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首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Dy-DTPA derivatives as relaxation agents for very high field MRI: the beneficial effect of slow water exchange on the transverse relaxivities.
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Dy-DTPA derivatives as relaxation agents for very high field MRI: the beneficial effect of slow water exchange on the transverse relaxivities.

机译:Dy-DTPA衍生物作为非常高场MRI的松弛剂:缓慢的水交换对横向松弛的有益作用。

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Proton longitudinal and transverse relaxivities of Dy(DTPA)(2-) and Dy-DTPA bisamide derivatives (Dy(DTPA-BA): Dy-DTPA bisamide, Dy(DTPA-BEA): Dy-DTPA bisethylamide, Dy(DTPA-BnBA): Dy-DTPA bis-n-butylamide, and Dy(DTPA-BBMA): Dy-DTPA bisbismethylamide) were analyzed between 0.47 T and 18.8 T. Curie longitudinal relaxation was clearly observed at magnetic fields larger than 2.4 T, but the longitudinal relaxivities are limited by the fast rotation of the complexes. Rotational correlation times were separately assessed by deuterium relaxometry of the diamagnetic deuterated lanthanum analogs. Transverse relaxivity, which depends on the square of the magnetic field and on the residence time of the coordinated water molecule (tau(M)), was more than 7.5 times larger at 18.8 T and 310 K for Dy(DTPA-BA) and Dy(DTPA-BEA) as compared to Dy(DTPA)(2-). This difference is mainly related to the slower water exchange of the bisamide complexes, as confirmed by the values of tau(M) measured by oxygen-17 relaxometry. Such Dy-complexes, characterized by relatively long tau(M) values (tauM310 larger than 100 ns but smaller than 1 micros), thus appear to be useful as negative T(2) (or transverse) contrast agents for high-field imaging. This was demonstrated by the spin-echo images of phantoms obtained at 4.7 T on samples containing Dy(DTPA)(2-) and Dy(DTPA-BEA).
机译:Dy(DTPA)(2-)和Dy-DTPA双酰胺衍生物(Dy(DTPA-BA):Dy-DTPA双酰胺,Dy(DTPA-BEA):Dy-DTPA双乙酰胺,Dy(DTPA-BnBA)的质子纵向和横向弛豫):Dy-DTPA双正丁基酰胺和Dy(DTPA-BBMA):Dy-DTPA双二甲基酰胺)在0.47 T和18.8 T之间进行分析。在大于2.4 T的磁场下,居里纵向弛豫清晰可见,但纵向配合物的快速旋转限制了弛豫性。旋转相关时间通过抗磁性氘化镧类似物的氘弛豫法单独评估。横向弛豫取决于磁场的平方和协调的水分子(tau(M))的停留时间,在Dy(DTPA-BA)和Dy(18.8 T和310 K)处大于7.5倍(DTPA-BEA)与Dy(DTPA)(2-)相比。这种差异主要与双酰胺配合物的水交换较慢有关,这一点已通过氧气17弛豫法测得的tau(M)值得到证实。这种Dy复合物的特征在于相对较长的tau(M)值(tauM310大于100 ns但小于1微米),因此似乎可作为负T(2)(或横向)造影剂用于高场成像。这是通过在4.7 T对包含Dy(DTPA)(2-)和Dy(DTPA-BEA)的样品上获得的幻像的自旋回波图像来证明的。

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