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Figure 4 in First record of five fish species from Réunion Island observed during the inventory of the Marine Natural Zones of Interest for Ecology, Flora and Fauna (ZNIEFF)
Figure 4. – Specimen of Samariscus triocellatus photographed on 4 May 2016 at 21°6'20.92"S and 55°46'16.72"E.
Figure 2 in First record of five fish species from Réunion Island observed during the inventory of the Marine Natural Zones of Interest for Ecology, Flora and Fauna (ZNIEFF)
Figure 2. – Specimen of Fusigobius inframaculatus photographed on 8 April 2016 at 21°21'18.54"S and 55°47'31.31"E.
Figure S1 in An interesting rare tylenchid species, Antarctenchus urmiensis n. sp. (Tylenchomorpha; Psilenchidae) from Urmia Lake islands, northwest Iran, with a discussion on the taxonomy of related genera
Figure S1: The SSU tree inferred using the original data by Hosseinvand et al. (2020), the same alignment, postediting and inference methods; but using aphelenchs as outgroup taxa.
Figure 3 in An interesting rare tylenchid species, Antarctenchus urmiensis n. sp. (Tylenchomorpha; Psilenchidae) from Urmia Lake islands, northwest Iran, with a discussion on the taxonomy of related genera
Figure 3: Scanning electron microscopic (SEM) images of ANtarCteNCHUS UrmieNSiS n. sp. (Female) (A-C) Anterior end in ventral, sublateral and frontal views, respectively (arrows pointing the amphidial openings); (D) Deirid (withe arrow) and excretory pore in lateral view (black arrow); (E) Secretoryexcretory pore (arrow); (F) Lateral field; (G&H) Vulva in lateral and ventral views, respectively; (I) Posterior end in lateral view (arrow pointing the anus);(J) Anus (arrow) in lateral view; (K) Tail tip.
Figure 4 in An interesting rare tylenchid species, Antarctenchus urmiensis n. sp. (Tylenchomorpha; Psilenchidae) from Urmia Lake islands, northwest Iran, with a discussion on the taxonomy of related genera
Figure 4: Bayesian 50% majority rule consensus tree of ANtarCteNCHUS UrmieNSiS N. SP. based on SSU rDNA sequences under GTR + I + G model. Bayesian posterior probability values more than 0.50 are given for appropriate clades. The new sequence is indicated in bold.
Figure 1 in An interesting rare tylenchid species, Antarctenchus urmiensis n. sp. (Tylenchomorpha; Psilenchidae) from Urmia Lake islands, northwest Iran, with a discussion on the taxonomy of related genera
Figure 1: Line drawings of ANtarCteNCHUS UrmieNSiS n. sp. (A-C, E-I: Female; D&J: Male) (A) Pharynx; (B) Anterior genital tract; (C&E) Anterior body end; (D) Male reproductive system; (F) Vulval region; (G&H) Female tail (phasmids are shown at two foci); (I) Bursa; (J) Male tail, spicule, and bursa.
Figure 2 in An interesting rare tylenchid species, Antarctenchus urmiensis n. sp. (Tylenchomorpha; Psilenchidae) from Urmia Lake islands, northwest Iran, with a discussion on the taxonomy of related genera
Figure 2: Light micrographs of ANtarCteNCHUS UrmieNSiS n. sp. (A,B,E,F,G,H,I,J,M,P,Q: Female; C,D,K,L,N,O,R: Male) (A-D) Anterior body end; (E) Anterior body region; (F) Pharyngeal median bulb; (G) Part of female reproductive system; (H) Distal end of ovary; (I) Pharyngeal bulb; (J) Lateral lines; (K) Male tail; (L) Phasmid; (M) Female tail; (N) Bursa; (O&P) Entire body; (Q) Vulval region; (R) Spicule and gubernaculum. (Scale bars: A-N, Q&R = 10 μm; O&P = 50 μm).
Fig. 3 in Eco-epidemiological screening of multi-host wild rodent communities in the UK reveals pathogen strains of zoonotic interest
Fig. 3. Bayesian phylogenetic tree of 18S ribosomal RNA sequences of Babesia microti isolates, indicating the position of the Munich strain-like isolate obtained from the tick Ixodes trianguliceps from a bank vole in Ceredigion, Wales. Sequences of the cogeneric species B. vulpes and B. rodhaini are used as outgroups.
