Biomedical Engineering Reference
In-Depth Information
37 Laurent , S. , Forge , D. , Port , M. , Roch ,
A. , Robic , C. , Van der Elst , L. and
Muller , R.N. ( 2008 ) Magnetic iron oxide
nanoparticles: synthesis, stabilization,
vectorization, physiochemical
characterizations, and biological
applications . Chemical Reviews , 108 ,
2064 - 110 .
38 Gupta , A.K. and Gupta , M. ( 2005 )
Synthesis and surface engineering of
iron oxide nanoparticles for biomedical
applications . Biomaterials , 26 ,
3995 - 4021 .
39 Petri - Fink , A. and Hofmann ,
H. ( 2007 ) Superparamagnetic
iron oxide nanoparticles (SPIONs): from
synthesis to in vivo studies - a summary
of the synthesis, characterization, in
vitro, and in vivo investigations of
SPIONs with particular focus on surface
and colloidal properties. IEEE
Transactions on Nanobioscience , 6 ,
289 - 97 .
40 Wunderbaldinger , P. , Josephson , L. and
Weissleder , R. ( 2002 ) Crosslinked iron
oxides (CLIO): a new platform for the
development of targeted MR contrast
agents . Academic Radiology , 9 ( Suppl. 2 ),
S 304 - 6 .
41 Josephson , L. , Tung , C. - H. , Moore , A.
and Weissleder , R. ( 1999 ) High -
effi ciency intracellular magnetic labeling
with novel superparamagnetic-tat
peptide conjugates. Bioconjugate
Chemistry , 10 , 186 - 91 .
42 Singer , J.M. and Plotz , C.M. ( 1956 ) The
latex fi xation test. I. Application to the
serologic diagnosis of rheumatoid
arthritis . The American Journal of
Medicine , 21 , 888 - 92 .
43 Price , C.P. and Newman , D.J. ( 1997 )
Principles and Practice of Immunoassay ,
MacMillan Reference , London .
44 Van Weemen , B.K. and Shuurs , A.H.W.
( 1971 ) Immunoassay using antigen -
enzyme conjugates . FEBS Letters , 15 ,
232 - 6 .
45 Perez , J.M. , Josephson , L. , O ' Loughlin ,
T. , H รถ gemann , D. and Weissleder , R.
( 2002 ) Magnetic relaxation switches
capable of sensing molecular
interactions . Nature Biotechnology , 20 ,
816 - 20 .
46 Perez , J.M. , Simeone , F.J. , Saeki , Y. ,
Josephson , L. and Weissleder , R. ( 2003 )
Viral - induced self - assembly of magnetic
nanoparticles allows the detection of
viral particles in biological media.
Journal of the American Chemical Society ,
125 , 10192 - 3 .
47 Zhao , M. , Josephson , L. , Tang , Y. and
Weissleder , R. ( 2003 ) Magnetic sensors
for protease assays. Angewandte Chemie,
International Edition in English , 42 ,
1375 - 8 .
48 Kaittanis , C. , Naser , S.A. and Perez , J.M.
( 2007 ) One - step, nanoparticle - mediated
bacterial detection with magnetic
relaxation . Nano Letters , 7 , 380 - 3 .
49 Lowery , T.J. , Palazzolo , R. , Wong , S.M. ,
Prado , P.J. and Taktak , S. ( 2008 )
Single - coil, multisample, proton
relaxation method for magnetic
relaxation switch assays. Analytical
Chemistry , 80 , 1118 - 23 .
50 Hahn , E.L. ( 1950 ) Nuclear induction due
to free Lamour precession. Physical
Review , 77 , 297 - 8 .
51 Carr , H.Y. and Purcell , E.M. ( 1954 )
Effects of diffusion on free precession
in nuclear magnetic resonance
experiments . Physical Review , 94 , 630 - 8 .
52 Meiboom , S. and Gill , D. ( 1958 )
Modifi ed spin-echo method for
measuring nuclear relaxation times.
Review of Scientifi c Instruments , 29 ,
688 - 91 .
53 Muller , R.N. , Gillis , P. , Moiny , F.
and Roch , A. ( 1991 ) Transverse
relaxivity of particulate MRI contrast
media: from theories to experiments.
Magnetic Resonance in Medicine , 22 ,
178 - 82 .
54 Weisskoff , R.M. , Zuo , C.S. , Boxerman ,
J.L. and Rosen , B.R. ( 1994 ) Microscopic
susceptibility variation and transverse
relaxation: theory and experiment.
Magnetic Resonance in Medicine , 31 ,
601 - 10 .
55 Bulte , J.W.M. , Brooks , R.A. , Moskowitz ,
B.M. , Bryant , L.H. and Franck , J.A.
(1998) T1 and T2 relaxometry of
monocrystalline iron oxide nanoparticles
(MION-46L): theory and experiment.
Academic Radiology , 5 ( Suppl. 1 ),
S 137 - 40 .
Search WWH ::




Custom Search