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5,864 results for “species diversity”
Figure 2. Mantle glands. A in Reading between the lines: revealing cryptic species diversity and colour patterns in Hypselodoris nudibranchs (Mollusca: Heterobranchia: Chromodorididae)
Figure 2. Mantle glands. A, Hypselodoris alburtuqali Gosliner & Johnson sp. nov., CASIZ 192295, holotype. B, Hypselodoris cerisae Gosliner & Johnson sp. nov., holotype, CASIZ 178350. C, Hypselodoris confetti Gosliner & Johnson sp. nov., CASIZ 191070. D, Hypselodoris decorata (Risbec, 1928), CASIZ 184316. E, Hypselodoris ghardaqana (Gohar & Abu-Ela, 1957), CASIZ 192282. F, Hypselodoris iba Gosliner & Johnson sp. nov., holotype, NMP 041279.
Figure 13. Reproductive systems. A in Reading between the lines: revealing cryptic species diversity and colour patterns in Hypselodoris nudibranchs (Mollusca: Heterobranchia: Chromodorididae)
Figure 13. Reproductive systems. A, Hypselodoris ghardaqana (Gohar & Aboul-Ela, 1957), CASIZ 192282, scale bar: 3.5 mm. B, Hypselodoris iba Gosliner & Johnson sp. nov., CASIZ 177777, scale bar: 3.0 mm. C, Hypselodoris katherinae Gosliner & Johnson sp. nov., CASIZ 181257, scale bar: 1.0 mm. D, Hypselodoris lacuna Gosliner & Johnson sp. nov.,
Figure 4. Reproductive systems A in Reading between the lines: revealing cryptic species diversity and colour patterns in Hypselodoris nudibranchs (Mollusca: Heterobranchia: Chromodorididae)
Figure 4. Reproductive systems A, Hypselodoris alburtuqali Gosliner & Johnson sp. nov., holotype, CASIZ19229, scale bar: 0.5 mm. B, Hypselodoris maculosa (Pease, 1871), CASIZ 139595, scale bar: 0.75 mm. C, Hypselodoris brycei Gosliner & Johnson sp. nov., paratype, WAM S12628, scale bar: 3.0 mm. D, Hypselodoris apolegma (Yonow, 2001), CASIZ 083743, scale bar: 2.0 mm. E, Hypselodoris cerisae Gosliner & Johnson sp. nov., holotype CASIZ 178350, scale bar: 0.85 mm. F, Hypselodoris krakatoa Gosliner & Johnson, 1999, CASIZ 206801, Philippines, scale bar: 1.0 mm. G, Hypselodoris confetti Gosliner & Johnson sp. nov., holotype, CASIZ 191070, scale bar: 0.60 mm. H, Hypselodoris decorata (Risbec, 1928), CASIZ 184316, scale bar: 0.60 mm. am, ampulla; bc, bursa copulatrix; ej, ejaculatory portion of the vas deferens; fgm, female gland mass; p, penis; pr, prostatic portion of vas deferens; rs, receptaculum seminis; ud, uterine duct; v, vagina; vg, vestibular gland.
Figure 11 in Reading between the lines: revealing cryptic species diversity and colour patterns in Hypselodoris nudibranchs (Mollusca: Heterobranchia: Chromodorididae)
Figure 11. Hypselodoris maculosa (Pease, 1871), CASIZ 139545. A, entire jaw. B, jaw rodlets. C, entire radula. D, inner lateral teeth. E, middle lateral teeth. F, outer lateral teeth.
Figure 8 in Reading between the lines: revealing cryptic species diversity and colour patterns in Hypselodoris nudibranchs (Mollusca: Heterobranchia: Chromodorididae)
Figure 8. Hypselodoris confetti Gosliner & Johnson sp. nov., holotype, CASIZ 191070. A, entire jaw. B, jaw rodlets. C, entire radula. D, inner lateral teeth. E, middle lateral teeth. F, outer lateral teeth.
