Find research datasets worth reusing
Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.
435
datasets available to search
ShareScore release 0.9.0
Dataset results
435 results for “myrmecophilous”
Figure 5 in The influence of ants on the mating strategy of a myrmecophilic jumping spider (Araneae, Salticidae)
Figure 5. Phintella piatensis female in a normal body posture holding the palps in a normal posture.
Figure 4 in The influence of ants on the mating strategy of a myrmecophilic jumping spider (Araneae, Salticidae)
Figure 4. Comparison of number of Phintella piatensis pairs mating inside versus outside nest, under two different conditions. Ants present: data from testing in presence of mounts made from Oecophylla smaragdina workers. Ants not present: pooled data from testing in the presence of mounts made from Nephotettix nigropictus (leafhoppers) and testing in the absence of mounts.
Figure 2 in The influence of ants on the mating strategy of a myrmecophilic jumping spider (Araneae, Salticidae)
Figure 2. Influence of presence of nests and of interacting with conspecific individuals on survival of Phintella piatensis with ants (three Oecophylla smaragdina workers). Group A: male–juvenile pair, no nest. Group B: female–female pair, no nest. Group C: male–female pair, ants not introduced until mating ended, no nest. Group D: male–female pair (female mated 2 days earlier), no mating, no nest. Group E: male–male pair, no nest. Group F: male– female pair mating, no nest. Group G: male–female pair, in nest. For all groups, n580 except Group F (n540).
Figure 1 in The influence of ants on the mating strategy of a myrmecophilic jumping spider (Araneae, Salticidae)
Figure 1. Phintella piatensis male, with body lowered, probing on nest. Female in nest. Note rectangular shape of nest.
Figure 11 in The influence of ants on the mating strategy of a myrmecophilic jumping spider (Araneae, Salticidae)
Figure 11. Phintella piatensis male (facing up and to left) in tiptoe posture while standing on female's nest. Palps downward (extend straight down). All leg tarsi contacting silk.
Figure 10 in The influence of ants on the mating strategy of a myrmecophilic jumping spider (Araneae, Salticidae)
Figure 10. Phintella piatensis males embracing. Palps erect in Position 2. Legs I erect in Position 3. Chelicerae spread apart and fangs extended.
Figure 6 in The influence of ants on the mating strategy of a myrmecophilic jumping spider (Araneae, Salticidae)
Figure 6. Mating pair of Phintella piatensis. Female (below; facing left) with abdomen flexed up and rotated to her left; cephalothorax lowered. Male (above; facing right and down) standing with his body to female's right side. Male's body tilted down.
Fig. 5. Myrmecoplectus wellingtonicus. A in Myrmecophilous Pselaphinae (Coleoptera: Staphylinidae) from New Zealand
Fig. 5. Myrmecoplectus wellingtonicus. A) Male head and prothorax, dorsal view, B) Female head and prothorax, dorsal view, C) Male head and prothorax, ventral view, D) Male maxillary palpus, ventral view, E) Male left antenna, dorsal view, F) Female left antenna, dorsal view, G) Left elytron, dorsal view, H) Abdomen, dorsal view.
Fig. 2. Kenocoelus species. A in Myrmecophilous Pselaphinae (Coleoptera: Staphylinidae) from New Zealand
Fig. 2. Kenocoelus species. A) K. dimorphus, ventral view, B) K. mikonuiensis, ventral view, C) K. johni, ventral view, D) K. dimorphus, abdominal sternites IV–V, ventral view, E) K. mikonuiensis, abdominal sternites IV–V, ventral view, F) K. johni, abdominal sternites IV–V, ventral view, G and J) K. dimorphus, left concavities on abdominal sternites IV–V, H and K) K. mikonuiensis, left concavities on abdominal sternites IV–V, I and L) K. johni, left concavities on abdominal sternites IV–V.
Fig. 1. Kenocoelus species, habitus. A in Myrmecophilous Pselaphinae (Coleoptera: Staphylinidae) from New Zealand
Fig. 1. Kenocoelus species, habitus. A) K. dimorphus, male, B) K. mikonuiensis, male, C) K. johni, male, D) K. dimorphus, female, E) K. mikonuiensis, female, F) K. johni, female. Scale bar = 1 mm.
Fig. 23. Type specimens and their original labels. A in Myrmecophilous Pselaphinae (Coleoptera: Staphylinidae) from New Zealand
Fig. 23. Type specimens and their original labels. A) Kenocoelus dimorphus, B) "Dalma" gigantea, C) Neosampa granulata.
