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4,034 results for “Species associations”
Figure 2 in Scale-worms (Polychaeta, Polynoidae) associated with chaetopterid worms (Polychaeta, Chaetopteridae), with description of a new genus and species
Figure 2. Anotochaetonoe michelbhaudi gen. and sp. nov. (A) Anterior end, dorsal view; (B) anterior end, lateral view; (C) posterior end, dorsal view; (D) dorsal neurochaeta; (E) middle neurochaeta; (F) ventral neurochaeta. (A–F) Holotype. Scale bars are in mm.
Figures 37–40 in Morphological alteration in response to endogeic habitat and ant association in two new planthopper species from New Caledonia (Hemiptera: Auchenorrhyncha: Fulgoromorpha: Delphacidae)
Figures 37–40. Notuchus ninguae sp. nov., male genitalia (holotype). (37) Anal segment, aedeagus, paramere in situ, left lateral aspect. (38–40) Aedeagus, right lateral, dorsal, and left lateral aspects, respectively. Scale bar: 0.1 mm.
Figures 21–23 in Morphological alteration in response to endogeic habitat and ant association in two new planthopper species from New Caledonia (Hemiptera: Auchenorrhyncha: Fulgoromorpha: Delphacidae)
Figures 21–23. Notuchus kaori sp. nov., male genitalia (holotype). (21) Anal segment, aedeagus, paramere in situ, left lateral aspect. (22, 23) Aedeagus, right lateral and dorsal aspects, respectively. Scale bar: 0.1 mm.
Figures 30–36 in Morphological alteration in response to endogeic habitat and ant association in two new planthopper species from New Caledonia (Hemiptera: Auchenorrhyncha: Fulgoromorpha: Delphacidae)
Figures 30–36. Notuchus ninguae sp. nov., male genitalia (holotype). (30, 31) Genital capsule, left lateral and ventrocaudal aspects, respectively. (32–34) Genital segment, left lateral, caudal, and ventral aspects, respectively. (35) Anal segment, dorsal aspect. (36) Parameres, ventrocaudal aspect. Scale bars: 0.1 mm.
Figures 24–29 in Morphological alteration in response to endogeic habitat and ant association in two new planthopper species from New Caledonia (Hemiptera: Auchenorrhyncha: Fulgoromorpha: Delphacidae)
Figures 24–29. Notuchus kaori sp. nov., nymph (5th instar). (24) Habitus, dorsal aspect. (25) Head and prothorax, dorsal aspect. (26) Head, anterior aspect. (27) Frons, anterior aspect. (28) Head and thorax, anterolateral aspect. (29) Distal margin of pedicel. Scale bars in mm.
Figures 14–20 in Morphological alteration in response to endogeic habitat and ant association in two new planthopper species from New Caledonia (Hemiptera: Auchenorrhyncha: Fulgoromorpha: Delphacidae)
Figures 14–20. Notuchus kaori sp. nov., male genitalia (holotype). (14, 15) Genital capsule, left lateral and ventrocaudal aspects, respectively. (16–18) Genital segment, left lateral, caudal, and ventral aspects, respectively. (19) Anal segment, dorsal aspect. (20) Parameres, ventrocaudal aspect. Scale bars: 0.1 mm.
Figures 4–13 in Morphological alteration in response to endogeic habitat and ant association in two new planthopper species from New Caledonia (Hemiptera: Auchenorrhyncha: Fulgoromorpha: Delphacidae)
Figures 4–13. Notuchus kaori sp. nov., adult male (paratype). (4) Habitus, dorsal aspect. (5) Detail: right tegmen, dorsal aspect. (6) Habitus, left lateral aspect. (7) Head, anterolateral aspect. (8) Left antenna. (9) Same, pedicel with sensory plaques and macrosetae. (10) Same as in Figure 9, detail. (11) Post-tibial spur. (12) Same as in Figure 11, detail. (13) Pretarsus (arolium and claws), ventral aspect. Scale bars in mm.
Figures 2, 3 in Morphological alteration in response to endogeic habitat and ant association in two new planthopper species from New Caledonia (Hemiptera: Auchenorrhyncha: Fulgoromorpha: Delphacidae)
Figures 2, 3. Notuchus kaori sp. nov., adult male. (2) Habitus with colour pattern, dorsal aspect, paratype male. (3) Colour pattern of abdomen, ventrolateral aspect (genital capsule removed), holotype male. Scale bar: 0.2 mm.
Figures 41, 42 in Morphological alteration in response to endogeic habitat and ant association in two new planthopper species from New Caledonia (Hemiptera: Auchenorrhyncha: Fulgoromorpha: Delphacidae)
Figures 41, 42. Paratrechina spec. (Formicidae), worker. (41) Habitus, lateral aspect. (42) Head, frontal aspect.
Figures 43, 44 in Morphological alteration in response to endogeic habitat and ant association in two new planthopper species from New Caledonia (Hemiptera: Auchenorrhyncha: Fulgoromorpha: Delphacidae)
Figures 43, 44. (43) Hypochthonella caeca China and Fennah (Hypochthonellidae), endogeic species (from Hoch 1994, used with permission). (44) Notuchus larvalis Fennah (Delphacidae), obligately cavernicolous (troglobitic) species (from Hoch 1994, used with permission). Scale bars: 0.5 mm.
