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Figure 2 in Multiple metals and agricultural use affects oxidative stress biomarkers in freshwater Aegla crabs
Figure 2. Biplot of PCA ordination for the metal concentration in sediment of the three studied basins. Suzana River basin (S); Ligeirinho-Leãozinho River basin (L); Dourado River basin (D).
Figure 1 in Hematology and blood biochemistry profile of the freshwater stingray Potamotrygon magdalenae as a tool for population assessment in artificial environments
Figure 1. Different cell types found in peripheral blood of captive adults of Potamotrygon magdalenae.
Figure 2 in Hematology and blood biochemistry profile of the freshwater stingray Potamotrygon magdalenae as a tool for population assessment in artificial environments
Figure 2. Correlation's matrix test among body condition and physiological parameters in captive adults of Potamotrygon magdalenae. RBC:Erythrocyte count; Hb: Hemoglobin; Ht: Hematocrit; Leu: Leukocte count; Thr: Thrombocyte count; He%: Heterophils proportion; Eos%: Eosinophils proportion; Ly%: Lymphocytes proportion; Mo%: Monocytes proportion; Ure: Urea; Tri: Triglycerides; Pp: Plasma proteins; Sp: Serum proteins; Glu: Glucose; Col: Cholesterol. Ellipses show the type of correlation between each variable, slope shows whether the correlation is positive or negative, color intensity shows the correlation's strength, and amplitude of the ellipse corresponds to the data dispersion. The upper diagonal shows the p values for each correlation.
Рис. 2. Глохидии Middendorffinaia sujfunensis с раЗных ракурсов. ОбоЗначениЯ: lig – лигамент; v.a – вентральный угол; l.th – личиночнаЯ нить; v – створка открытой глохидиальной раковины. СканируюЩаЯ ЭлектроннаЯ микроскопиЯ. МасШтаб 2 мкм. in Morphology of glochidia of the freshwater mussels Nodularia amurensis and Middendorffinaia sujfunensis (Bivalvia: Unionidae: Nodulariinae) from the Russian Far East
Рис. 2. Глохидии Middendorffinaia sujfunensis с раЗных ракурсов. ОбоЗначениЯ: lig – лигамент; v.a – вентральный угол; l.th – личиночнаЯ нить; v – створка открытой глохидиальной раковины. СканируюЩаЯ ЭлектроннаЯ микроскопиЯ. МасШтаб 2 мкм.
Figure 1 in Multiple metals and agricultural use affects oxidative stress biomarkers in freshwater Aegla crabs
Figure 1. Map of the sampling sites. (A) Suzana River basin (between 27°35'38" and 27°36'16"S; 52°11'11" and 52°13'41"W); (B) Ligeirinho-Leãozinho River basin (between 27°40'15" and 27°36'16"S; 52°16'03" and 52°13'41"W); (C) Dourado River basin (between 27°33'59" and 27°37'13"S; 52°17'46" and 52°19'36"W). The circles (•) indicate the sampled streams. The numbered boxes indicate the areas of land uses analysis.
Fig. 3 in Morphology of glochidia of the freshwater mussels Nodularia amurensis and Middendorffinaia sujfunensis (Bivalvia: Unionidae: Nodulariinae) from the Russian Far East
Fig. 3. Microsculpture of external surface of glochidia of Nodularia amurensis (А – Razdolnaya River; B – Amur River, B. Ussuriysky Island) and Middendorffinaia sujfunensis (С): A – part of valve down the adductor; B – cenral part of valve (adductor); C – near ligament. Scanning electron microscopy. Scale bar 2 µm.
Рис. 1. Глохидии Nodularia amurensis с раЗных ракурсов: А – р. РаЗдольнаЯ; B, С – р. Амур, ПетровскаЯ протока; D – р. Амур, Б. Уссурийский остров. ОбоЗначениЯ: lig – лигамент; v.a – вентральный угол; l.th – личиночнаЯ нить; v – створка открытой глохидиальной раковины. СканируюЩаЯ ЭлектроннаЯ микроскопиЯ. МасШтаб 2 мкм. in Morphology of glochidia of the freshwater mussels Nodularia amurensis and Middendorffinaia sujfunensis (Bivalvia: Unionidae: Nodulariinae) from the Russian Far East
Рис. 1. Глохидии Nodularia amurensis с раЗных ракурсов: А – р. РаЗдольнаЯ; B, С – р. Амур, ПетровскаЯ протока; D – р. Амур, Б. Уссурийский остров. ОбоЗначениЯ: lig – лигамент; v.a – вентральный угол; l.th – личиночнаЯ нить; v – створка открытой глохидиальной раковины. СканируюЩаЯ ЭлектроннаЯ микроскопиЯ. МасШтаб 2 мкм.
