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Fig. 5 in Diversity and biology of Spirometra tapeworms (Cestoda: Diphyllobothriidea), zoonotic parasites of wildlife: A review
Fig. 5. Microphotographs of Spirometra mansoni neotype from experimentally infected dog Canis familiaris, Japan. A – Whole unstained neotype. B, C – SEM photo of scolex and gravid proglottid. D – Whole mounts with part of neotype. E, F – Mature proglottids. G, H, K – Gravid proglottids. I, J – Sagittal section of gravid proglottid.
Fig. 3 in Diversity and biology of Spirometra tapeworms (Cestoda: Diphyllobothriidea), zoonotic parasites of wildlife: A review
Fig. 3. Line drawings of Spirometra erinaceieuropaei from Canis lupus, Poland. A, B – ovarian region and terminal genitalia; ventral (A) and dorsal (B) view of the same proglottid. C, D – gravid proglottids; dorsal (C) and ventral (D) view; note the shape of the ovary, which is short, but with wide lateral wings. Vitelline follicles and testes illustrated in one side of proglottids only, except for lateral-most and median-most vitelline follicles. Abbreviations: ci – cirrus; cs – cirrus sac; doc – dorsal osmoregulatory canal; eg – eggs; esv – external seminal vesicle; mp – male genital pore; Mg – Mehlis' gland; oc – oocapt; ov – ovary; rc – receptaculum seminis; te – testes; up – uterine pore; ut – uterus; va – vagina; vd – vas deferens; vf – vitelline follicles; vp – vaginal pore; vr – vitelline reservoir.
Fig. 1 in Diversity and biology of Spirometra tapeworms (Cestoda: Diphyllobothriidea), zoonotic parasites of wildlife: A review
Fig. 1. Phylogenetic tree of the interrelationships of the genus Spirometra based on selected cytochrome c oxidase subunit I (cox1) gene data (long sequences), maximum likelihood. The branch length scale bar indicates number of substitutions per site. Colours highlight specimens of different species; samples without colour represent undescribed species. See Supplementary Fig. 1 for more data based on larger dataset, but based on shorter sequences. (For interpretation of the references to colour in this figure legend, the reader is referred to the Web version of this article.)
Fig. 2 in Diversity and biology of Spirometra tapeworms (Cestoda: Diphyllobothriidea), zoonotic parasites of wildlife: A review
Fig. 2. Microphotographs of Spirometra erinaceieuropaei from Canis lupus. A – Scolex from Ukraine. B–F – Gravid and mature proglottids from Poland. G – Sagittal section of gravid proglottid from Poland.
FIGURE 1 in Coupling finite element analysis and multibody system dynamics for biological research
FIGURE 1. Simplification of the center of head movement as a joint in extinct Temnospondyli amphibian when biting. Elaborated from the original image (en.wikipedia.org/wiki/File:Jammerbergia_formops.jpg). Under license: CC BY-SA 3.0 (creativecommons.org/licenses/by-sa/3.0/).
FIGURE 4 in Coupling finite element analysis and multibody system dynamics for biological research
FIGURE 4. Von Mises stress distribution in the skull for the Static Analysis in FEA in cases 1A, 2A, 3A, 1B, 2B and 3B.
FIGURE 2 in Coupling finite element analysis and multibody system dynamics for biological research
FIGURE 2. Studied test cases of different feeding movements when applying a force F=800 N in the direction of the red arrow (when the force is perpendicular at the view the red arrow is a red dot). Case 1A, 2A and 3A with a fixed boundary condition in the condyle without the web of beams. Case 1B, 2B and 3B with the web of beams in the condyle and a fixed boundary condition.
Fig. 6 in Reproductive biology of the skates Sympterygia acuta Garman, 1877 and S. bonapartii Müller & Henle, 1841 (Chondrichthyes: Rajoidei) in south Brazil
Fig. 6. Sexual development for females of Sympterygia bonapartii. Relationship between total length (cm) and (a) ovaries weight (g), (b) diameter of the largest follicle (cm), (c) uteri width (cm), (d) oviducal gland height (cm) and (e) number of follicles.
Fig. 7 in Reproductive biology of the skates Sympterygia acuta Garman, 1877 and S. bonapartii Müller & Henle, 1841 (Chondrichthyes: Rajoidei) in south Brazil
Fig. 7. Sexual development for females of Sympterygia acuta. Relationship between total length (cm) and (a) ovaries weight, (b) uteri width (cm), (c) diameter of the largest follicle (cm) and (d) oviducal gland height (cm).
Fig. 3 in Reproductive biology of the skates Sympterygia acuta Garman, 1877 and S. bonapartii Müller & Henle, 1841 (Chondrichthyes: Rajoidei) in south Brazil
Fig. 3. Sympterygia bonapartii. Relationship between total length (cm) and (a) clasper length (cm), (b) clasper gland length (cm), (c) diameter of the testicular lobule (cm), (d) testicles weight (g) and (e) total number of alar thorns (left Y axis) and total number of rows of alar thorns (right Y axis).
