the effect of inversion time on the relationship between iron oxide nanoparticles concentration and signal intensity in t1-weighted mr images
نویسندگان
چکیده
conclusions ti is an important parameter to consider in the relationship between si and nanoparticle concentrations. an increase in ti leads to a decrease in the range of linearity. results the results indicate that si depended on the concentration of nanoparticles and ti. in addition, si increased by increasing the tis ranging from 200 to 400 ms for all studied concentrations. the linear relationship between the nanoparticle concentrations and si that gave a square correlation coefficient (r2) equal to 0.99 was seen up to 76.83 µmol fe/l in 400 ms for long ti and 239.16 µmol fe/l in 200 ms for short ti. background magnetic nanoparticles have been widely applied in recent years for biomedical applications. signal intensity (si) of magnetic resonance (mr) images depends on the concentration of nanoparticles. it is important to find the minimum concentration of iron oxide nanoparticles that produces maximum si and determines the minimum injection dose for clinical studies. objectives this study was performed to determine the relationship between the iron oxide nanoparticle concentration and si using inversion recovery (ir) sequence in t1-weighted mr images. materials and methods different concentrations of carboxydextran-coated iron oxide nanoparticles 20 nm in size were prepared. in vitro mr imaging was performed with inversion times (ti) of 100-400 ms (interval of 20 ms) and ir turbo-flash (turbo fast low angle shot) pulse sequence using a 1.5 t mri system. then the si produced by each concentration of nanoparticles was measured and the minimum nanoparticle concentration that led to the maximum si was determined. coil non-uniformity was also considered for measuring the accurate si of each image.
منابع مشابه
The Effect of Inversion Time on the Relationship Between Iron Oxide Nanoparticles Concentration and Signal Intensity in T1-Weighted MR Images
BACKGROUND Magnetic nanoparticles have been widely applied in recent years for biomedical applications. Signal intensity (SI) of magnetic resonance (MR) images depends on the concentration of nanoparticles. It is important to find the minimum concentration of iron oxide nanoparticles that produces maximum SI and determines the minimum injection dose for clinical studies. OBJECTIVES This study...
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متن کاملEffect of iron oxide nanoparticles coating type on the relationship between nanoparticles concentration and signal intensity in inversion recovery T1-weighted MRI
BACKGROUND Ultrasmall superparamagnetic iron oxide (USPIO) nanoparticles are used as blood pool contrast agent for magnetic resonance angiography and perfusion imaging. Our aim in this study was to investigate the effect of the two coating types of iron oxide nanoparticles on the relationship between nanoparticles concentration and signal intensity (SI) in T1-weighted MR images. METHODS Diffe...
متن کاملeffect of iron oxide nanoparticles coating type on the relationship between nanoparticles concentration and signal intensity in inver-sion recovery t1-weighted mri
background: ultrasmallsuperparamagnetic iron oxide (uspio) nanoparticles are used as blood pool contrast agent for magnetic resonance angiography and perfusion imaging. our aim in this study was to investigate the effect of the two coating types of iron oxide nanoparticles on the relationship between nanoparticles concentration and signal intensity (si) in t1-weighted mr images. methods : dif...
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results the maximum si was obtained at the highest applied flip angle (45°). the linear relationship between si and nanoparticle concentration was seen up to 112.21 and 98.83 μmol fe/l for the short (10°) and the long (45°) flip angles, respectively (r2 = 0.95). these values were reduced up to 48.54 and 42.73 μmol fe/l for these flip angles with r2 of 0.99. conclusions the maximum si will be in...
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عنوان ژورنال:
iranian journal of radiologyجلد ۱۱، شماره ۲، صفحات ۰-۰
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