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5,864 results for “species diversity”
Figure 3 in Diversity and biogeography of the little known deep-sea barnacles of the genus Waikalasma Buckeridge, 1983 (Balanomorpha: Chionelasmatoidea) in the Southwest Pacific, with description of a new species
Figure 3. Waikalasma boucheti. (a) Cirrus I. (b) Magnified view of posterior ramus. (c) Serrulate setae on posterior ramus. (d) Tip of anterior ramus. (e) Cirrus II. (f) Intermediate segment of posterior cirrus. (g) Intermediate segments of anterior ramus. (h) Serrulate setae on tip of rami. Scale bars in μm.
Figure 1 in Diversity and biogeography of the little known deep-sea barnacles of the genus Waikalasma Buckeridge, 1983 (Balanomorpha: Chionelasmatoidea) in the Southwest Pacific, with description of a new species
Figure 1. Map showing the sampling sites of Waikalasma from French expeditions. Diamonds indicate Waikalasma dianajonesae sp. nov., circles indicate W. boucheti and the square indicates the type locality of the fossil W. juneae.
Figure 2 in Diversity and biogeography of the little known deep-sea barnacles of the genus Waikalasma Buckeridge, 1983 (Balanomorpha: Chionelasmatoidea) in the Southwest Pacific, with description of a new species
Figure 2. Waikalasma boucheti. External view of whole shell. (a) Top view. (b) Left side view. (c) Right side view. (d) Rostral view. (e) Carinal view. (f) External view of scuta. (g) Internal view of scuta. (h) External view of terga. (i) Internal view of terga.
Figure 4 in Diversity and biogeography of the little known deep-sea barnacles of the genus Waikalasma Buckeridge, 1983 (Balanomorpha: Chionelasmatoidea) in the Southwest Pacific, with description of a new species
Figure 4. Waikalasma boucheti. (a) Cirrus III. (b) Intermediate segments of anterior ramus. (c) Serrulate setae on cirrus III. (d) Intermediate segments of posterior ramus (e) Cirrus IV. (f) Intermediate segments of posterior ramus. (g) Simple setae of greater curvature of anterior ramus. (h) Intermediate segments of anterior ramus. Scale bars in μm.
Figure 8 in Diversity and biogeography of the little known deep-sea barnacles of the genus Waikalasma Buckeridge, 1983 (Balanomorpha: Chionelasmatoidea) in the Southwest Pacific, with description of a new species
Figure 8. Waikalasma boucheti. Intraspecific variation of mouth parts. (a) Maxillule of holotype. (b) Mandible of holotype. (c) Labrum of holotype redrawn from Buckeridge (1996). (d) Maxillule, redrawn from Jones (2000). (e) Mandible, redrawn from Jones (2000). (f) Labrum, redrawn from Jones (2000). (g) Maxillule of MNHM-IU-20131996–1. (h) Mandible of MNHM-IU-20131996–1. (i) Labrum of MNHM-IU-20131996–1. (j) Maxillule of MNHN-IU-2013–7540. (k) Mandible of MNHN-IU- 2013–7540. (l) Labrum of MNHN-IU-2013–7540. (m) Maxillule of MNHM-IU-2013–7587. (n) Mandible of MNHM-IU-2013–7587. (o) Labrum of MNHM-IU-2013–7587. Serrated cutting edge of the third tooth of mandibles in h, k and n are indicated by black arrows.
Figure 7 in Diversity and biogeography of the little known deep-sea barnacles of the genus Waikalasma Buckeridge, 1983 (Balanomorpha: Chionelasmatoidea) in the Southwest Pacific, with description of a new species
Figure 7. Waikalasma boucheti. (a) Mandible. (b) Lower margin of mandible. (c) Serrated edge of the third tooth. (d) Inferior angle. (e) Mandibular palp. (f) Serrulate setae on palp. (g) Labrum. (h) Cutting edge of labrum, showing small teeth. Scale bars in μm.
Figure 13 in Diversity and biogeography of the little known deep-sea barnacles of the genus Waikalasma Buckeridge, 1983 (Balanomorpha: Chionelasmatoidea) in the Southwest Pacific, with description of a new species
Figure 13. Waikalasma dianajonesae sp. nov. (a) Maxilla. (b) Maxillary lobes. (c) Serrulate setae on maxilla. (d) Serrulate setae on lower margin. (e) Maxillule. (f) Upper margin of maxillule. (g) Large setae on cutting edge of maxillule and notch on cutting margin. (h) Setae on cutting margin. Scale bars in μm.
Figure 11 in Diversity and biogeography of the little known deep-sea barnacles of the genus Waikalasma Buckeridge, 1983 (Balanomorpha: Chionelasmatoidea) in the Southwest Pacific, with description of a new species
Figure 11. Waikalasma dianajonesae sp. nov. (a) Cirrus III. (b) Intermediate segments of posterior ramus. (c) Serrulate setae of cirrus III. (d) Intermediate segments of anterior ramus (e) Cirrus IV. (f) Intermediate segments of posterior ramus. (g) Distal end of anterior ramus. (h) Intermediate segments of anterior ramus. Scale bars in μm.
Figure 6 in Diversity and biogeography of the little known deep-sea barnacles of the genus Waikalasma Buckeridge, 1983 (Balanomorpha: Chionelasmatoidea) in the Southwest Pacific, with description of a new species
Figure 6. Waikalasma boucheti. (a) Maxilla. (b, c) Serrulate setae on maxilla. (d) Maxillary lobes. (e) Maxillule. (f) Upper margin of maxillule. (g) Large setae on cutting edge of maxillule. (h) Lower margin of maxillule. Scale bars in μm.
