the TLD measurements (estimated SD ). Instantaneous dose rate at the periphery of the phantom can be higher than 20 mGy/s, which is 10 times the dose rate at the center. The spatial resolution in v1.4 is not as high as in v1.3. In conclusion, measurements show that the imaging doses for default modes in Varian OBI v1.4 CBCT system are significantly lower than in v1.3. The CT Dose Profiler is proven fast and accurate for CBCT applications. PACS number: 87.53.Bn
机译:根据公开的数据,使用Varian OBI v1.3进行CBCT图像采集所使用的吸收剂量可能高达100 mGy。 2008年,瓦里安(Varian)发布了新的OBI版本(v1.4),该版本有望减少成像剂量。在这项研究中,使用Varian OBI v1.3和v1.4的默认照射技术测量了用于CBCT图像采集的吸收剂量。 TLD用于在拟人幻影内部的三个平面上得出剂量分布。此外,使用新型固态检测器CT Dose Profiler测量三个CTDI人体模型“堆栈”内的点剂量和剂量分布。使用CT剂量轮廓仪,还可以研究X射线管的单个脉冲。为了验证使用CT Dose Profiler测量的吸收剂量,将其与TLD进行比较。使用Catphan幻像评估图像质量。对于OBI v1.3,在Alderson幻像的横向平面中测量的剂量范围为64 mGy至144 mGy。平均剂量约为100 mGy。对于OBI v1.4,在Alderson幻像的横向平面中测量的剂量范围为1 mGy至51 mGy。平均剂量范围为3–35 mGy,具体取决于CBCT模式。 CT Dose Profiler数据与CTDI体模中的TLD测量值一致,且该误差在TLD测量值(估计SD)的不确定性范围内。幻影外围的瞬时剂量率可以高于20 mGy / s,是中心剂量率的10倍。 v1.4中的空间分辨率不如v1.3中的空间分辨率高。总之,测量表明,Varian OBI v1.4 CBCT系统中默认模式的成像剂量明显低于v1.3。经验证,CT剂量分析仪可快速准确地用于CBCT应用。 PACS编号:87.53.Bn

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