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1 on; and the measurement of metabolites using chemical shift imaging.
2 cer cells using 19F NMR spectroscopy and 19F chemical shift imaging.
3  BAH show evidence of intracellular lipid at chemical shift imaging.
4 ue sarcomas in vivo, using three-dimensional chemical shift imaging.
5 ell as simultaneous multi-metal detection by chemical shift imaging.
6 d and robust sequence called two-dimensional Chemical Shift Imaging (2D CSI) with prospective under s
7                               Whole body 19F chemical shift imaging (6 x 6 mm in-plane resolution) of
8 , long echo time, stimulated-echo hydrogen-1 chemical shift imaging and short echo time unsuppressed
9 quired diffusion tensor imaging, multiplanar chemical shift imaging, and cognitive measures requiring
10 which include T1-weighted spin-echo imaging, chemical shift imaging, and diffusion-weighted imaging w
11 )P-NMR was performed, using the technique of chemical shift imaging at various time points after 70%
12              In addition, we demonstrate how chemical shift imaging can differentiate the region of l
13 ation transfer difference NMR (STD NMR) with chemical shift imaging (CSI) and controlled concentratio
14 of imaging glucose metabolism in vivo by MRI chemical shift imaging (CSI) experiments that relies on
15 e, we present a new method based on (1)H NMR chemical shift imaging (CSI) that enables the binding af
16 h magnetic resonance spectroscopy [MRS using chemical shift imaging (CSI) total choline (tCho)] and C
17                                   Multivoxel chemical shift imaging (CSI) was used to explore creatin
18 clear magnetic resonance (NMR) 1-dimensional chemical shift imaging (CSI).
19 tration along a concentration gradient using chemical shift imaging (CSI).
20 h daily doses of cediranib, acquiring serial chemical shift imaging data at specific time points duri
21                                        (31)P chemical shift imaging data were acquired untriggered an
22 vily used and useful, but with the advent of chemical shift imaging, diffusion-weighted imaging, perf
23 gradient of an organic base in a single (1)H chemical shift imaging experiment that can be run under
24 Echo Asymmetry and Least-squares estimation) chemical shift imaging in combination with single-shot s
25  measure hepatic and pancreatic fat, we used chemical shift imaging (in-phase and out-of-phase), meas
26                                              Chemical shift imaging is a noninvasive tool that can id
27                      In the second approach, chemical shift imaging is applied to acquire both the sp
28                                              Chemical shift imaging is more time-consuming than selec
29 agnetic resonance spectroscopy-2-dimensional chemical shift imaging method, this study examined the h
30 ion of spatially localized spectra using 13C chemical shift imaging methods.
31                                       Proton chemical shift imaging of the brain was performed in a c
32                                    Deuterium chemical shift imaging of the tumor bearing limb and con
33 for tissue segmentation followed by 31P MRS, chemical shift imaging scan with 84 voxels of data colle
34 together with a three-dimensional (3D) (31)P chemical shift imaging sequence (5.7-mL voxel volume) pe
35  also imaged in EL4 tumors using a fast (2)H chemical shift imaging sequence.
36                FID CSI (Free Induction Decay Chemical Shift Imaging) sequence was used with the follo
37            The FID CSI (Free Induction Decay Chemical Shift Imaging) sequence was used with the follo
38 gional difference in vivo, the 1-dimensional chemical shift imaging technique (1D-CSI) was used to ac
39 ing a unique, noninvasive magnetic resonance chemical shift imaging technique at 3 T and compared wit
40 agnetic resonance spectroscopy-2-dimensional chemical shift imaging technology.
41                                         With chemical shift imaging, the signal intensity decreased o
42 ance spectroscopy and spectroscopic imaging (chemical shift imaging) to detect activation of the prod
43              For ATP resynthesis analysis, P chemical shift imaging was acquired and analyzed.
44  transverse T1- and T2-weighted imaging, and chemical shift imaging was performed in 17 patients.
45 ift imaging and short echo time unsuppressed chemical shift imaging were performed on the lower legs
46 olite concentrations were measured by proton chemical shift imaging within voxels placed in the centr