A synergistically enhanced T1-T2 dual-modal contrast agent. Zhou, Z., Huang, D., Bao, J., Chen, Q., Liu, G., Chen, Z., Chen, X., & Gao, J. Advanced Materials, 24(46):6223–6228, 2012. doi abstract bibtex Monodisperse Gd2O3-embedded iron oxide (GdIO) nanoparticles can simultaneously enhance the local magnetic field intensities of each other under an external magnetic field and result in synergistic enhancement of T1 and T2 effects. GdIO nanoparticles have the unique property to be both T1 and T2 contrast agents and can potentially lead to higher accuracy in cancer diagnosis, particularly liver tumors. © 2012 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.
@article{zhou_synergistically_2012,
title = {A synergistically enhanced {T1}-{T2} dual-modal contrast agent},
volume = {24},
issn = {09359648},
doi = {10.1002/adma.201203169},
abstract = {Monodisperse Gd2O3-embedded iron oxide (GdIO) nanoparticles can simultaneously enhance the local magnetic field intensities of each other under an external magnetic field and result in synergistic enhancement of T1 and T2 effects. GdIO nanoparticles have the unique property to be both T1 and T2 contrast agents and can potentially lead to higher accuracy in cancer diagnosis, particularly liver tumors. © 2012 WILEY-VCH Verlag GmbH \& Co. KGaA, Weinheim.},
number = {46},
journal = {Advanced Materials},
author = {Zhou, Zijian and Huang, Dengtong and Bao, Jianfeng and Chen, Qiaoli and Liu, Gang and Chen, Zhong and Chen, Xiaoyuan and Gao, Jinhao},
year = {2012},
pmid = {22972529},
keywords = {T1-T2 dual-modal, accuracy, liver tumor, molecular imaging, synergistic enhancement},
pages = {6223--6228},
}
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