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1 glucosamine ring is opened by oxidation with periodic acid, a dihydrazide linker is coupled to the ox
6 competitive with classical reagents, such as periodic acid or lead tetraacetate, as a preferred metho
7 ages stained with Hematoxylin & Eosin (125), Periodic Acid Schiff (125), Silver (102), and Trichrome
8 hibited positive reactivity with alcian blue-periodic acid Schiff (PAS) reagent, goblet cell-specific
11 ystemic workup, and surgical excision showed Periodic acid Schiff (PAS)-positive eosinophilic structu
14 criteria: positive staining for alcian blue/periodic acid Schiff reagent, cytokeratin (CK)-7, the le
18 al changes and IDO expression, respectively, periodic acid schiff staining and immunohistochemistry f
19 llel, RTDs were stained with hematoxylin and periodic acid Schiff to determine pericyte loss (PL) and
20 bronchial mucosal biopsies were stained with Periodic Acid Schiff-Alcian Blue, and GCD was measured a
24 analysis approaches were employed on 254/266 Periodic acid Schiff-stained whole slide image (WSI) kid
27 glycogen in the HF we quantified glycogen by Periodic-Acid Schiff (PAS) histomorphometry and colorime
28 the bronchoalveolar lavage fluid, decreased periodic-acid Schiff staining, and significantly less mu
30 sed histological staining with 'Alcian Blue, Periodic Acid, Schiff's' and 'High-Iron diamine' to asse
32 potassium hydroxide (KOH) stain followed by periodic acid-Schiff (PAS) evaluation if KOH testing is
33 inflammatory alterations, the appearance of Periodic Acid-Schiff (PAS) granules and changes in gene
35 in sections stained with hematoxylin-eosin, periodic acid-Schiff (PAS) reaction, and Masson trichrom
36 ement membrane that stains positive with the periodic acid-Schiff (PAS) reagent in the absence of end
39 dium dodecyl sulfate-polyacrylamide gel with periodic acid-Schiff (PAS) stain or blotting with Galant
40 served appendix specimens were reexamined by periodic acid-Schiff (PAS) staining and PCR to identify
42 ssues and correlated with hematoxylin-eosin, periodic acid-Schiff (PAS), and mucicarmine-stained prep
43 MECs were positive for CK7, CEA, as well as periodic acid-Schiff (PAS), whereas negative for CK5/6,
48 stained airway goblet cells with Alcian blue/periodic acid-Schiff and determined the number of goblet
51 m H&E to special stains (Masson's Trichrome, periodic acid-Schiff and Jones silver stain) using kidne
55 using western blot, staining by Coomassie or Periodic Acid-Schiff base in gels, and with proteomics.
56 onal general histology stains such as H&E or periodic acid-Schiff but use fluorescent probes that are
57 r infection with L. interrogans Histological periodic acid-Schiff D staining of infected kidney showe
58 cular surface epitheliopathy and Alcian blue/periodic acid-Schiff histochemical analysis to character
59 uridine-labeled cells and cells positive for periodic acid-Schiff in the basal region of fundic gland
62 ria (48%, P < 0.02), glomerular staining for periodic acid-Schiff positive material (33%, P < 0.02),
64 ical report showed macrophages with positive periodic acid-schiff reaction staining (PAS staining), d
66 e nearly comparable to that of the annotated periodic acid-Schiff stain and could further uphold perf
68 ass hepatocellular inclusions (positive with periodic acid-Schiff stain for glycogen) were reported i
70 antrum biopsy samples were stained with H&E, periodic acid-Schiff stain, and antibody to MUC5AC, the
71 e sections stained by hematoxylin and eosin, periodic acid-Schiff stain, and Gomori methenamine silve
76 ased the number of goblet cells, Alcian blue-periodic acid-Schiff staining (reflecting mucous glycoco
77 the bulbar conjunctiva of the right eye for periodic acid-Schiff staining and from the left eye for