Fig. 2 in Eco-epidemiological screening of multi-host wild rodent communities in the UK reveals pathogen strains of zoonotic interest
Fig. 2. Flea diversity. Percentage of flea genera collected during the two sampling seasons. *p <0.05.
Fig. 1 in Eco-epidemiological screening of multi-host wild rodent communities in the UK reveals pathogen strains of zoonotic interest
Fig. 1. Percentage of tick life stages across seasons collected from all rodent species. a) Total percentage of ticks found in the two study seasons. Light grey: larvae; dark grey: nymphs; black: adults. b) Percentage of tick life stages in each sampling season.
Figure 4 in On two new or interesting Amphipoda from Italy and Montenegro (Contribution to the knowledge of the Amphipoda 290
Figure 4. Niphargus frontalis, sp. n., male 17.0 mm, Frontale, waterhouse, Italy: A-B= pereopod 5; C, D, E= pereopod 6; F, G. H= pereopod 7; I= uropod 3.
Figure 7 in On two new or interesting Amphipoda from Italy and Montenegro (Contribution to the knowledge of the Amphipoda 290
Figure 7. Niphargus frontalis, sp. n., female 16.3 mm, Frontale, waterhouse, Italy: A= distal palpus article of mandible, outer face [A= A-setae]; B= distal part of maxilliped palpus; C= coxa 1; D= coxa 2; E= coxa 3; F= coxa 4; G= epimeral plates 1-3; H= peduncle of pleopod 1; I= peduncle of pleopod 2; J= peduncle of pleopod 3. FEMALE 13.0 mm: K= epimeral plates 1-3.
Figure 1 in On two new or interesting Amphipoda from Italy and Montenegro (Contribution to the knowledge of the Amphipoda 290
Figure 1. Niphargus frontalis, sp. n., male 17.0 mm, Frontale, waterhouse, Italy: A= antenna 1; B= accessory flagellum; C= head and antenna 2; D= maxilla 1; E= maxilla 2.
Figure 8 in On two new or interesting Amphipoda from Italy and Montenegro (Contribution to the knowledge of the Amphipoda 290
Figure 8. Waterhouse of Frontale, Apiro district, Italy, locus typicus of Niphargus frontalis, sp. n.
Figure 2 in On two new or interesting Amphipoda from Italy and Montenegro (Contribution to the knowledge of the Amphipoda 290
Figure 2. Niphargus frontalis, sp. n., male 17.0 mm, Frontale, waterhouse, Italy: A= maxilliped; B= gnathopod 1, outer face; C= distal corner of gnathopod 1 propodus, inner face [S= corner spine; L= lateral spines; M= facial M-spines; R= subcorner spine]; D= gnathopod 2, outer face; E= distal corner of gnathopod 2 propodus, inner face [S= corner spine; Llateral spines; R= subcorner spine]
Figure 3 in On two new or interesting Amphipoda from Italy and Montenegro (Contribution to the knowledge of the Amphipoda 290
Figure 3. Niphargus frontalis, sp. n., male 17.0 mm, Frontale, waterhouse, Italy: A= mandibular palpus, outer face [A= A-setae); B= last palpus article of mandible, inner face [B= B-setae]; C= incisor, lacinia mobilis and rakers of right mandible; D-E= pereopod 3; F-G= pereopod 4; H= telson.
Figure 5 in On two new or interesting Amphipoda from Italy and Montenegro (Contribution to the knowledge of the Amphipoda 290
Figure 5. Niphargus frontalis, sp. n., male 17.0 mm, Frontale, waterhouse, Italy: A= peduncle of pleopods 1; B= peduncle of pleopods 2; C= peduncle of pleopods 3; D= labium; E= epimeral plates 1-3. FEMALE 16.3 mm: F= gnathopod 1 propodus, outer face; G= distal corner of gnathopod 1 propodus, inner face [S= corner spine; L= lateral spins; M= facial M-setae; R= subcorner spine]; H= gnathopod 2 propodus, outer face; I= distal corner of gnathopod 2 propodus, inner face [S= corner spine; L= lateral spines; R= subcorner spine].
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.
ScienceDex guides
Understand access before you commit
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.