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Fig. 4 in Partial characterization of digestive proteases in sheepshead, Archosargus probatocephalus (Spariformes: Sparidae)
Fig. 4. Zymogram of acid proteases from enzyme stomach extracts of Archosargus probatocephalus. Crude enzymatic extract (1), crude enzymatic extract plus Pepstatin A (2).
Figure 2 in A preliminary characterization of Bembidion perspicuum LeConte, with a reclassification of related species (Coleoptera, Carabidae) north of México
Figure 2. Geographic distribution of specimens sampled for DNA sequences. Circles: Bembidion transversale; stars: Bembidion perspicuum. More complete data for these localities are available at http://bembidion.org/transversaleGroup/, as a KML file.
Figure 6 in A preliminary characterization of Bembidion perspicuum LeConte, with a reclassification of related species (Coleoptera, Carabidae) north of México
Figure 6. Male aedeagus, left lateral view. All specimens from USA: Colorado: Fremont Co., Arkansas River at Texas Creek, 38.4106°N 105.5844°W. A Bembidion transversale, DRM Voucher DNA2481 B B. transversale, DRM Voucher DNA2486 C B. perspicuum DRM Voucher DNA2482 D B. perspicuum DRM Voucher DNA2485. All to same scale; scale bar is 0.1 mm. Arrows indicate the ostial flag, which differs in form between the species.
Figure 5 in A preliminary characterization of Bembidion perspicuum LeConte, with a reclassification of related species (Coleoptera, Carabidae) north of México
Figure 5. Mentum, ventral view. Both specimens from USA: Colorado: Fremont Co., Arkansas River at Texas Creek, 38.4106°N 105.5844°W. A B. transversale, DRM Voucher V100555 B B. perspicuum, DRM Voucher V100556.
Figure 5 in First report and morphological, molecular characterization of Xiphinema chambersi Thorne, 1939 (Nematoda, Longidoridae) in Canada
Figure 5. Micrographs of Xiphinema chambersi from Ontario, Canada, A SEM image of lip region of female B anus region C head D vulva E tail.
Figure 4 in First report and morphological, molecular characterization of Xiphinema chambersi Thorne, 1939 (Nematoda, Longidoridae) in Canada
Figure 4. Comparison of pharyngeal regions of different stage of juveniles and female of Xiphinema chambersi from Ontario, Canada, A first stage juvenile B second stage juvenile C third stage juvenile D female.
Figure 6 in First report and morphological, molecular characterization of Xiphinema chambersi Thorne, 1939 (Nematoda, Longidoridae) in Canada
Figure 6. Scatter diagram plotting body, odontostyle, and its replacement of individual juveniles and females of X. chambersi from Ontario, Canada.
Figure 2 in First report and morphological, molecular characterization of Xiphinema chambersi Thorne, 1939 (Nematoda, Longidoridae) in Canada
Figure 2. Juveniles and female of Xiphinema chambersi from Ontario, Canada, A first stage juvenile B second stage juvenile C third stage juvenile D female.
Figure 1 in First report and morphological, molecular characterization of Xiphinema chambersi Thorne, 1939 (Nematoda, Longidoridae) in Canada
Figure 1. Drawings of female of Xiphinema chambersi from Ontario, Canada, A entire body B tail region C gonad D pharynx.
Fig. 6 in Characterization of Iberian species of the genus Pungentus Thorne & Swanger, 1936 (Nematoda, Dorylaimida, Nordiidae)
Fig. 6. Pungentus silvestris (de Man, 1912) (♀, LM). A-C. Anterior region in median lateral view. D. Lip region in surface lateral view. E, I. Vagina and pre-vulval uterine sac. F-G: Posterior genital branch. H. Pharyngeal expansion. J. Caudal region. (Scale bars: A-E, I, J = 10 µm; F-H = 50 µm)
Fig. 2 in Characterization of Iberian species of the genus Pungentus Thorne & Swanger, 1936 (Nematoda, Dorylaimida, Nordiidae)
Fig. 2. Pungentus clavatus Ahmad & Jairajpuri, 1979 (♀, LM). A-B. Anterior region in lateral median view. C. Pharyngo-intestinal junction. D. Dorsal cell mass at level of uterus. E. Anterior region in lateral surface view. F. Vagina. G. Caudal region. (Scale bars: A, B, E = 20 µm; C, D, F, G = 10 µm)
Fig. 3 in Characterization of Iberian species of the genus Pungentus Thorne & Swanger, 1936 (Nematoda, Dorylaimida, Nordiidae)
Fig. 3. Pungentus engadinensis (Altherr, 1950) (LM). A. ♀, entire. B-D. Anterior region in median view. E. Pharyngeal expansion. F. ♀, part of posterior genital branch. G. Vagina. H, J. ♀, caudal region. I. ♂, caudal region and spicules. (Scale bars: A = 200 µm; B, J, K = 10 µm; C, D, G, I = 5 µm; E, F = 20 µm)