Fig. 2 in Reproductive biology of the skates Sympterygia acuta Garman, 1877 and S. bonapartii Müller & Henle, 1841 (Chondrichthyes: Rajoidei) in south Brazil
Fig. 2. Sympterygia bonapartii (circles) with relationship between total length (cm) and (a) disc width (cm), (b) total weight (g) and (c) eviscerated weight (g) (by sex). Sympterygia acuta (triangles) with relationship between total length (cm) and (d) disc width (cm), (e) total weight (g) and (f) eviscerated weight (g).
Fig. 1 in Reproductive biology of the skates Sympterygia acuta Garman, 1877 and S. bonapartii Müller & Henle, 1841 (Chondrichthyes: Rajoidei) in south Brazil
Fig. 1. Map of the study area. Left map represents South America. The square is a detail of the study area. The right map represents south of Brazil indicating the trawling stations where the specimens of Sympterygia were captured; research cruises of the research vessel "Larus" (triangles) and commercial bottom trawl fishing trips (circles).
Fig. 5 in Reproductive biology of the skates Sympterygia acuta Garman, 1877 and S. bonapartii Müller & Henle, 1841 (Chondrichthyes: Rajoidei) in south Brazil
Fig. 5. Sympterygia acuta. Relationship between total length (cm) and (a) clasper length (cm), (b) clasper gland length (cm), (c) testicles weight (g) and (d) total number of alar thorns (left Y axis) and total number of rows of alar thorns (right Y axis).
Fig. 4 in Reproductive biology of the skates Sympterygia acuta Garman, 1877 and S. bonapartii Müller & Henle, 1841 (Chondrichthyes: Rajoidei) in south Brazil
Fig. 4. Percentage of mature individuals by total length class for males and females Sympterygia acuta (black line) and S. bonapartii (grey line). Empty triangles represent male Sympterygia bonapartii and full triangles, male S. acuta. Empty circles represent female S. bonapartii and full circles, female S. acuta.
FIGURE 5 in Reproductive biology of seven fish species of commercial interest at the Ramsar site in the Baixada Maranhense, Legal Amazon, Brazil
FIGURE 5 | Relative frequency of gonadal maturation stages during the rainy and dry seasons. (A) Cichla monoculus; (B) Hassar affinis; (C) Hoplias malabaricus; (D) Plagioscion squamosissimus; (E) Prochilodus lacustris; (F) Pygocentrus nattereri; and G. Schizodon dissimilis, caught in Baixada Maranhense Protection Area, between January 2012 and December 2016. Immature (IP); Developing phase (DP); Spawning capable (SP); Regression (RP); Regeneration (RGP), F (Female) and M (Males).
FIGURE 2 in Reproductive biology of seven fish species of commercial interest at the Ramsar site in the Baixada Maranhense, Legal Amazon, Brazil
FIGURE 2 | Distribution of the relative frequency by length classes, gonadal maturation stages, and sexes: (A) Cichla monoculus; (B) Hassar affinis; (C) Hoplias malabaricus; (D) Plagioscion squamosissimus; (E) Prochilodus lacustris; (F) Pygocentrus nattereri; and (G) Schizodon dissimilis, caught in Baixada Maranhense Protection Area, between January 2012 and December 2016. Immature (IP); Developing phase (DP); Spawning capable (SP); Regression (RP); Regeneration (RGP), F (Female) and M (Males).
FIGURE 4 in Reproductive biology of seven fish species of commercial interest at the Ramsar site in the Baixada Maranhense, Legal Amazon, Brazil
FIGURE 4 | Gonadosomatic index indicating the spawning season for (A) Cichla monoculus; (B) Hassar affinis; (C) Hoplias malabaricus; (D) Plagioscion squamosissimus; (E) Prochilodus lacustris; (F) Pygocentrus nattereri; and (G) Schizodon dissimilis, caught in Baixada Maranhense Protection Area, between January 2012 and December 2016.
Figure 11 in Spectral characterization and biological evaluation of biomolecules from the peels of three orange fruits: a comparative study
Figure 11. The efficacy of RM of orange peels against human pathogenic bacteria. ****Extremely significant among compared groups at p <0.05 level. Test 1: RM of Valen-cia orange; Test 2: RM of Mandarin orange; Test 3: RM of African navel orange.
Figure 6 in Spectral characterization and biological evaluation of biomolecules from the peels of three orange fruits: a comparative study
Figure 6. The structure of bioactive compounds of RM of African Navel orange peel (1) Limonene; (2) Hexadecanoic acid, 2-hydroxy-1- (hydroxymethyl) ethyl; (3) 9,12-Octadecadienoic acid (Z,Z)-, methyl ester; (4) Terephthalic acid, di(2-ethylhexyl) ester; (5) α-Sitosterol; (6) α-D-Glucopyranose, 4-O-α-D-galactopyranosyl-; (7) 2-Methoxy-4-vinylphenol; (8) Eugenol; (9) cis-Vaccenic acid; (10) De-canal; (11) Vitamin E; (12) Dichloroxylenol.
Figure 3 in Spectral characterization and biological evaluation of biomolecules from the peels of three orange fruits: a comparative study
Figure 3. GC-MS chromatogram of the RMs of orange peels. (A) RM of Valencia orange; (B) RM of Mandarin orange; (C) RM of African Navel orange.
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.