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1 of the internal capsules was determined with diffusion-weighted magnetic resonance imaging.
2 SCD and in 2 (6.7%) of 30 without SCD, using diffusion-weighted magnetic resonance imaging.
3 of new cerebral ischemic lesions assessed by diffusion-weighted magnetic resonance imaging.
4 e patients with cardiac arrest who underwent diffusion-weighted magnetic resonance imaging.
5 ements ranging from the delivery of drugs to diffusion-weighted magnetic resonance imaging.
6 t of water (ADC), which can be detected with diffusion-weighted magnetic resonance imaging.
7 odel system for studying light scattering or diffusion-weighted magnetic resonance imaging.
8 ocampus is seen with both histopathology and diffusion-weighted magnetic resonance imaging 24 hours a
9  (ADC) estimates in extracranial soft-tissue diffusion-weighted magnetic resonance imaging across a w
10                        Visual psychophysics, diffusion-weighted magnetic resonance imaging and fibre
11 elationship between metrics from post-mortem diffusion-weighted magnetic resonance imaging and histol
12 ated with rapid expansion of infarct core on diffusion-weighted magnetic resonance imaging and larger
13 nt human erythropoietin on brain edema using diffusion-weighted magnetic resonance imaging and measur
14 tielectrode electrophysiological recordings, diffusion-weighted magnetic resonance imaging, and c-fos
15 sion, dynamic contrast material-enhanced and diffusion-weighted magnetic resonance imaging, and posit
16  male:female ratio = 0.547), visualized with diffusion-weighted magnetic resonance imaging, and proce
17  by neurological testing and serial cerebral diffusion-weighted magnetic resonance imaging at baselin
18  of cortical disconnectivity as derived from diffusion-weighted magnetic resonance imaging data of pa
19 ure were constructed using T(1)-weighted and diffusion-weighted magnetic resonance imaging data.
20 ctivity in patients with bipolar I disorder (diffusion-weighted magnetic resonance imaging data; 216
21                                              Diffusion-weighted magnetic resonance imaging detects is
22                                              Diffusion-weighted magnetic resonance imaging detects th
23 xtracellular space were monitored in vivo by diffusion-weighted magnetic resonance imaging (diffusion
24        While the volume of tissue at risk by diffusion-weighted magnetic resonance imaging during MCA
25                                 Here we used diffusion-weighted magnetic resonance imaging (DW-MRI) a
26 s study investigates the predictive value of diffusion-weighted magnetic resonance imaging (DW-MRI) f
27  feasibility and prognostic utility of brain diffusion-weighted magnetic resonance imaging (DWI) duri
28      This study evaluates the performance of diffusion-weighted magnetic resonance imaging (DWI) for
29 combined with gemcitabine was measured using diffusion-weighted magnetic resonance imaging (DWI) in a
30                                              Diffusion-weighted magnetic resonance imaging (DWI) is c
31 e has been a rapid increase in studies using diffusion-weighted magnetic resonance imaging (DWI) to i
32                                 1.Time-lapse diffusion-weighted magnetic resonance imaging (DWI) was
33 ve addressed this problem through the use of diffusion-weighted magnetic resonance imaging (DWI).
34 ng patients with acute ischemic stroke using diffusion-weighted magnetic resonance imaging (DWI).
35 uilibrium syndrome (DDS) was investigated by diffusion-weighted magnetic resonance imaging (DWI).
36 s might reduce brain injury as determined by diffusion-weighted magnetic resonance imaging (DWMRI).
37 rty-seven patients with stroke underwent 236 diffusion-weighted magnetic resonance imaging examinatio
38                                The advent of diffusion-weighted magnetic resonance imaging has permit
39                                              Diffusion-weighted magnetic resonance imaging improves u
40 tural brain networks were reconstructed from diffusion-weighted magnetic resonance imaging in 38 non-
41                                              Diffusion-weighted magnetic resonance imaging metrics in
42 ies is now possible with a recently proposed diffusion-weighted magnetic resonance imaging modeling t
43                     We acquired 64-direction diffusion-weighted magnetic resonance imaging on 25 euth
44 k/stroke or new ischemic lesions on cerebral diffusion-weighted magnetic resonance imaging performed
45    The unique temporal features of stroke on diffusion-weighted magnetic resonance imaging permit est
46                                              Diffusion-weighted magnetic resonance imaging scans were
47 gender-matched comparison subjects underwent diffusion-weighted magnetic resonance imaging scans.
48                                       MT and diffusion-weighted magnetic resonance imaging sequences
49     Through the multiple-tensor modelling of diffusion weighted magnetic resonance imaging signals, d
50 dispersion and density imaging, a multishell diffusion-weighted magnetic resonance imaging technique
51                         On 3-month follow-up diffusion-weighted magnetic resonance imaging, there wer
52 y of in vivo magnetization transfer (MT) and diffusion-weighted magnetic resonance imaging to detect
53             Preprocedural and postprocedural diffusion-weighted magnetic resonance imaging was perfor
54                               Perfusion- and diffusion-weighted magnetic resonance imaging was perfor
55          In this study, using structural and diffusion-weighted magnetic resonance imaging, we invest
56 new foci of restricted diffusion on cerebral diffusion-weighted magnetic resonance imaging were found
57 hose 3 patients were referred for whole-body diffusion-weighted magnetic resonance imaging, which unc
58 (FDG)-positron emission tomography (PET) and diffusion-weighted magnetic resonance imaging with backg

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