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37 results for “5-HT”
Figure 6 in Gastroesophageal tube of the Iguana iguana (Iguanidae): histological description, histochemical and immunohistochemical analysis of 5-HT and SS cells
Figure 6. Immunoreactivity for Serotonin (5-HT) a-g and Somatostatin (SS) i-h in histological sections of the oesophagus (a,b), cranial stomach (c), middle stomach (d,e) and caudal stomach (f-i) of I. iguana. a-g Serotonin-positive cells (arrow). h,i Somatostatin-positive cells (arrowhead) in the caudal region of the stomach.
Figure 5 in Gastroesophageal tube of the Iguana iguana (Iguanidae): histological description, histochemical and immunohistochemical analysis of 5-HT and SS cells
Figure 5. Histological sections of caudal region in stomach. The epithelium lining (EP) is simple columnar with gastric glands (G) in the lamina propria (LP). M: mucosa. Note the thickening of the muscular layer (ML) and the presence of serosa (S). Detail of mucous layer with epithelium (EP), lamina propria (LP), gastric glans (G), muscularis mucosa (MM) and submucosa (SM). HE staining. Bars = 300 µm.
Figure 4 in Gastroesophageal tube of the Iguana iguana (Iguanidae): histological description, histochemical and immunohistochemical analysis of 5-HT and SS cells
Figure 4. Histological sections of cranial and middle region in stomach. Note the gastric glands are more developed in the middle region, occupying a large part of the lamina propria (star). M: mucosa, SM: submucosa, ML: muscular layer and S: serosa. HE staining.
Figure 1 in Gastroesophageal tube of the Iguana iguana (Iguanidae): histological description, histochemical and immunohistochemical analysis of 5-HT and SS cells
Figure 1. Histological sections of the mucosa layer of I. iguana in different regions of the oesophagus and stomach. HE. Bars = 100 µm. Caudal eosophagus 20 µm.
Figure 3 in Gastroesophageal tube of the Iguana iguana (Iguanidae): histological description, histochemical and immunohistochemical analysis of 5-HT and SS cells
Figure 3. Histological sections of cervical oesophagus of I. iguana. Observe longitudinal folds. Absence of glands in the lamina propria (LP) and submucosa (SM), and evident muscular layer (ML) and adventitia (A). Bars = 3 mm. Detail of mucous layer with epithelium (EP), lamina propria (LP) and muscularis mucosa (MM). Gomori`s tricrome staining.
Figure 2 in Gastroesophageal tube of the Iguana iguana (Iguanidae): histological description, histochemical and immunohistochemical analysis of 5-HT and SS cells
Figure 2. Histological sections of the (a,b) oesophagus, (c) cranial, (d) middle and (e-f) caudal regions of stomach of I. iguana. (a) After Periodic Acid Schiff (PAS) staining the glycoconjugates are identified in magenta in the goblet cells (arrow) in oesophagus; (b) The ephitelium (EP) of oesophagus has positive histochemical reaction to Alcian Blue (AB, pH 2.5); (c-f) The epithelium lining of stomach is simple columnar mucous with positive histochemical reactions to PAS (c,e) and AB (d,f). (c) Note the mucous cells PAS-positive along the glands (arrowhead) in cranial region of stomach; (e) In caudal region gastric glands (G) are positive only for PAS reaction.
Graph 1 in Gastroesophageal tube of the Iguana iguana (Iguanidae): histological description, histochemical and immunohistochemical analysis of 5-HT and SS cells
Graph 1. Number of 5-HT and SS-cells/µm2 per oesophageal and gastric region in I. iguana. Values are averages with their standard deviatin shown by vertical bars (p = 0,05). Cervical oesophagus (CER): 4.6x10-2 ± 2.0 [5-HT cells]/µm2. Celomatic oesophagus (CEL): 4.0x10-2 ± 1.0 [5-HT cells]/µm2. Cranial and middle regions of the stomach (C/MS): 6.18x10-2 ± 3.2 [5-HT cells]/µm2. Caudal Stomach (CS): 0.6x10-2 ± 0.2 [5-HT cells]/µm2 and 1.4x 10-2 ± 0.9 [SS-cells]/µm2.
Data from: Host 5-HT affects Plasmodium transmission in mosquitoes via modulating mosquito mitochondrial homeostasis
Open the record for dataset details and reuse information.
PET Imaging of Brain 5-HT(1A) Receptors Using [(11)C](-)-RWAY
ClinicalTrials.gov study NCT00263523. IPD Sharing: Not stated. Countries: 1. Publications: 1.
Figure 5 from: Shepherd B, Phelps TAY, Pinheiro HT, Rocha CR, Rocha LA (2020) Two new species of Plectranthias (Teleostei, Serranidae, Anthiadinae) from mesophotic coral ecosystems in the tropical Central Pacific. ZooKeys 941: 145-161. https://doi.org/10.3897/zookeys.941.50243
Figure 5 Living specimens of APlectranthias hinano sp. nov. at Steinhart Aquarium, California Academy of Sciences BPlectranthias cf. bennetti photographed at a depth of 120 m at Maloelap Atoll, Republic of the Marshall Islands, and CPlectranthias bennetti photographed in an aquarium. Photographs by T Wong (A), LA Rocha (B), and YK Tea (C).
Figure 5 from: Ngoc NV, Binh HT, Nagahama A, Tagane S, Toyama H, Matsuo A, Suyama Y, Yahara T (2021) Morphological and molecular evidence reveals three new species of Lithocarpus (Fagaceae) from Bidoup-Nui Ba National Park, Vietnam. PhytoKeys 186: 73-92. https://doi.org/10.3897/phytokeys.186.69878
Figure 5 Lithocarpus hongiaoensis Ngoc & Binh A habit B twig with young inflorescences C leaves D young male inflorescence E infructescence F inside of mature cupule.