Fig. 5. Pungentus marietani Altherr, 1950 in Characterization of Iberian species of the genus Pungentus Thorne & Swanger, 1936 (Nematoda, Dorylaimida, Nordiidae)
Fig. 5. Pungentus marietani Altherr, 1950 (♀, LM). A-C. Anterior region in median view. D. Posterior genital branch. E. Posterior body region. F. Phayngeal expansion. G. Phayngo-intestinal junction. H. Vagina. I-J. Caudal region. (Scale bars: A, C, D, G, J = 20 µm; B, H, I = 10 µm; E, F = 50 µm)
Dataset used in "Marine Sediment Characterized by Ocean-Bottom Fiber-Optic Seismology" by Spica et al., 2020 in Geophysical Research Letters
<p>3000fullhisy: raw data to reproduce Fig. 2<br> ppsdspec.npz: all spectrogram as shown in Fig. 3a<br> AllVelMods: All velocity model shown in Fig. 3b<br> ac.out.final.npz: auto-correlation image in Fig. 3c<br> DAS11_lpf5.stack51.grd: Earthquake wavefield as shown in Fig. 3d<br> </p> <p> </p>
Fig. 15 in Morphological and molecular characterization of three new Parastenocarididae (Copepoda: Harpacticoida) from caves in Southern Italy
Fig. 15 (opposite page). Bayesian phylogram (95% majority rule consensus tree) of the investigated Parastenocarididae Chappuis, 1940 based on the 2090 bp fragment of the combined dataset including COI and 18S sequences. Bryocamptus (Rheocamptus) stillae Cottarelli & Bruno, 2012 and Bereraia sp. used as outgroups to root the tree. Node statistical support is reported as nodal posterior probabilities (Bayesian Inference of phylogeny, BI) / bootstrap values (Maximum Likelihood, ML). Asterisks indicate a bootstrap support value lower than 50.
Fig. 7 in Morphological and molecular characterization of three new Parastenocarididae (Copepoda: Harpacticoida) from caves in Southern Italy
Fig. 7. Cottarellicaris sanctiangeli Bruno & Cottarelli sp. nov., ♀ (NHMUK). a. Anal somite, anal operculum and caudal rami, dorsal view (variability). b. Anal somite, anal operculum and caudal rami, lateral view (variability). c. Rostrum, A1. d. P1, anterior view. e. P2, inner view. f. P3, posterior view. g. Coxa, basis, enp P3, inner view. h. P4, posterior view. i. Coxa, basis, enp P4, inner view (variability). a, c–i: Grotta Grotta Vucco Ucciardo; b: Grotta del Banco di ferro. Scale bar: 50 µm.
Fig. 5 in Morphological and molecular characterization of three new Parastenocarididae (Copepoda: Harpacticoida) from caves in Southern Italy
Fig. 5. Cottarellicaris sanctiangeli Bruno & Cottarelli sp. nov., ♂ (NHMUK). a. P1, coxa, basis and enp, inner view. b. P1, basis and exp, outer view. c. P2, posterior view. d. P3, anterior view. e. P3, posterior view (variability). f. P4, anterior view. g. P4, intercoxal sclerite, coxa, basis and enp, outer view. h. P4, posterior view. a, c, e, g: Grotta Vucco Ucciardo; b, h: Grotta del Banco di ferro; d, f: Grotta superiore di Sant'Angelo. Scale bar: 50 µm.
Fig. 4 in Morphological and molecular characterization of three new Parastenocarididae (Copepoda: Harpacticoida) from caves in Southern Italy
Fig. 4. Cottarellicaris sanctiangeli Bruno & Cottarelli sp. nov., ♂ (NHMUK). a. Rostrum and A1, ventral view. b. Rostrum and A1, ventral view. c. A1, disarticulated (antennular segments marked with Roman numerals). d. A2. e. Mdb. f. Mx1. g. Mx2. h. Mxp. a, e–g: Grotta Vucco Ucciardo; b–d, h: Grotta superiore di Sant'Angelo. Scale bar: 50 µm.
Fig. 14 in Morphological and molecular characterization of three new Parastenocarididae (Copepoda: Harpacticoida) from caves in Southern Italy
Fig. 14. Proserpinicaris specincola Bruno & Cottarelli sp. nov., ♀ (NHMUK). a. Rostrum and A1. b. P2 coxa, basis and exp, outer view. c. P2, enp. d. P3, basis and exp, outer view. e. P3, enp. f. P4, basis and exp, outer view. g. P4, enp. h. P4 coxa, basis and first exopodal segment, and enp, inner view. i. P5. j. P5, P6, genital double-somite and genital field, ventral view. Scale bar: 50 µm.
Figure 2 in Two new species of Bonnetina tarantulas (Theraphosidae: Theraphosinae) from Mexico: contributions to morphological nomenclature and molecular characterization of types
Figure 2. Bonnetina tenuiverpis sp. n. Male holotype. (A) Carapace; (B) posterior margin of carapace, showing thick erect setae; (C) ocular area, lateral view; (D) ocular area, dorsal view; (E) sternum; (F) labium and maxillae; (G) left pedipalp, dorsal view, showing retrolateral tibia nodule. Scale lines: 1 mm.
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.