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4,034 results for “Species associations”
Figure 11 in Two new genera and two new species of the mite family Neopygmephoridae (Acari: Heterostigmata) associated with small mammals from USA
Figure 11 DIC micrographs (Hitachi KP-HD20A) ofTheriadania venusta sp. nov., female: A – prodorsum, B – part of tergite D, C – right
Figure 10 in Two new genera and two new species of the mite family Neopygmephoridae (Acari: Heterostigmata) associated with small mammals from USA
Figure 10 DIC micrographs (AxioCam 506 color) ofTheriadania venusta sp. nov., female: A – prosoma and tergite C, B – tergites C and D, C – tergites EF and H, D – prosoma in ventral view, E – posterior sternal plate, F – lateral and aggenital plates in ventral view.
Figure 8 in Two new genera and two new species of the mite family Neopygmephoridae (Acari: Heterostigmata) associated with small mammals from USA
Figure 8 Theriadania venusta sp. nov., female: A – right leg I in dorsal view, B – right leg I in ventral view, C – right leg II in dorsal view, D – genu, tibia and tarsus of right leg II in ventral view.
Figure 9 in Two new genera and two new species of the mite family Neopygmephoridae (Acari: Heterostigmata) associated with small mammals from USA
Figure 9 Theriadania venusta sp. nov., female: A – left leg III in dorsal view, B – left leg IV in dorsal view.
Figure 6 in Two new genera and two new species of the mite family Neopygmephoridae (Acari: Heterostigmata) associated with small mammals from USA
Figure 6 Theriadania venusta sp. nov., female: A – dorsum of the body, B – venter of the body. Legs omitted.
Figure 5 in Two new genera and two new species of the mite family Neopygmephoridae (Acari: Heterostigmata) associated with small mammals from USA
Figure 5 DIC micrographs (AxioCam 506 color) ofCrossdania tubulosasp. nov., female: A – prodorsum, B – tergites D and EF, C – tube-like structures (arrowed) under tergite H, D – prosoma in ventral view, E – posterior sternal plate, F – leg II in dorsal view.
Figure 2 in Two new genera and two new species of the mite family Neopygmephoridae (Acari: Heterostigmata) associated with small mammals from USA
Figure 2 Crossdania tubulosasp. nov., female: A – gnathosoma in dorsal view, B – gnathosoma and pharyngeal pumps in ventral view.
Figure 4 in Two new genera and two new species of the mite family Neopygmephoridae (Acari: Heterostigmata) associated with small mammals from USA
Figure 4 Crossdania tubulosasp. nov., female: A – left leg III in dorsal view, B – left leg IV in dorsal view.
Figure 3 in Two new genera and two new species of the mite family Neopygmephoridae (Acari: Heterostigmata) associated with small mammals from USA
Figure 3 Crossdania tubulosasp. nov., female: A – left leg I in dorsal view, B – left leg II in dorsal view.
Figure 1 in Two new genera and two new species of the mite family Neopygmephoridae (Acari: Heterostigmata) associated with small mammals from USA
Figure 1 Crossdania tubulosasp. nov., female: A – dorsum of the body, B – venter of the body. Legs omitted.
Fig. 1. Ochthebius species. A – O in Differentiation of South African coastal rock pool Ochthebius is associated with major ocean currents (Coleoptera: Hydraenidae)
Fig. 1. Ochthebius species. A – O. capicola (Péringuey, 1892) (Yzerfontein, Western Cape Province), male habitus; B – O. mlamboi sp. nov., holotype habitus; C – O. capicola (Péringuey, 1892) (Yzerfontein, Western Cape Province), aedeagus, lateral and ventral views; D – O. mlamboi sp. nov., holotype aedeagus, lateral and ventral views. Scale bar A–B = 1 mm; C–D = 0.25 mm.
Fig. 2. Ochthebius species, showing dorsal sculpture A & C – O in Differentiation of South African coastal rock pool Ochthebius is associated with major ocean currents (Coleoptera: Hydraenidae)
Fig. 2. Ochthebius species, showing dorsal sculpture A & C – O. capicola (Péringuey, 1892) (Yzerfontein, Western Cape Province); B & D – O. mlamboi sp. nov. A & B – pronota; C & D – elytra. Scale bars = 0.5 mm.