78 reases in extracellular matrix accumulation (periodic acid-Schiff staining and immunofluorescence of
79 studies performed in this category included Periodic Acid-Schiff staining for fungi, PCR analysis fo
80 qPCR for hepatocyte markers gene expression, Periodic Acid-Schiff staining for glycogen storage, ELIS
81 Mucus production was determined by means of periodic acid-Schiff staining of lung sections, Western
83 r histochemically stained counterparts (with periodic acid-Schiff staining), showing high concordance
84 nostaining, goblet cell hyperplasia by using periodic acid-Schiff staining, and cytokine and chemokin
85 arker, Y chromosome (in situ hybridization), periodic acid-Schiff staining, and subjected to autoradi
86 etected, which were undetectable on standard periodic acid-Schiff staining, even though only a single
87 in COVID-19 autopsy lungs by Alcian blue and periodic acid-Schiff staining, immunohistochemical stain
89 Observed gradients in glycogen storage via periodic acid-Schiff staining, urea production via carba
91 Light microscopy (hematoxylin and eosin, periodic acid-Schiff stains) and immunofluorescence--for
93 stry and a new technique using trichrome and periodic acid-Schiff subtraction morphometry; the other
94 er of epithelial cells staining positive for periodic acid-Schiff was observed in MCMV/AAD airways.
95 control mouse lungs contain few alcian blue/periodic acid-Schiff's (AB/PAS)+ staining 'goblet' cells
98 vested for histology (hematoxylin and eosin, periodic acid-Schiff) and terminal deoxynucleotidyl tran
100 ght-field microscopy, hematoxylin and eosin, periodic acid-Schiff, Congo red, and light microscopy.
101 liver were examined with hematoxylin-eosin, periodic acid-Schiff, Masson trichrome, or reticulin sta
102 ety of methods, including hematoxylin-eosin, periodic acid-Schiff, methenamine silver, and Masson tri
103 were stained with hematoxylin and eosin and periodic acid-Schiff, visualized by means of electron mi
105 , and histopathological analysis was made on periodic acid-Schiff- and trichrome C-stained thin kidne
111 g from cultured conjunctival cells contained periodic acid-Schiff-positive cells with a goblet cell s
113 whole liver and show that the hepatocellular periodic acid-Schiff-positive globular inclusions that a
114 ss spectrometry were reflected by changes in periodic acid-Schiff-positive material and expression of
116 anti-Siglec-F Ab modestly reduced levels of periodic acid-Schiff-positive mucus cells and the thickn
117 creased MUC5 gene expression and Alcian blue/periodic acid-Schiff-positive staining at 24 h; IL-4 did
118 h ADA deficiency, 7 had BAL fluid containing periodic acid-Schiff-positive surfactant-like material w
119 s shown that relying solely on visualizing a periodic acid-Schiff-positive vacuolar myopathy to ident
121 hologic feature of being densely loaded with periodic acid-Schiff-positive, diastase-resistant granul
122 previously developed CNN for segmentation of periodic acid-Schiff-stained kidney histology was used a
123 rk architecture for accurate segmentation of periodic acid-Schiff-stained kidney tissue from healthy
124 egmentation of digital whole-slide images of periodic acid-Schiff-stained kidneys from various specie
125 fer learning to analyze histologic images of periodic acid-Schiff-stained renal sections from a cohor
126 ce and colonization of RHE were evaluated in periodic acid-Schiff-stained sections, as well as by SEM
129 stinal metaplasia was typed by staining with periodic acid-Schiff/alcian blue and high-iron diamine/a
130 per develops and assesses the ability of the Periodic Acid Schiffs (PAS) assay to quantify alginate,
131 sion, sections were stained with Alcian blue/periodic acid-Schiffs reagent (AB/PAS) and with the lect
133 after treatment of the epithelial cells with periodic acid, suggesting a role for carbohydrates.