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1 research, and positron emission tomographic vascular imaging.
2 hy and FCA among those subjects who received vascular imaging.
3 blood perfusion was reduced as documented by vascular imaging.
4 d specific educational components of CMR and vascular imaging.
5 use formal educational curricula for CMR and vascular imaging.
6 cell arteritis is most commonly diagnosed by vascular imaging.
7 ed the diagnostic and therapeutic aspects of vascular imaging.
8 ith tumors in host animals injected with the vascular imaging agent gadolinium also being enhanced le
11 Emerging evidence based on ultrasonographic vascular imaging and angiogenic biomarkers implicates an
12 d registry of patients with FMD confirmed by vascular imaging and currently enrolling at 14 participa
13 isplays favorable pharmacokinetics for early vascular imaging and enables specific detection of infla
16 With ongoing advancements in noninvasive vascular imaging and high-throughput genomics, we have t
17 us contrast enhancement dramatically improve vascular imaging and resolution within the prostate.
18 the current training environment in CMR and vascular imaging and the recommendations of COCATS-2.
19 cardiovascular magnetic resonance (CMR) and vascular imaging and to quantify the magnitude of any ga
20 timodality imaging technology, molecular and vascular imaging, and clinical guidelines with appropria
21 hy, EF5 immunostaining, Hoechst fluorescence vascular imaging, and hematoxylin-and-eosin histology-we
22 ates some predictive value for hypertension, vascular imaging, and polymorphisms affecting components
24 selection criteria, use of optimal brain and vascular imaging, appropriate devices for recanalization
26 care networks, the question of the need for vascular imaging at the RHs remains unsolved, resulting
28 delta(max) and lambda--readily obtained from vascular images, capture these differences and link vasc
29 Retinal layer segmentation and resultant vascular image compared with vessels as seen in histolog
31 ained renal ECM scaffolds were processed for vascular imaging, histology, and cell seeding to investi
32 otential use for CO2 as a contrast agent for vascular imaging in patients with suboptimal renal funct
34 r findings suggest that in certain subgroups vascular imaging, including collateral assessment, can p
35 hod, we were able to visualize the PA ocular vascular image intuitively and demonstrate layer-by-laye
37 isk plaque in vivo; however, these important vascular imaging methods additionally promise great scie
39 of molecular probes for alternative in vivo vascular imaging modalities, but few options for genetic
40 ence tomography angiography is a noninvasive vascular imaging modality that clearly depicts the loopi
44 eld MSOT was found to be capable of clinical vascular imaging, providing visualization of major blood
49 label-free, high resolution, and wide-field vascular imaging, revealed the absence of both capillary
51 troke-specialist assessment, urgent MRI, and vascular imaging should now be considered, with monitori
52 al animal studies, human biomarker data, and vascular imaging studies provide support for proceeding
55 e. punch skin biopsies, DSA and conventional vascular imaging studies) are inadequate for detecting t
56 isk factor assessment, as well as a complete vascular imaging study that was performed blinded to the
58 ing whole brain CT perfusion and concomitant vascular imaging, suggest that age has a differential ef
60 to the widespread use of noninvasive in vivo vascular imaging techniques is the current lack of suita
62 After a review of basic considerations in vascular imaging, the established methods for nonenhance
63 imaging platforms are available for targeted vascular imaging to acquire information on both anatomy
64 gy applications, including material science, vascular imaging, vaccine development, and targeted drug
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