磁性纳米颗粒提高磁共振成像的对比度

kosar eskandari
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摘要

及早发现疾病可降低死亡率。因此,发展更好的筛选技术可以被认为是一个感兴趣的主要话题。在非侵入性医学成像中,特别是磁共振成像(MRI)中,传统的造影剂在一些精细部位的成像中表现不佳。肿瘤学临床前研究的繁荣,旨在开发和评估样本治疗策略,需要有效的新型功能化对比剂来描绘肿瘤生长,监测治疗的痕迹和/或诱导癌性肿瘤的破坏。本研究通过在Google scholar、Science direct、PubMed和Scopus网站中搜索纳米技术、分子成像、磁性纳米颗粒和造影剂纳米颗粒等关键词进行内容搜索。我们回顾了纳米颗粒作为医学成像造影剂的最新研究进展,因为它们比分子造影剂具有更长的血管半衰期。这可能表明纳米颗粒是增加图像对比度的重要因素,因此即使减小磁性纳米颗粒的尺寸也会增加颗粒的对比度和半衰期。直径为10纳米的粒子比直径为30纳米或更大的粒子的半衰期更长。还发现,去除材料缺陷或提高其生物相容性;颗粒应用其他材料覆盖或掺杂金属。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Magnetic nanoparticles to improve the contrast of Magnetic Resonance Imaging
Earlier detection of diseases reduces the mortality rate.  So the development of better screening techniques could be considered as a main topic of interest. In non-invasive medical imaging, specifically in  Magnetic Resonance Imaging (MRI), conventional contrast agents do not have a good performance in imaging of some fine parts. The prosperity of preclinical researches in oncology that purpose at developing and evaluating curative strategies on samples, requires effective new functionalized contrast agents for portrayal tumor growth, monitoring the trace of a treatment and/or inducing the demolition of cancerous tumors. This study was performed by searching Nanotechnology, Molecular imaging, magnetic nanoparticles, and contrast agent nanoparticles keywords in Google scholar, Science direct, PubMed and Scopus websites in terms of content. We reviewed the recent studies about development of nanoparticles as contrast agents for medical imaging because they have a longer vascular half-life than molecular contrast agents. It could be indicate that nanoparticles are important items in increasing the contrast of the images so that even reducing the size of the magnetic nanoparticles escalates the contrast and half-life of the particles. Particles with a diameter of 10 nm have a greater half-life than particles with a diameter of 30 nm or larger. It was also found that to removing material defects or improve their biocompatibility; particles should be covered with other materials or doped with metals.
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