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Dose-Length-Product determination on Cone Beam Computed Tomography through experimental measurements and Dose-Area-Product conversion

机译:通过实验测量和剂量面积 - 产品转换对锥形光束计算机断层扫描的剂量 - 长度 - 产品测定

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The dosimetry of cone beam computed tomography (CBCT) is not fully elaborated yet, and some of these systems presents dose-area-product (DAP) values after an examination rather than, as in the case of traditional CT, the dose-length-product (DLP). The purpose of this study was to provide a reproducible and straight-forward method for DLP measurements on CBCT, as well as to validate a tool for estimating DLP for a CBCT system in terms of accuracy. A prototype conversion tool for estimating DLP, using the DAP value, was provided by the vendor of a CBCT system which currently display only DAP. The DAP to DLP conversion tool was validated using five protocols for extremity imaging. DLP was measured using a 30 cm ionization chamber and 30 cm long cylindrical PMMA-phantom. DLP, the integrated absorbed dose within the ionization chamber, was measured through central and peripheral measurements in the phantom in order to calculate the weighted DLP, DLP_(W.CBCT). Comparisons between DLPw.cbct and estimated DLP, showed that the conversion tool was accurate within 10%, with a mean average error of 6.1% for all measured protocols. The variation between repeated measurements was small, making the method highly reproducible. In conclusion, in this study a simple method for determining DLP on CBCT was presented, and it was validated that the conversion tool can present the delivered dose in terms of DLP with high accuracy. The measured DLP, as well as the DLP estimated by the conversion tool, is suitable for quality control and relative dose comparisons between protocols, but its" relation to the DLP of CT systems should be investigated further in order to relate to patient dose.
机译:锥形光束计算机断层扫描(CBCT)的剂量尚未完全详细阐述,其中一些系统在检查之后提出了剂量面积 - 产品(DAP)值,而不是在传统CT的情况下,剂量长度产品(DLP)。本研究的目的是为CBCT提供一种可重复和直接的用于DLP测量的直接方法,以及验证用于在精度方面估算CBCT系统的DLP的工具。使用DAP值的CBCT系统的供应商提供了用于估计DLP的原型转换工具,该工具由当前仅显示DAP的CBCT系统的供应商提供。使用五种单位进行终端成像协议验证DAP到DLP转换工具。使用30cm电离室和30cm长圆柱形PMMA-Phantom测量DLP。通过体模中的中央和外周测量测量电离室内的集成吸收剂量,以计算加权DLP,DLP_(W.CBCT)测量电离室内的集成吸收剂量。 DLPW.CBCT和估计DLP之间的比较表明,转换工具在10%以内准确,平均平均误差为所有测量方案为6.1%。重复测量之间的变化小,使得该方法具有高度可重复的。总之,在本研究中,提出了一种确定CBCT上的DLP的简单方法,验证了转换工具可以高精度地呈现DLP的递送剂量。测量的DLP以及转换工具估计的DLP适用于协议之间的质量控制和相对剂量比较,但应进一步研究其与CT系统的DLP的关系,以便与患者剂量相关。

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