Figure 2 in Risk screening of non-native freshwater fishes in Yunnan Province, China
Figure 2. Risk screening scores for the non-native fish species screened with the AS-ISK: (A) basic risk assessment (BRA) for Yunnan Province; (B) BRA plus climate-change assessment (BRA+CCA) for Yunnan Province; dashed lines indicate thresholds for different intrusion risk levels (see thresholds in Table 2)
Fig. 5 in The oldest birotule-bearing freshwater sponges from the Upper Cretaceous-lower Paleocene Deccan volcanic-associated sediments of India
Fig. 5. Spicular complement of skeleton and gemmules of palaeospongillid sponge Longibirotula antiqua gen. et sp. nov. from Upper Cretaceous–lower Paleocene of Naskal GSI Quarry (India) (slides PGNU/NSKQ/ST-1, 2). A, B. Acanthoxeas short with dense spines. C, D. Oxeas fusiform, long and with acute tips. E, F. Birotules with long shaft. Diagenetic processes affect all spicules to various degree. Scale bars 20 µm.
Fig. 3 in The oldest birotule-bearing freshwater sponges from the Upper Cretaceous-lower Paleocene Deccan volcanic-associated sediments of India
Fig. 3. Megascleres of palaeospongillid sponge Longibirotula antiqua gen. et sp. nov. from Upper Cretaceous–lower of Paleocene of Naskal GSI Quarry India). A–H. Acanthoxeas (slides PGNU/NSKQ/SL-1–13) with large spines. Diagenetic processes affect all spicules to various degree. Scale bars 20 µm.
Fig. 1 in The oldest birotule-bearing freshwater sponges from the Upper Cretaceous-lower Paleocene Deccan volcanic-associated sediments of India
Fig. 1. Map of India showing Deccan volcanic province (green area). A. Location of Naskal intertrappean, Naskal B (white star) and Naskal GSI Quarry sections (red star); map modified after Ahluwalia (1990) and Wilson Mantilla et al. (2022). B. Sponge spicule and diatom bearing horizon in Naskal GSI Quarry section. C. Palynomorph bearing Naskal B section (modified after Wilson Mantilla et al. 2022).
Fig. 4 in The oldest birotule-bearing freshwater sponges from the Upper Cretaceous-lower Paleocene Deccan volcanic-associated sediments of India
Fig. 4. Gemmuloscleres of palaeospongillid sponge Longibirotula antiqua gen. et sp. non. from Upper Cretaceous–lower Paleocene of Naskal GSI Quarry (India). A–O. Birotules (slides PGNU/NSKQ/SL-1–13) slender, spiny, with long shaft. Diagenetic processes affect all spicules to various degree. Scale bars 20 µm.
Fig. 2 in The oldest birotule-bearing freshwater sponges from the Upper Cretaceous-lower Paleocene Deccan volcanic-associated sediments of India
Fig. 2. Megascleres of palaeospongillid sponge Longibirotula antiqua gen. et sp. nov. from Upper Cretaceous–lower Paleocene of Naskal GSI Quarry (India). A–I. Oxeas (slides PGNU/NSKQ/SL-1–13) slim to stout with variably pointed tips. Diagenetic processes affect all spicules to various degree. Scale bars 20 µm. { fig. will be greyscale in printed version}
Fig. 3 in Marine-like isopod Heterosphaeroma priscum from a Late Paleocene freshwater system in Sézanne, France revisited
Fig. 3. Appendage views of isopod Heterosphaeroma priscum (MilneEdwards, 1868), late Thanetian of Sézanne, Marne, France. A. SU.PAL.2017. 0.2.12 (plaster cast). B. SU.PAL.2017.0.2.3.2-2. Abbreviations: pln, pleonite; prn, pereonite; prp, pereopod. Photographs RV and Rémi Brageu (SU).