Supplementary material 5 from: Ngo HT, Do QH, Pham CT, Luu VQ, Grismer L, Ziegler T, Nguyen VTH, Nguyen TQ, Le MD (2022) How many more species are out there? Current taxonomy substantially underestimates the diversity of bent-toed geckos (Gekkonidae, Cyrtodactylus) in Laos and Vietnam. ZooKeys 1097: 135-152. https://doi.org/10.3897/zookeys.1097.78127
Table S5
Figure 5 from: Tan MK, Artchwakom T, Abdul Wahab RH, Lee C-Y, Belabut DM, Wah Tan HT (2017) Overlooked flower-visiting Orthoptera in Southeast Asia. Journal of Orthoptera Research 26: 143-153. https://doi.org/10.3897/jor.26.15021
Figure 5 - Examples of flower-visiting orthopterans on native plant species: A. Alloteratura species on Dillenia suffruticosa in Singapore, B. Tremellia timah on Dillenia suffruticosa in Singapore, C. Elimaea carinata on Melastoma malabathricum in Singapore, and D. Ornebius rufonigrus on Ixora congesta in Singapore.
Figure 5 from: Binh HT, Ngoc NV, Bon TN, Tagane S, Suyama Y, Yahara T (2018) A new species and two new records of Quercus (Fagaceae) from northern Vietnam. PhytoKeys 92: 1-15. https://doi.org/10.3897/phytokeys.92.21831
Figure 5 Image of Quercus bella Chun & Tsiang. A Leafy twig B Adaxial side of mature leaf C Abaxial side of mature leaf D Infructescense and mature fruit (A–D from Yahara et al. V6981 (DLU, FU)) E Inside of cupule F Bottom of nut (E–F from Binh et al. V6038 (FU))
Figure 5 from: Chen W-H, Radbouchoom S, Nguyen HQ, Nguyen HT, Nguyen KS, Shui Y-M (2018) Seven new species of Begonia (Begoniaceae) in Northern Vietnam and Southern China. In: Jin X-H, Shui Y-M, Tan Y-H, Kang M (Eds) Plant diversity in Southeast Asia. PhytoKeys 94: 65-85. https://doi.org/10.3897/phytokeys.94.23248
Figure 5 Begonia gulongshanensis Y.M. Shui & W.H. Chen A Habitat B View of adaxial leaf C View of abaxial leaf D Staminate flower, face view, side view and dorsal view E Pistillate flower, face view and side view F Inflorescence K Cross section of ovary in the middle part. (All photographs by Y.M. Shui).
Figure 5 from: Barsalote EM, Pham HT, Lazarova S, Peneva V, Zheng J (2018) Description of Longidorus cheni sp. n. (Nematoda, Longidoridae) from China. ZooKeys 744: 1-18. https://doi.org/10.3897/zookeys.744.23265
Figure 5 Scatter plot of odontostyle (◆, ▲, ◼) and replacement odontostyle (×) against body length of Longidorus cheni sp. n. juveniles (J1 to J3) and (◆) adults.
Figure 5 from: Binh HT, Ngoc NV, Tagane S, Toyama H, Mase K, Mitsuyuki C, Strijk JS, Suyama Y, Yahara T (2018) A taxonomic study of Quercus langbianensis complex based on morphology, and DNA barcodes of classic and next generation sequences. PhytoKeys 95: 37-70. https://doi.org/10.3897/phytokeys.95.21126
Figure 5 Quercus baniensis A.Camus. A Leafy twig B Abaxial side of mature leaf C Infructescence and young fruits D Dried specimen. Materials: A, B from Hoang T.S. & Tagane S. V6922 C, D from Tagane et al. V3089.
Figure 5 from: Ghiglione C, Alvaro MC, Cecchetto M, Canese S, Downey R, Guzzi A, Mazzoli C, Paola Piazza P, Rapp HT, Sarà A, Schiaparelli S (2018) Porifera collection of the Italian National Antarctic Museum (MNA), with an updated checklist from Terra Nova Bay (Ross Sea). ZooKeys 758: 137-156. https://doi.org/10.3897/zookeys.758.23485
Figure 5 Detailed map of the sampling stations of the PNRA expeditions II XIV, XV, XVII, XX, XXI, XXV, XXVII, XXVIII, XXIX.
Figure 5 from: Tea Y-K, Pinheiro HT, Shepherd B, Rocha LA (2019) Cirrhilabrus wakanda, a new species of fairy wrasse from mesophotic ecosystems of Zanzibar, Tanzania, Africa (Teleostei, Labridae). ZooKeys 863: 85-96. https://doi.org/10.3897/zookeys.863.35580
Figure 5 A selection of Cirrhilabrus species from the western Indian Ocean group of the Cirrhilabrusjordani complex ACirrhilabruswakanda sp. nov., in situ photograph from the east coast of Zanzibar, Africa BCirrhilabrusblatteus, in situ photograph from the Red Sea, off the coast of Eilat; C: Cirrhilabrussanguineus, aquarium photograph of a specimen from Mauritius DCirrhilabrusrubrisquamis, aquarium photograph of a specimen from the Maldives. Photographs by L.A. Rocha (A); E. Brokovich (B), and Y.K. Tea (C, D).
Figure 5 from: Janssen HY, Pham CT, Ngo HT, Le MD, Nguyen TQ, Ziegler T (2019) A new species of Lycodon Boie, 1826 (Serpentes, Colubridae) from northern Vietnam. ZooKeys 875: 1-29. https://doi.org/10.3897/zookeys.875.35933
Figure 5 Juvenile paratype of Lycodon pictus sp. nov. (ZFMK 93747) in preservative (upper, dorsal view; lower, ventral view). Photographs T. Ziegler.
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