Figure 5 in Cryptic subarctic diversity: a new bumblebee species from the Yukon and Alaska (Hymenoptera: Apidae)
Figure 5. Estimate of the phylogenetic tree for the species of the subgenus Alpinobombus (Table 1), from a linked-tree BEAST analysis of COI sequences and PEPCK exon and intron sequences for each species (Williams et al. 2015), showing the relationships of Bombus kluanensis sp. nov. Values above the nodes are Bayesian posterior probabilities showing branch support. Values below the nodes are estimated dates of divergence in Ma (millions of years before the present) calibrated from a molecular estimate for the date of divergence between the subgenus Alpinobombus and the subgenus Bombus s. str. (Hines 2008). Grey bars show the 95% confidence limits on the estimated dates of divergence.
Figure 3 in Cryptic subarctic diversity: a new bumblebee species from the Yukon and Alaska (Hymenoptera: Apidae)
Figure 3. Photo of the holotype queen of Bombus kluanensis sp. nov. from the right lateral aspect (scale bar marked in mm), image reversed, collected from 2000 m on Outpost Mountain (60.9502°N, 138.4320°W), Yukon, 18 June 2010. Photo by Harry Taylor, © NHM digital imaging unit.
Figure 2 in Cryptic subarctic diversity: a new bumblebee species from the Yukon and Alaska (Hymenoptera: Apidae)
Figure 2. Sites with one or more records of Bombus kluanensis sp. nov. shown as black spots for the material examined, with white spots for samples with COI sequences, and grey crosses for sites with one or more records of all other species of the subgenus Alpinobombus within the region combined. Map with polar projection, with relief and hill shading, and with national boundaries and the Arctic Circle shown as narrow grey lines. Image created in ArcGIS using World_Shaded_Relief basemap which is © 2014 ESRI.
Figure 4 in Cryptic subarctic diversity: a new bumblebee species from the Yukon and Alaska (Hymenoptera: Apidae)
Figure 4. Photo of the holotype queen of Bombus kluanensis sp. nov. (as in Figure 3) showing detail of the left 'cheek' (oculo-malar) area between the ventral part of the compound eye and the dorsal part of the mandible. Photo by Harry Taylor, © NHM digital imaging unit.
Figure 1 in Cryptic subarctic diversity: a new bumblebee species from the Yukon and Alaska (Hymenoptera: Apidae)
Figure 1. Plot of measurements of mandibular basal breadth (x-axis) against oculo-malar distance (y-axis) for females (n = 62). Each symbol represents pairs of measurements from one or more specimens, with circles for workers and squares for queens. k: specimens identified from their COI barcodes as Bombus kluanensis sp. nov.; n: specimens identified from their COI barcodes as B. neoboreus; the primary type specimens for these two names are indicated with grey lines (holotype queen of B. kluanensis sp. nov.; lectotype queen of B. neoboreus). Specimens interpreted as belonging to the species B. neoboreus are shown with outline symbols; specimens interpreted as belonging to the species B. kluanensis sp. nov. are shown with filled symbols.
Figure 5 in Heleobia maltzani (Westerlund, 1886) (Caenogastropoda: Truncatelloidea: Cochliopidae) from Crete and species-level diversity of Heleobia Stimpson, 1865 in Europe
Figure 5. Maximum likelihood tree for the COI mitochondrial gene, based on the sequences of two Heleobia haplotypes (HI and H2) from Crete and other European (available in GenBank) Heleobia species. The bar indicates 0.005 substitutions per site. For details see Table 1.
Figure 2 in Heleobia maltzani (Westerlund, 1886) (Caenogastropoda: Truncatelloidea: Cochliopidae) from Crete and species-level diversity of Heleobia Stimpson, 1865 in Europe
Figure 2. Shells of Heleobia maltzani (Westerlund, 1886): (A-G) Almiros of Gheorghioupoulis; (H-O) Almiros of Iraklion; (P-X) Almiros of Aghios Nikolaos. Scale bar = 1 mm.
Figure 4 in Heleobia maltzani (Westerlund, 1886) (Caenogastropoda: Truncatelloidea: Cochliopidae) from Crete and species-level diversity of Heleobia Stimpson, 1865 in Europe
Figure 4. Renal and pallial section of female reproductive organ of Helobia maltzani from Crete. bc – bursa copulatrix, cbc – duct of bursa copulatrix, ga – albuminoid gland, gn – nidamental (capsule) gland, gp1–gonoporus terminating oviduct, gp2–gonoporus terminating spermal (copulatory) duct, ovs – spiral of (renal) oviduct, pmc – posterior border of mantle (pallial cavity), rs – receptaculum seminis, sd – spermathecal (copulatory) duct.
Figure 1 in Heleobia maltzani (Westerlund, 1886) (Caenogastropoda: Truncatelloidea: Cochliopidae) from Crete and species-level diversity of Heleobia Stimpson, 1865 in Europe
Figure 1. Map of the sampling sites of Heleobia: (A) study sites: K03 – Almiros Gheorghioupoulis; K05 – Almiros of Iraklion; K06 – Almiros of Aghios Nicolaos. The haplotypes (H1 and H2) for the COI mitochondrial gene are also presented, with their frequencies at each site. (B) Sites for reference sequences (for details see Table 1). Red dots correspond to clade A1 and A2.
Figure 3 in Diversity of aquatic bird species in a wetland complex in southern Chile
Figure 3. Similarity tree-diagram of the Lanalhue Lake wetland complex in southern Chile. Lanalhue lake is an independent habitat category (lacustrine wetland) within the whole study area.
Figure 2 in Diversity of aquatic bird species in a wetland complex in southern Chile
Figure 2. Variation in the abundance of aquatic bird specimens in Lanalhue Lake wetland, Chile between winter 2005 and summer 2008.
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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.