Scattering-compensated cone beam x-ray luminescence computed tomography

Peng Gao, Junyan Rong, Huangsheng Pu, Wenlei Liu, Qimei Liao, Hongbing Lu
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Abstract

X-ray luminescence computed tomography (XLCT) opens new possibilities to perform molecular imaging with x-ray. It is a dual modality imaging technique based on the principle that some nanophosphors can emit near-infrared (NIR) light when excited by x-rays. The x-ray scattering effect is a great issue in both CT and XLCT reconstruction. It has been shown that if the scattering effect compensated, the reconstruction average relative error can be reduced from 40% to 12% in the in the pencil beam XLCT. However, the scattering effect in the cone beam XLCT has not been proved. To verify and reduce the scattering effect, we proposed scattering-compensated cone beam x-ray luminescence computed tomography using an added leading to prevent the spare x-ray outside the irradiated phantom in order to decrease the scattering effect. Phantom experiments of two tubes filled with Y2O3:Eu3+ indicated that the proposed method could reduce the scattering by a degree of 30% and can reduce the location error from 1.8mm to 1.2mm. Hence, the proposed method was feasible to the general case and actual experiments and it is easy to implement.
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散射补偿锥束x射线发光计算机断层扫描
x射线发光计算机断层扫描(XLCT)为x射线分子成像开辟了新的可能性。它是一种基于某些纳米荧光粉在x射线激发下可以发射近红外(NIR)光的原理的双模成像技术。x射线散射效应在CT和XLCT重建中都是一个重要的问题。结果表明,在补偿散射效应的情况下,铅笔束XLCT的重建平均相对误差可从40%降低到12%。然而,锥束XLCT中的散射效应尚未得到证实。为了验证和降低散射效应,我们提出了散射补偿锥束x射线发光计算机断层扫描,使用附加导联来防止辐照模体外的备用x射线,以降低散射效应。用Y2O3:Eu3+填充的两管模拟实验表明,该方法可将散射降低30%,将定位误差从1.8mm减小到1.2mm。因此,该方法对一般情况和实际实验都是可行的,并且易于实现。
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