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329 results for “histopathology”
Figure 5 in A histopathological study on the freshwater fish species chub (Squalius cephalus) in the Karasu River, Turkey
Figure 5. Photomicrograph of normal liver of the fish from Site S. Central vein (*), hepatocyte (arrow head), and sinusoid (arrow).
Figure 4 in A histopathological study on the freshwater fish species chub (Squalius cephalus) in the Karasu River, Turkey
Figure 4. Photomicrograph of pathologically abnormal gills of the fish from Site A. A Lamellar disorganization (arrows), B Blood congestion in secondary lamellae and the lamellar vascular axis (asterisks), C Partial fusion of some lamellae (arrows), D Aneurysm in lamellar vascular axis (arrows).
Figure 3 in A histopathological study on the freshwater fish species chub (Squalius cephalus) in the Karasu River, Turkey
Figure 3. Photomicrograph of pathologically abnormal gills of the fish from Site A. A Hypertrophy of the lamellar epithelium (arrows); B High severity of filamentary epithelium, hyperplasia that induced complete lamellar fusion (arrows), and vasodilatation of the central venous (*); C Lifting of lamellar epithelium (arrows) and cartilage tissue (arrow heads); D Lamellae shortening (arrows).
Figure 7 in A histopathological study on the freshwater fish species chub (Squalius cephalus) in the Karasu River, Turkey
Figure 7. Photomicrograph of abnormal liver of the fish from Site A. A Congestion of central vein (*), B Blood congestion in hepatic parenchyma (asterisks), C Epithelial degeneration of central vein (arrows), D Hepatic tissue showing necrosis areas (asterisks) and hepatocytes with pyknotic nucleus (arrows), E Hepatic granuloma (black arrow) consisting of melanomacrophage aggregates (white arrows) with lightly pigmented cytoplasm.
Figure 2 in A histopathological study on the freshwater fish species chub (Squalius cephalus) in the Karasu River, Turkey
Figure 2. Photomicrograph of normal gills of the fish from Site S. Normal aspect of the gill, showing secondary lamella (1), primary lamella (2), filament (F).
Figure 6 in A histopathological study on the freshwater fish species chub (Squalius cephalus) in the Karasu River, Turkey
Figure 6. Photomicrograph of abnormal liver of the fish from Site A. A Proliferation of the hepatopancreas (arrow); B Nonhomogeneous parenchyma tissue (colored dark and light hepatocytes); C Increasing melanomacrophage aggregates (arrows); D Sinusoidal dilatation (arrow head), hepatocyte hypertrophy (arrows), and necrosis (circle).
Fig 2 in Study of haematology profile & histopathological changes in di-ammonium phosphate induced climbing perch, Anabas testudineus (Bloch.)
Fig 2: Showing the effect of Di-ammonium phosphate on Neutrophil, Monocytes, Basophil in Anabas testudineus (96 hrs) *P<0.05, *** P<0.001
Fig 7.A in Study of haematology profile & histopathological changes in di-ammonium phosphate induced climbing perch, Anabas testudineus (Bloch.)
Fig 7.A: Photomicrograph of the testes of Anabas testudineus control fish showing sperm (SP), spermatogonia (SG), spermitide (ST), secondary spermatocyte (SS), primary spermocytes (PS). H.&E., 200X
Fig 3 in Study of haematology profile & histopathological changes in di-ammonium phosphate induced climbing perch, Anabas testudineus (Bloch.)
Fig 3: Showing the effect of Di-ammonium phosphate on Lymphocytes, Eosinophil, PCV, in Anabas testudineus (96 hrs) ** P<0.01
Fig 4.B in Study of haematology profile & histopathological changes in di-ammonium phosphate induced climbing perch, Anabas testudineus (Bloch.)
Fig 4.B: Photomicrograph of the liver of Anabas testudineus treated with DAP- 0.092 g/L for 20 days showing hemorrhagic liver tissue, blood congestion and necrotic cells. H. & E., 100X
Fig 5.B in Study of haematology profile & histopathological changes in di-ammonium phosphate induced climbing perch, Anabas testudineus (Bloch.)
Fig 5.B: Photomicrograph of kidney of A. testudineus treated with DAP-0.092 g/l for 20 days showing degeneration of renal tubular epithelium, vacuolation and necrosis of renal tubules along with infiltration and necrosis of melanomacrophage center (arrow). H.&E., 20X
Fig 1 in Study of haematology profile & histopathological changes in di-ammonium phosphate induced climbing perch, Anabas testudineus (Bloch.)
Fig 1: Showing the effect of Di-ammonium phosphate on Hb, RBC, WBC in Anabas testudineus (96 hrs) ***P<0.001
Fig 8.B in Study of haematology profile & histopathological changes in di-ammonium phosphate induced climbing perch, Anabas testudineus (Bloch.)
Fig 8.B: Photomicrograph of the ovary of Anabas testudineus treated with DAP- 0.092 g/L for 20 days showing (NU) Nucleolus condensed, (CT) Connective tissue degenerate (AF) Atretic follicle & (FW) Follicular wall disrupted. H.&E., 200X.
Fig 8.A in Study of haematology profile & histopathological changes in di-ammonium phosphate induced climbing perch, Anabas testudineus (Bloch.)
Fig 8.A: Photomicrograph of the ovary of Anabas testudineus control fish showing (OW) Ovarian wall, (FE) Follicular epithelium, (N) Nucleus, (NU) Nucleolus, (OC) Oocyte. H.&E., 200X
Fig 5.A in Study of haematology profile & histopathological changes in di-ammonium phosphate induced climbing perch, Anabas testudineus (Bloch.)
Fig 5.A: Photomicrograph of kidney of Anabas testudineus from control group showing normal. H.&E., 200X
Fig 7.B in Study of haematology profile & histopathological changes in di-ammonium phosphate induced climbing perch, Anabas testudineus (Bloch.)
Fig 7.B: Photomicrograph of the testes of Anabas testudineus treated with DAP- 0.092 g/L for 20 days showing sperm (SP), spermatogonia condensation (SG), spermitide (ST), secondary spermatocyte vacuolation (SS). H.&E., 200x
Fig 6.B in Study of haematology profile & histopathological changes in di-ammonium phosphate induced climbing perch, Anabas testudineus (Bloch.)
Fig 6.B: Photomicrograph of Intestine tissue of A. testudineus exposed to DAP- 0.092 g/L for 20 days showing desquamation (orange arrow) and mononuclear cell infiltration (MHI) (arrow). H.&E. 120X
Fig 6.A in Study of haematology profile & histopathological changes in di-ammonium phosphate induced climbing perch, Anabas testudineus (Bloch.)
Fig 6.A: Photomicrograph of Intestine tissue of A. testudineus in control group showing normal appearance of circular muscles, longitudinal muscles, serosa and villi. H.&E., 120X.
Figure 2 in Potential histopathological and immunological effects of SARS-CoV-2 on the liver
Figure 2. Potential mechanisms of hepatic injury with SARS-CoV-2 infection adapted from Yang et al. (2020).
Fig. 4 in The relationships among Leishmania infantum and phyllostomid bats assessed by histopathological and molecular assays
Fig. 4. Photomicrography of spleen of an adult male Artibeus planirostris (A) and Carollia perspicillata (B) qPCR Leishmania infantum positive. No amastigotes forms were found. Note tingible bodies macrophages in the germinal center containing phagocytic apoptotic cells (arrow) and apoptotic cells (arrowhead), H&E, 40x objective.
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International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.