Figure 12 in Reading between the lines: revealing cryptic species diversity and colour patterns in Hypselodoris nudibranchs (Mollusca: Heterobranchia: Chromodorididae)
Figure 12. Hypselodoris ghardaqana (Gohar & Aboul-Ela, 1957), CASIZ 192282. A, jaw rodlets. B, inner lateral teeth. C, middle lateral teeth. D, outer lateral teeth.
Figure 6 in Reading between the lines: revealing cryptic species diversity and colour patterns in Hypselodoris nudibranchs (Mollusca: Heterobranchia: Chromodorididae)
Figure 6. Hypselodoris cerisae Gosliner & Johnson sp. nov. A, entire jaw, holotype, CASIZ 178350. B, jaw rodlets, paratype, CAS 175726. C, jaw rodlets, holotype, CASIZ 178350. D, inner lateral teeth, holotype, CAS 178350. E, middle lateral teeth, holotype, CASIZ, 178350. F, outer lateral teeth, paratype, CAS175726.
FIGURE 1 in An updated checklist of the herpetofauna of Querétaro, Mexico: species richness diversity, and conservation status
FIGURE 1. Biogeographic provinces of the state of Querétaro, Mexico. CP: Central Plateau; SMO: Sierra Madre Oriental; MTB: Mexican Transvolcanic Belt (INEGI 2009). Map modified from Comisión Nacional para el Conocimiento y Uso de la Biodiversidad (CONABIO 2008).
FIGURE 2 in An updated checklist of the herpetofauna of Querétaro, Mexico: species richness diversity, and conservation status
FIGURE 2. Types of climates of the state of Querétaro, México. (A)C(m): Semi-warm wet; (A)C(w1): Semi-low subhumid; Am: Warm wet; Aw1, Aw2, Awo: Warm subhumid; Bs1kw: Temperate semiarid; Bs0hw: Dry rain; Cb´(w2): Semi-sub humid; C(wo): Subhumid tempered. Map modified from Comisión Nacional para el Conocimiento y Uso de la Biodiversidad (CONA- BIO 2008).
FIGURE 9 in Two new species of Amphiglena (Sabellidae, Annelida), with an assessment of hidden diversity in the Mediterranean
FIGURE 9. Map of the Mediterranean showing where each of the seven different Amphiglena mediterranea clades were col- lected. Nice, France, the type locality of A. mediterranea is labeled with a question mark. No COI sequence was available from here making it impossible to assign either of the seven clades as the true A. mediterranea.
FIGURE 6. A, 3D in Two new species of Amphiglena (Sabellidae, Annelida), with an assessment of hidden diversity in the Mediterranean
FIGURE 6. A, 3D Reconstruction of a spermatheca; B–D, serial semi-thin sections used for 3D reconstruction. Position of each section on the z-axis is marked as planes in A. Arrow heads mark the narrow spermathecal tube.
FIGURE 8 in Two new species of Amphiglena (Sabellidae, Annelida), with an assessment of hidden diversity in the Mediterranean
FIGURE 8. Chaetae and uncini of Amphiglena seaverae n. sp. A, thoracic chaetae; B, abdominal chaetae; C, thoracic uncini; D, abdominal uncini.
FIGURE 7. Amphiglena seaverae n in Two new species of Amphiglena (Sabellidae, Annelida), with an assessment of hidden diversity in the Mediterranean
FIGURE 7. Amphiglena seaverae n. sp. (SIO-BIC A9470) Micrographs showing the live holotype. A, habitus, note the bright red pigmentation of the spermathecae in the live specimen; B, Detail of the crown an anterior thorax in the preserved holotype, spermathecae (st) with redish-brown pigmentation; C, posterior abdomen with oocytes (oc) and red pygidial eye spots (arrow heads).