Figure 1 in A contribution to the knowledge of the eriophyoid mites (Trombidiformes: Eriophyidae) associated to Lythraceae with description of a new species from Iran
Figure 1. Schematic drawings of Aceria salicariae Lotfollahi & Tajaddod sp. nov. – AD. Prodorsal shield; AL. Lateral view of anterior body region; CG. Female coxigenital region; em. Empodium; GM. Male genital region; IG. Internal female genitalia; LO. Lateral view of annuli; L1. Leg I; PM. Lateral view of posterior opisthosoma. Scale bar: 10 µm for AD, AL, CG, GM, IG, PM; 5 µm for LO, L1; 2.5 µm for em.
Figs 8-11 in A Crataraea species associated with Formica chinensis (Coleoptera: Staphylinidae: Aleocharinae)
Figs 8-11: Crataraea myrmecophila nov.sp.: (8) vertex; (9) median portion of pronotum; (10) male sternite VIII; (11) female sternite VIII. Scale bars: 0.1 mm.
Figs 1-7 in A Crataraea species associated with Formica chinensis (Coleoptera: Staphylinidae: Aleocharinae)
Figs 1-7: Crataraea myrmecophila nov.sp.: (1) habitus; (2) forebody; (3) right elytron; (4-5) median lobe of aedeagus in lateral view; (6) ventral process of median lobe in ventral view; (7) spermatheca. Scale bars: 1-2: 1.0 mm; 3-7: 0.2 mm.
Fig. 5 in The habitat preference of dung beetle species associated with elephant dung of the Malay Peninsula
Fig. 5. The Non-metric multidimensional scaling(NMDS) ordination of 25 species of dung beetle from 271 forest and forest edge sampling points. Filled squares represent species that prefer forest habitats, open squares represent species that prefer forest edge habitats, and crossed squares represent species that are evenly distributed among habitat types. Species codes: L.fem: Liatongus femoratus, On.tes: Oniticellus tessellatus, On.cinc: On. cinctus, Y.sar: Yvescambefortius sarawacus, O.babi: Onthophagus babirussa, O.rufi: O. rufiobscurior, O.vul: O. vulpes, O.ror: O. rorarius, O.prot: O. proletarius, O.pac: O. pacificus, O.rugi: O. rugicollis, O.ori: O. oreintalis, O.cras: O. crassicollis, O.lae: O. laevis, O.dayc: O. dayacus, O.kar: O. karenensis, O. lur: O. luridipennis, O.leu: O. leusermontis, O.viri: O. viridicervicapra, O.tsu: O. tsubakii, Cc.un: Caccobius unicornis, Ct.ren: Catharsius renaudpauliani, Cp.dor: Copris doriae, Cp.spi: Cp. spinator, M.brah: Megatelus brahminus.
Fig. 4 in The habitat preference of dung beetle species associated with elephant dung of the Malay Peninsula
Fig. 4. Unweighted Pair Group Method with Arithmetic Mean (UPGMA) hierarchical clustering with Bray-Curtis distances of the 25 dung beetle species. Two major clusters are indicated, dung beetles that prefer (A) forest sampling points and (B) forest edge sampling points.
Fig. 2 in The habitat preference of dung beetle species associated with elephant dung of the Malay Peninsula
Fig. 2. Boxplots of the dung beetle relative abundance, species richness, and Shannon diversity for forest (n = 131) and forest edge (n = 140) sampling points.
Fig. 3. A in The habitat preference of dung beetle species associated with elephant dung of the Malay Peninsula
Fig. 3. A, Species accumulation curves for dung beetle species in 271 sampling points; B, Rarefaction curves comparing forest and forest edge samples. The solid line represents forest sampling points while the dotted line represents forest edge sampling points.
Fig. 2 in Associations of scarab beetles (Insecta: Coleoptera: Scarabaeidae) with dung of four species of mammals in Khao Yai National Park, Thailand
Fig. 2. Two-dimensional discriminant function plot depicting individual dung beetle pitfall traps for each of three types of dung and an unbaited control. Each symbol represents a trap with its position based on the composition of that trap. Instances where traps overlapped on the plot are not indicated. Numbers indicate centroid of each trap type.
Fig. 3 in Associations of scarab beetles (Insecta: Coleoptera: Scarabaeidae) with dung of four species of mammals in Khao Yai National Park, Thailand
Fig. 3. Loboparius schereri (Petrovitz) (Scarabaeidae: Aphodiinae), a new country record for Thailand.
Fig. 1 in Indopinnixa shellorum, a new species of pea crab (Crustacea: Brachyura: Pinnotheridae) associated with a sipunculid from Singapore
Fig. 1. Indopinnixa shellorum, new species, holotype male (4.01 × 2.45 mm) (ZRC 2014.0367), St. John's Island, Singapore. A, dorsal view; B, frontal view. Photographs by A. Anker.
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.