Title :
The Characterization and Imaging Behavior of a New Developed Paramagnetic Contrast Agent NMG2[Gd(TTDA-BOM)]
Author :
Jao, Jo-Chi ; Wang, Yun-Ming ; Ou, Ming-Hung ; Chen, Shih Hsie ; Chen, Yen-Ku ; Jaw, Twei-Shiun ; Liu, Gin-Chung ; Chen, Po-Chou
Author_Institution :
Fac. of Radiol. Sci., Kaohsiung Medical Univ.
Abstract :
[Gd(TTDA-BOM)]2- is a newly developed paramagnetic contrast agent. The ligand, TTDA-BOM, bears a benzyloxymethyl group so that the lipophilicity is increased. The water exchange rate for [Gd(TTDA-BOM)]2- is significantly higher than that of [Gd(DTPA)]2- and [Gd(BOPTA)]2-. In addition, the bound relaxivity of this Gd (III) complex has a remarkably high value with HSA. Therefore, it has potential to be used as a blood pool contrast agent for MRI. The aim of this study is to investigate the characterization and imaging behavior of NMG2[Gd(TTDA-BOM)] in normal rat livers and hearts using a 3T high field whole-body MR scanner. The high field MR scanner is expected to have a higher signal to noise ratio. The relaxivities r1 and r2 for [Gd(TTDA-BOM)]2- at 3T are 5.97 mM-1 s-1 and 7.99 mM-1 s-1 respectively, which are higher than those for [Gd(DTPA)]2 (r1=4.64 mM-1 s-1 and r2=5.08 mM-1 s-1). The dynamic MRI studies show that there is marked enhancement in livers and hearts right after the bolus injection and the enhancement ratios keep high until two hours. In conclusion, [Gd(TTDA-BOM)]2- might have a good potential in both cardiovascular and hepatobiliary applications
Keywords :
biomagnetism; biomedical MRI; blood; cardiovascular system; liver; paramagnetic materials; 3 T; 3T high field whole-body MR scanner; MRI; benzyloxymethyl group; blood pool contrast agent; bolus injection; cardiovascular applications; hearts; hepatobiliary applications; imaging behavior; ligand; lipophilicity; paramagnetic contrast agent NMG2[Gd(TTDA-BOM)]; rat livers; water exchange rate; Biomedical imaging; Blood; Exchange rates; Heart; Liver; Magnetic resonance imaging; Nuclear magnetic resonance; Paramagnetic materials; Signal to noise ratio; Thickness measurement; 3T; Gd(DTPA); Gd(TTDA-BOM); Magnetic Resonance Imaging; paramagnetic contrast agent;
Conference_Titel :
Engineering in Medicine and Biology Society, 2005. IEEE-EMBS 2005. 27th Annual International Conference of the
Conference_Location :
Shanghai
Print_ISBN :
0-7803-8741-4
DOI :
10.1109/IEMBS.2005.1616756