Figure 9 in Scale-worms (Polychaeta, Polynoidae) associated with chaetopterid worms (Polychaeta, Chaetopteridae), with description of a new genus and species
Figure 9. Number of symbiotic polychaete species associated with Chaetopteridae in relation with the number of species of the four currently known genera of the family.
Figure 8 in Scale-worms (Polychaeta, Polynoidae) associated with chaetopterid worms (Polychaeta, Chaetopteridae), with description of a new genus and species
Figure 8. Ophthalmonoe pettiboneae, parapodia. (A) Second elytrigerous chaetiger (long ventral cirrus separated), ventral view; (B) 20th cirrigerous chaetiger, anterior view showing the long, intensely pigmented dorsal cirrus; (C) 16th cirrigerous chaetiger, posterior view, showing the short triangular postchaetal lobe; (D) 40th cirrigerous chaetiger, anterior view showing the short dorsal cirrus; (E) tips of hooded neurochaeta.
Figure 6 in Scale-worms (Polychaeta, Polynoidae) associated with chaetopterid worms (Polychaeta, Chaetopteridae), with description of a new genus and species
Figure 6. Lepidasthenia brunnea. (A) Anterior end, dorsal view; (B) anterior end, lateral view; (C) tube of the host cut to show the symbiont on one section (up) and the host tentacles in the other (down); (D) elytron; (E) detail of the external edge of elytron. Scale bars are in mm.
Figure 4 in Scale-worms (Polychaeta, Polynoidae) associated with chaetopterid worms (Polychaeta, Chaetopteridae), with description of a new genus and species
Figure 4. Anotochaetonoe michelbhaudi gen. and sp. nov., parapodia. (A) 14th cirrigerous chaetiger, anterior view with details of prechaetal lobe; (B) 15th elytrigerous chaetiger, anterior view; (C) 13th cirrigerous chaetiger, anterodorsal view; (D) ciliated papilla from the ventral surface of neuropodia. (A, B) Holotype; (C) paratype. Scale bars are in mm.
Figure 7 in Scale-worms (Polychaeta, Polynoidae) associated with chaetopterid worms (Polychaeta, Chaetopteridae), with description of a new genus and species
Figure 7. Ophthalmonoe pettiboneae. (A) Anterior end, dorsal view, showing both the pigmentation and the elytra arrangement; (B) terminal view of the anterior end, showing the buccal lips; (C) elytron; (D) detail of the surface of the elytron with micropapillae; (E) living worm (lacking the posterior end) inside the tube of the host. Scale bars are in mm (except D).
Figure 1 in Scale-worms (Polychaeta, Polynoidae) associated with chaetopterid worms (Polychaeta, Chaetopteridae), with description of a new genus and species
Figure 1. Anotochaetonoe michelbhaudi gen. and sp. nov. (A) Whole worm, lateral view; (B, C) anterior end, dorsal view; (D) anterior end, lateral view; (E) terminal view of the pharynx, showing papillae and teeth; (F) terminal view of anterior end, showing the buccal lips. (A, B, D, E) Holotype; (C, F) paratype. DL, dorsal lip; LL, lateral lips; VL, ventral lip. Scale bars are in mm.
Figure 3 in Scale-worms (Polychaeta, Polynoidae) associated with chaetopterid worms (Polychaeta, Chaetopteridae), with description of a new genus and species
Figure 3. Anotochaetonoe michelbhaudi gen. and sp. nov., elytron of paratype from unknown segment. (A) Entire view; (B) detail of the structure of the dorsal surface showing the polygonal units of pigmentation; (C) detail of the anterior edge. Scale bars are in mm.
Figure 5 in Scale-worms (Polychaeta, Polynoidae) associated with chaetopterid worms (Polychaeta, Chaetopteridae), with description of a new genus and species
Figure 5. Anotochaetonoe michelbhaudi gen. and sp. nov. inside the tube of the host. (A) Posterior end protruding from the tube of the host; (B) anterior end of symbiont in contact with body of host. Hh, head of host; Sh, head of symbiont; Sp, pygidium of symbiont. Scale bars are in mm.
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.