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1 acquisitions (0.91 for precontrast, 0.92 for corticomedullary, 0.91 for early nephrographic, and 0.93
2 was greater than that of oncocytomas in the corticomedullary (125 HU vs 106 HU, P = .045) and excret
3 s greater than that of papillary RCCs in the corticomedullary (125 HU vs 54 HU, P < .001), nephrograp
4 greater than that of chromophobe RCCs in the corticomedullary (125 HU vs 74 HU, P < .001) and excreto
6 The tumor-to-cortex enhancement indexes at corticomedullary and nephrographic phases were largest f
7 nical MR protocol was used before and after (corticomedullary and nephrographic phases) intravenous a
9 cted the spatial ordering of cells along the corticomedullary axis and quantitated expression levels
10 diction of spatial gene expression along the corticomedullary axis and quantitation of osmotically re
12 y localized to renal tubules situated at the corticomedullary boundary, consistent with the region of
13 n of Bowman's capsule followed temporally by corticomedullary cysts involving collecting ducts, proxi
14 tained before transplantation in donors, the corticomedullary difference was reduced in allografts (P
15 and bone bark), metaphyseal undulation, and corticomedullary differences were evaluated qualitativel
16 c-SCID who had died 3.5 mo after HSCT showed corticomedullary differentiation in the thymus, T cell z
17 ureteral dilatation, pelvic dilatation, and corticomedullary differentiation were analyzed and compa
18 ely assessed by two radiologists in terms of corticomedullary differentiation, subcalvarial space, sk
20 ing four phases each, including precontrast, corticomedullary, early nephrographic, and nephrographic
22 on Functional sodium MRI accurately depicted corticomedullary gradient (CMG) dynamic changes in healt
26 stnatal sheep the irregularly shaped adrenal corticomedullary interface is innervated by corticotropi
27 eys in one fetus showed tubular cysts at the corticomedullary junction and diffuse effacement of the
28 itic cells and macrophages were found at the corticomedullary junction and in foci in the thymic cort
29 of the peritubular capillary network in the corticomedullary junction and increased numbers of bone
30 usion-weighted imaging hyperintensity in the corticomedullary junction and skin biopsy revealed intra
32 revealed increased apoptotic cells near the corticomedullary junction in lymphoid follicles and in t
33 is a major cause of tubular necrosis in the corticomedullary junction of isolated perfused kidneys,
34 ed predominantly in intestinal villi and the corticomedullary junction of the kidney, whereas guanyli
37 , in situ apoptosis in the cortex and at the corticomedullary junction was responsible for a synchron
38 d kidney size, cysts are concentrated at the corticomedullary junction, and tubulointerstitial fibros
39 situ by thymic epithelium in the cortex and corticomedullary junction, two locations at which VCAM-1
40 ce revealed extensive ischemic injury at the corticomedullary junction, whereas kidneys from sham HO-
46 rring in 10.3 +/- 9.5% and 32.3 +/- 17.8% of corticomedullary-junction tubules by conventional light
47 the boundary between DP and SP thymocytes at corticomedullary junctions was disrupted and medullary s
49 hasic protocol, which included non-contrast, corticomedullary, nephrographic and urographic phases.
50 tember 2007, the prenephrectomy multiphasic (corticomedullary, nephrographic, and excretory phases),
51 ar positions on images from the precontrast, corticomedullary, nephrographic, and excretory phases.
52 MCECT imaging across 4 phases (non-contrast, corticomedullary, nephrographic, and excretory) was perf
54 Ls by approximately 60%, abolished the renal corticomedullary NH(4) (+) gradient, reduced the capacit
55 nized along a radial axis highlighted by the corticomedullary organization and regional patterning of
58 , Osp94 mRNA expression paralleled the known corticomedullary osmolality gradient showing highest exp
60 ephrographic phase compared with that in the corticomedullary phase (P = .0002 and P < .0001, respect
62 nal fat-suppressed T1-weighted gradient-echo corticomedullary phase acquisitions, obtained before and
63 was demonstrated in 11 neoplasms during the corticomedullary phase and in all neoplasms in the nephr
72 lear cell RCCs and oncocytomas peaked in the corticomedullary phase; mean enhancement of papillary an
73 ode), during (helical mode, 25-second delay, corticomedullary-phase images), and after (axial mode, 1
76 generate anatomically coregistered synthetic corticomedullary style images using T2-weighted images a