FIGURE 5 in Two new species of Amphiglena (Sabellidae, Annelida), with an assessment of hidden diversity in the Mediterranean
FIGURE 5. Histology of Amphiglena Joyceae n. sp. (SIO-BIC A10038). A, Horizontal section of the entire body; B, Abdominal segments 11–13 showing details of early oocytes (oc) and the gut (g); C, pygidium, arrow heads mark the pygidial eyes; D, section through the epidermis, brackets mark the anterior glandular ring; E, anterior segments, arrow heads mark the peristomial eyes. Section shows the nephridia (n), vacuolated cells of the radiolar skeleton (rs) and spermathecae (st); F, detail of the spermathecae.
FIGURE 4 in Two new species of Amphiglena (Sabellidae, Annelida), with an assessment of hidden diversity in the Mediterranean
FIGURE 4. Chaetae and uncini of Amphiglena Joyceae n. sp. A, thoracic uncinus; B, abdominal uncinus; C, Thoracic chaetae; D, abdominal chaetae.
FIGURE 2. Amphiglena Joyceae n in Two new species of Amphiglena (Sabellidae, Annelida), with an assessment of hidden diversity in the Mediterranean
FIGURE 2. Amphiglena Joyceae n. sp. SIO-BIC A9479 A, Micrographs showing the habitus of the preserved holotype; B–E, Micrographs showing live specimens; B, Oocytes (oc) visible through the translucent body wall of a worm inside the tube; C, juvenile specimen, arrow heads mark peristomial and pygidial eyes; D and E, live specimens with crowns sticking out of the sediment covered tubes. Note the white pigmentation of spermathecae in D.
FIGURE 1. A in Two new species of Amphiglena (Sabellidae, Annelida), with an assessment of hidden diversity in the Mediterranean
FIGURE 1. A, Maximum likelihood tree of the combined analysis from two genes (18S, COI) aligned with MAFFT and then concatenated. Support values at nodes are bootstrap support percentages from RAxML and Maximum Parsimony analyses, followed by Bayesian posterior probabilities; B, Maximum likelihood tree of all COI sequences for Mediterranean Amphiglena species, with the corresponding heatmap showing inter- and intraspecific uncorrected p-distances within the Amphiglena mediterranea species complex. The other Amphiglena terminals and the outgroup are not shown here.
FIGURE 3 in Two new species of Amphiglena (Sabellidae, Annelida), with an assessment of hidden diversity in the Mediterranean
FIGURE 3. SEM micrographs of Amphiglena Joyceae n. sp. (SIO-BIC A9486) A, dorsal view of the thorax, showing the faecal groove (fg), anterior (apr) and poterior peristomial rings (ppr); B, overview of the complete body; C, junction of the crown and peristomium, short ventral basal flanges (vbf) not connected to the ventralmost radioles, ciliated patch of the anterior peristomial ring (ci), and the densely ciliated pinnules (pi); D, lateral view showing the transition from thorax and abdomen, showing the details of chaetae and uncini.
FIGURE 13 in Exploring species diversity and host plant associations of leaf-mining micromoths (Lepidoptera: Gracillariidae) in the Russian Far East using DNA barcoding
FIGURE 13. Mines of Phyllonorycter spp. from the Russian Far East. (A–B) Ph. ringoniella, host plant Malus mandshurica; (C–D) Ph. sorbicola, Prunus padus and Prunus maackii respectively; (E) Ph. strigulatella, Alnus hirsuta; (F) Phyllonorycter sp. 1, Tilia mandshurica; (G–H) Phyllonorycter sp. 6, Acer pseudosieboldianum. Indications: (m) mine; (t) epidermal tunnel; (b) blotch. Close up: (B–C, F, H) mine. Sampling locations: (A–D, F–H) PK, Gornotaezhnoe, MTS and forest, 22–26.VII.2016; (E) SO, Sakhalin Isl., Yuzhno-Sakhalinsk, 11–20.VII.2017.
FIGURE 15 in Exploring species diversity and host plant associations of leaf-mining micromoths (Lepidoptera: Gracillariidae) in the Russian Far East using DNA barcoding
FIGURE 15. Similarity of gracillariid faunas of the Russian regions and Japan. Gracillariid species number is given in the corresponding bar, number of shared species is in the circles. The similarity Sørensen–Dice coefficient is given in red.
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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.