Biomedical Engineering Reference
In-Depth Information
[123] Hsiao JK, CP Tsai, TH Chung, Y Hung, M Yao, HM Liu, CY Mou, CS Yang, YC Chen and
DM Huang (2008). Mesoporous silica nanoparticles as a delivery system of gadolinium for
effective human stem cell tracking. Small 4: 1445-1452.
[124] Vuu K, J Xie, MA McDonald, M Bernardo, F Hunter, Y Zhang, K Li, M Bednarski and S
Guccione (2005). Gadolinium-rhodamine nanoparticles for cell labeling and tracking via
magnetic resonance and optical imaging. Bioconjugate Chemistry 16: 995-999.
[125] Kim HM, H Lee, KS Hong, MY Cho, MH Sung, H Poo and YT Lim (2011). Synthesis and
high performance of magnetofluorescent polyelectrolyte nanocomposites as MR/near-infrared
multimodal cellular imaging nanoprobes. ACS Nano 5: 8230-40.
[126] Cha EJ, ES Jang, IC Sun, IJ Lee, JH Ko, YI Kim, IC Kwon, K Kim and CH Ahn (2011).
Development of MRI/NIRF “activatable” multimodal imaging probe based on iron oxide
nanoparticles. Journal of Control Release 155: 152-158.
[127] Lee CM, D Jang, J Kim, SJ Cheong, EM Kim, MH Jeong, SH Kim, DW Kim, ST Lim, MH
Sohn, et al . (2011). Oleyl-chitosan nanoparticles based on a dual probe for optical/MR imaging
in vivo . Bioconjugate Chemistry 22: 186-192.
[128] Xu H, CA Regino, Y Koyama, Y Hama, AJ Gunn, M Bernardo, H Kobayashi, PL Choyke and
MW Brechbiel (2007). Preparation and preliminary evaluation of a biotin-targeted, lectin-
targeted dendrimer-based probe for dual-modality magnetic resonance and fluorescence
imaging. Bioconjugate Chemistry 18: 1474-1482.
[129] Van Schooneveld MM, DP Cormode, R Koole, JT van Wijngaarden, C Calcagno, T Skajaa, J
Hilhorst, DC t Hart, ZA Fayad, WJ Mulder, et al . (2010). A fluorescent, paramagnetic and
PEGylated gold/silica nanoparticle for MRI, CT and fluorescence imaging. Contrast Media
Molecular Imaging 5: 231-236.
Search WWH ::




Custom Search