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基于钆的磁共振成像对比剂在高磁场中的优化。

Optimization of gadolinium-based MRI contrast agents for high magnetic-field applications.

机构信息

Institut des Sciences et Ingénierie Chimiques, Ecole Polytechnique Fédérale de Lausanne, CH-1015 Lausanne, Switzerland.

出版信息

Future Med Chem. 2010 Mar;2(3):385-96. doi: 10.4155/fmc.09.174.

Abstract

The search for higher spatial resolution and better sensitivity stimulates the development of high-field (3 T) and ultrahigh field (>3 T) MRI scanners. Gadolinium-based MRI contrast agents, commercial ones used in clinics, as well as recently developed more efficient ones, become less and less effective as the magnetic field is increased above 3 T and, therefore, special contrast agents for ultrahigh-field MRI have to be developed. As the relaxivity, defined as relaxation enhancement per Gd-ion, is rather limited, marked boosts in performance can only be achieved by creating systems transporting many paramagnetic centers to the desired site. To obtain maximum efficiency gadolinium chelates with more than one water molecule in the first coordination sphere must be used. The rotational correlation time should be in the range of 0.5-1 ns and the residence time of first sphere water molecules should be short (<10 ns).

摘要

对更高空间分辨率和更好灵敏度的追求促使高场(3T)和超高场(>3T)MRI 扫描仪的发展。随着磁场增加到 3T 以上,基于钆的 MRI 造影剂(临床使用的商业造影剂,以及最近开发的更有效的造影剂)的效果变得越来越差,因此必须开发专门用于超高场 MRI 的造影剂。由于弛豫率(定义为每个 Gd 离子的弛豫增强)相当有限,只有通过创建将许多顺磁中心输送到所需部位的系统,才能实现性能的显著提升。为了获得最大效率,必须使用在第一配位球中含有一个以上水分子的镧系元素螯合物。旋转相关时间应在 0.5-1ns 范围内,并且第一配位球水分子的停留时间应较短(<10ns)。

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