Fig. 2 in Marine-like isopod Heterosphaeroma priscum from a Late Paleocene freshwater system in Sézanne, France revisited
Fig. 2. Detailed anatomy of isopod Heterosphaeroma priscum (Milne-Edwards, 1868), late Thanetian of Sézanne, Marne, France. A. SU.PAL.2017.0.2.61 (inner mold, holotype), in dorsal view. B. SU.PAL.2017.0.0.4 (plaster cast), in dorsal view. C. SU.PAL.2017.0.2.4 (C 1, body fossil anterior half; C 2, head close-up), ventral side. Abbreviations: md, mandibular palp; mxp, maxilliped; mx, maxilla; pln, pleonite; prn, pereonite; prp, pereopod. Photographs RV and Rémi Brageu (SU).
Fig. 1 in Marine-like isopod Heterosphaeroma priscum from a Late Paleocene freshwater system in Sézanne, France revisited
Fig. 1. Dorsal views of isopod Heterosphaeroma priscum (Milne-Edwards, 1868), late Thanetian of Sézanne, Marne, France. A. SU.PAL.2017.0.2.61 outer mold, holotype). B. MNHN.F.B71849 (plaster cast of lost SU.PAL.2017.0.2.61, inner mold). C. SU.PAL.2017.0.2.3.1. D. SU.PAL.2017.0.2.3.2. Abbreviations: pln, pleonite. Scale bars 3 mm. Photographs Lilian Cazes (MNHN) and Rémi Brageu (SU).
Fig. 4 in Marine-like isopod Heterosphaeroma priscum from a Late Paleocene freshwater system in Sézanne, France revisited
Fig. 4. Detailed anatomy of isopod Heterosphaeroma priscum (MilneEdwards, 1868), late Thanetian of Sézanne, Marne, France. A. SU.PAL.2017. 0.2.3.1, ventral view. B. SU.PAL.2017.0.2.3.2-1, dorsal view and leaf co-occurrence (dashed), isopod individuals (arrows). C. SU.PAL.2017.0.2.3.2-2, dorsal view. Abbreviations: pln, pleonite; plp, pleopod; prn, pereonite; prp, pereopod. Photographs RV and Rémi Brageu (SU).
Figure 2 in Redescription of the freshwater amphipod Austrochiltonia australis (Sayce) (Crustacea: Amphipoda, Chiltoniidae)
Figure 2. Austrochiltonia australis (Sayce), NMV J46778, large male morphotype, 10.5mm: A, gnathopod 1; B, gnathopod 2; C, pereopod 3; D, pereopod 4; E, pereopod 7; F, pereopod 5; G, pereopod 6; H, telson; I, left and right uropod 3; J, uropod 2; K, uropod 1; L, pleopod 1. Scales: a(A-G), 0.5mm; b(I), 0.1mm; c(H, J-K), 0.1mm; d(L), 0.5mm.
Figure 4 in Redescription of the freshwater amphipod Austrochiltonia australis (Sayce) (Crustacea: Amphipoda, Chiltoniidae)
Figure 4. Austrochiltonia australis (Sayce), NMV J46780, ovigerous female, 8.6mm: A, antenna 1; B, antenna 2; C, inner plate of maxilliped; D, gnathopod 1; E, gnathopod 2; F, left and right uropod 3; G, telson; H, pereopod 4 coxa; I, uropod 2; J, uropod 1; K, oostegite on coxa 2; L, oostegite on coxa 3; M, oostegite on coxa 4; N, oostegite on coxa 5. Scales: a(A-B), 0.5mm; b(F), 0.1mm; c(D-E), 0.5mm; d(I-J), 0.1mm; e(G), 0.1mm; f(K-N), 0.5mm
Figure 1 in Redescription of the freshwater amphipod Austrochiltonia australis (Sayce) (Crustacea: Amphipoda, Chiltoniidae)
Figure 1. Austrochiltonia australis (Sayce), NMV J46778, large male morphotype, 10.5mm: A, Lateral view of body; B, maxilla 1; C, Antenna 1; D, antenna 2; E, maxilliped; F, maxilla 2; G, right mandible; H, left mandible; I, upper lip; J, lower lip. Scales: a(A), 0.5mm; b(C-D), 0.5 mm; c(B,E-H), 0.1mm.
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
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.