Haghighi Rezvan Ravanfar, Zarei Fariba, Moshiri Samira, Jafari Anahita, Chatterjee Sabyasachi, Akondi Vyas, Chatterjee Vani Vardhan
Medical Imaging Research Center, Shiraz, Iran.
Department of Radiology, Shiraz University of Medical Sciences, Shiraz, Iran.
J Med Phys. 2024 Jul-Sep;49(3):448-455. doi: 10.4103/jmp.jmp_126_23. Epub 2024 Sep 21.
Solutions of iodine-based compounds, due to their high X-ray attenuation coefficient, are widely used as contrast agents in computed tomography (CT) imaging. This paper investigates the attenuation properties of iodine and gold to develop nanoparticle-based contrast agents, for example, composite nanoparticles (NPs) with layers of iodine and gold or a mixture of NPs of gold and iodine.
A theoretical formula is derived that gives the Hounsfield Unit (HU) for different weight-by-weight (w/w) concentrations of a mixture of blood + iodine + gold. The range of compositions for which iodine + gold mixture can give a suitable HU ≥ upon being mixed with blood, is formulated. These estimates are derived from experiments on the variation of HU values in different compositions of aqueous solutions of iodine and available data for gold.
It is seen that for an aqueous solution of iodine, the suitable HU of 250 (hence giving sufficient gray level to the CT image) can be obtained with w/w concentrations of iodine being 0.0044, 0.008, and 0.0097 for observations at 80, 100, and 120 kVp, respectively. The corresponding w/w concentrations of gold NPs would be 0.0103, 0.0131, and 0.0158. With these basic results, compositions of suitable mixtures of iodine and gold are also specified.
Aqueous suspensions of gold NPs are suitable as contrast materials for CT imaging and can also be used as a component of a composite contrast material consisting of an iodine and gold mixture.
基于碘的化合物溶液因其高X射线衰减系数,在计算机断层扫描(CT)成像中被广泛用作造影剂。本文研究碘和金的衰减特性,以开发基于纳米颗粒的造影剂,例如具有碘层和金层的复合纳米颗粒(NP)或金和碘的NP混合物。
推导了一个理论公式,该公式给出了血液+碘+金混合物不同重量比(w/w)浓度下的亨氏单位(HU)。确定了碘+金混合物与血液混合时能产生合适HU≥的组成范围。这些估计值来自于碘水溶液不同组成中HU值变化的实验以及金的现有数据。
可以看出,对于碘水溶液,在80、100和120 kVp下观察时,碘的w/w浓度分别为0.0044、0.008和0.0097时,可获得250的合适HU(从而为CT图像提供足够的灰度)。金纳米颗粒的相应w/w浓度分别为0.0103、0.0131和0.0158。基于这些基本结果,还确定了碘和金合适混合物的组成。
金纳米颗粒的水悬浮液适合作为CT成像的造影材料,也可作为由碘和金混合物组成的复合造影材料的一个组分。