Fig. 11. Parkerola gigantea, male. A in Myrmecophilous Pselaphinae (Coleoptera: Staphylinidae) from New Zealand
Fig. 11. Parkerola gigantea, male. A) Abdominal tergite VIII, B) Sternite VIII, C) Tergite IX (two lateral plates) and sternite IX (middle plate), D) Genitalia, ventral view, E) Genitalia, lateral view.
Fig. 4. Myrmecoplectus species, habitus. A in Myrmecophilous Pselaphinae (Coleoptera: Staphylinidae) from New Zealand
Fig. 4. Myrmecoplectus species, habitus. A) M. wellingtonicus, male paratype, B) M. attenuatus, female holotype.
Fig. 3. Kenocoelus species. A in Myrmecophilous Pselaphinae (Coleoptera: Staphylinidae) from New Zealand
Fig. 3. Kenocoelus species. A) K. dimorphus, abdominal tergite VIII, B) K. mikonuiensis, abdominal tergite VIII, C) K. johni, abdominal tergite VIII, D) K. dimorphus, sternite VIII, E) K. mikonuiensis, sternite VIII, F) K. johni, sternite VIII, G) K. dimorphus, abdominal segment IX, H) K. mikonuiensis, abdominal segment IX, I) K. johni, abdominal segment IX, J) K. dimorphus, male genitalia, K) K. mikonuiensis, male genitalia, L) K. johni, male genitalia. Scale = 0.1 mm.
Fig. 7. Myrmecoplectus species, females. A in Myrmecophilous Pselaphinae (Coleoptera: Staphylinidae) from New Zealand
Fig. 7. Myrmecoplectus species, females. A) M. wellingtonicus, abdominal segment VIII, lateral view, B) M. attenuatus, abdominal segment VIII, lateral view. M. wellingtonicus: C) Tergite VIII, D) Sternite VIII, E) Genital plate. M. attenuatus: F) Tergite VIII, G) Sternite VIII, H) Genital plate. Scale = 0.1 mm.
Fig. 13. Zeadalmodes myrmecophilus, male. A in Myrmecophilous Pselaphinae (Coleoptera: Staphylinidae) from New Zealand
Fig. 13. Zeadalmodes myrmecophilus, male. A) Head and prothorax, dorsal view, B) Head and prothorax, in ventral view, C) Right maxillary palpus, ventral view, D) Right antenna, ventral view, E) Meso- and metathoraces, ventral view, F) Left elytron, dorsal view, G) Abdomen, dorsal view, H) Abdomen, ventral view.
Fig. 6. Myrmecoplectus wellingtonicus. A in Myrmecophilous Pselaphinae (Coleoptera: Staphylinidae) from New Zealand
Fig. 6. Myrmecoplectus wellingtonicus. A) Tergite VIII, B) Sternite VIII, C) Tergite IX (two lateral plates) and sternite IX (middle plate), D) Genitalia, ventral view, E) Genitalia, lateral view. Scale = 0.1 mm.
Fig. 12. Zeadalmodes species, habitus. A in Myrmecophilous Pselaphinae (Coleoptera: Staphylinidae) from New Zealand
Fig. 12. Zeadalmodes species, habitus. A) Z. myrmecophilus, male holotype, B) Z. brevis, female paratype. Scale = 1 mm.
Fig. 10. Parkerola gigantea, male. A in Myrmecophilous Pselaphinae (Coleoptera: Staphylinidae) from New Zealand
Fig. 10. Parkerola gigantea, male. A) Head and pronotum, dorsal view, B) Head and pronotum, ventral view, C) Right maxillary palpus, ventral view, D) Pronotum, ventral view, E) Meso- and metathoraces, ventral view, F) Elytra, G) Abdomen, dorsal view, H) Abdomen, ventral view.
Fig. 9 in Myrmecophilous Pselaphinae (Coleoptera: Staphylinidae) from New Zealand
Fig. 9. Characters of Parkerola gigantea and Dalma sp. A) P. gigantea, male left antenna, B) Dalma sp., left antenna, C) P. gigantea, male pronotum, D) Dalma sp., pronotum, E) P. gigantea, postero-lateral part of male pronotum, F) Dalma sp., postero-lateral part of pronotum, G) P. gigantea, basal part of male elytron, H) Dalma sp., basal part of elytron.
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.