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Copper oxide nanoparticles as contrast agents for MRI and ultrasound dual-modality imaging

机译:氧化铜纳米粒子作为MRI和超声双峰成像的造影剂

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摘要

Multimodal medical imaging is gaining increased popularity in the clinic. This stems from the fact that data acquired from different physical phenomena may provide complementary information resulting in a more comprehensive picture of the pathological state. In this context, nano-sized contrast agents may augment the potential sensitivity of each imaging modality and allow targeted visualization of physiological points of interest (e.g. tumours). In this study, 7 nm copper oxide nanoparticles (CuO NPs) were synthesized and characterized. Then, in vitro and phantom specimens containing CuO NPs ranging from 2.4 to 320 mu g.mL(-1) were scanned, using both 9.4 T MRI and through-transmission ultrasonic imaging. The results show that the CuO NPs induce shortening of the magnetic T1 relaxation time on the one hand, and increase the speed of sound and ultrasonic attenuation coefficient on the other. Moreover, these visible changes are NP concentration-dependent. The change in the physical properties resulted in a substantial increase in the contrast-to-noise ratio (3.4-6.8 in ultrasound and 1.2-19.3 in MRI). In conclusion, CuO NPs are excellent candidates for MRI-ultrasound dual imaging contrast agents. They offer radiation-free high spatial resolution scans by MRI, and cost-effective high temporal resolution scans by ultrasound.
机译:多峰医学成像在临床中越来越受欢迎。这源于以下事实:从不同的物理现象获取的数据可能会提供补充信息,从而使病理状态更加全面。在这种情况下,纳米尺寸的造影剂可以增加每个成像模态的潜在灵敏度,并允许对感兴趣的生理学点(例如肿瘤)进行有针对性的可视化。在这项研究中,合成并表征了7 nm氧化铜纳米颗粒(CuO NPs)。然后,使用9.4 T MRI和透射式超声成像技术扫描包含2.4-320μg.mL(-1)范围内CuO NPs的体外和体模标本。结果表明,CuO NPs一方面缩短了磁性T1弛豫时间,另一方面又提高了声速和超声衰减系数。此外,这些可见变化是NP浓度依赖性的。物理性质的变化导致对比度噪声比大大提高(超声检查时为3.4-6.8,MRI检查时为1.2-19.3)。总之,CuO NPs是MRI-超声双重成像造影剂的极佳候选者。它们通过MRI提供无辐射的高空间分辨率扫描,并通过超声提供经济高效的高时间分辨率扫描。

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