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4,034
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ShareScore release 0.9.0
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4,034 results for “Species associations”
FIGURE 1 in A new genus and species of cyproideid amphipod associated with unstalked crinoids on the Great Barrier Reef, Australia
FIGURE 1. Geographic distribution of cyproideid genera: 1. Austropheonoides J.L. Barnard, 1972; 2. Cyproidea Haswell, 1879; 3. Gbroidea gen. nov.; 4. Hoplopheonoides Shoemaker, 1956; 5. Hoplopleon K.H. Barnard, 1932; 6. Mokuoloe J.L. Barnard, 1970; 7. Moolapheonoides J.L. Barnard, 1974; 8. Narapheonoides J.L. Barnard, 1972; 9. Neocyproidea Hurley, 1955; 10. Paracyproidea Stebbing, 1899; 11. Peltocoxa Catta, 1875; 12. Peltopes K.H. Barnard, 1930; 13. Pseudopeltocoxa Schiecke, 1977; 14. Stegoplax G.O. Sars, 1883; 15. Terepeltopes Hirayama, 1983; 16. Unguja Griffiths, 1976; 17. Unyapheonoides J.L. Barnard, 1972; 18. Victorhensenoides Rauschert, 1996.
FIGURE 4 in A new genus and species of cyproideid amphipod associated with unstalked crinoids on the Great Barrier Reef, Australia
FIGURE 4. Gbroidea dingaalana sp. nov., holotype female, 2.5 mm, AM P76155, off Watsons Beach, Lizard Island.
FIGURE 3 in A new genus and species of cyproideid amphipod associated with unstalked crinoids on the Great Barrier Reef, Australia
FIGURE 3. Gbroidea dingaalana sp. nov., holotype female, 2.5 mm, AM P76155, off Watsons Beach, Lizard Island.
FIGURE 2 in A new genus and species of cyproideid amphipod associated with unstalked crinoids on the Great Barrier Reef, Australia
FIGURE 2. Gbroidea dingaalana sp. nov., female paratype, AM P38471, off Watsons Beach, Lizard Island.
FIGURE 3. Dimelaena subsquamulosa, holotype. A. Habit growing associated with Buellia rugosissima. B in Three new species of crustose Physciaceae from Guatemala, with notes on some additional species
FIGURE 3. Dimelaena subsquamulosa, holotype. A. Habit growing associated with Buellia rugosissima. B. Buellia-type ascospores with walls not ornamented.
FIGURE 2 in Suillus triacicularis sp. nov., a new species associated with Pinus roxburghii from northwestern Himalayas, India
FIGURE 2. Suillus triacicularis (PUN5534, holotype!). a. Young sporocarps with yellowish white to pale yellow pileus. b. Mature sporocarps showing yellow to reddish or orange-yellow pileus. c. Light brown to brown spotted tubes. d. Orange-red to reddish brown glandular dots or smears on stipe. Scale bars: a–d=2 cm.
FIGURE 1 in Suillus triacicularis sp. nov., a new species associated with Pinus roxburghii from northwestern Himalayas, India
FIGURE 1. Bayesian analysis of ITS sequences for granulatus-like group of Suillus. Bold indicates Suillus triacicularis sp. nov. Bayesian posterior probability (BPP) percentages above 50% are shown at the nodes of the tree. SG1 (European), SG2 (European & Asian) and SG3 (North American) refer to different groups including S. granulatus isolates.
FIGURE 3. Suillus triacicularis, microscopic line drawings. a. Basidiospores. b. Basidia. c. Pleurocystidia. d. Cheilocystidia. e in Suillus triacicularis sp. nov., a new species associated with Pinus roxburghii from northwestern Himalayas, India
FIGURE 3. Suillus triacicularis, microscopic line drawings. a. Basidiospores. b. Basidia. c. Pleurocystidia. d. Cheilocystidia. e. Caulocystidia. Scale bar: a–e=10 µm.
FIGURES 668–672 in Rearing mining flies (Diptera: Agromyzidae) from host plants as an instrument for associating females with males, with the description of seven new species
FIGURES 668–672. Phytomyza torilisi spec. nov.; 668 a–b: spermathecae and ventral receptacle proportionally; a: spermathecae; b: ventral receptacle; 669: phallus and ejaculatory apodeme proportionally viewed from the side; 670: ejaculatory apodeme; 671: hypandrium viewed from the side; 672: epandrium and hypandrium viewed from below.
FIGURES 657–661 in Rearing mining flies (Diptera: Agromyzidae) from host plants as an instrument for associating females with males, with the description of seven new species
FIGURES 657–661. Phytomyza spinaciae Hendel; 657: cephalopharyngeal skeleton; 658: frontal view of head; 659: head viewed from the side; 660: oviscape, ventral receptacle and spermatheca proportionally; 661: ventral receptacle.
FIGURES 673–679. Figure 673 in Rearing mining flies (Diptera: Agromyzidae) from host plants as an instrument for associating females with males, with the description of seven new species
FIGURES 673–679. Figure 673: Phytomyza crassiseta Zetterstedt, fronto-lateral view of head; Figures 674–679: P. veronicicola Hering; 674: cephalopharyngeal skeleton; 675: fronto-lateral view of head; 676: head viewed from the side; 677: oviscape, ventral receptacle and spermathecae proportionally; 678: spermathecae; 679: ventral receptacle.
FIGURES 646–651 in Rearing mining flies (Diptera: Agromyzidae) from host plants as an instrument for associating females with males, with the description of seven new species
FIGURES 646–651. Phytomyza sedicola Hering; 646: cephalopharyngeal skeleton; 647: frontal view of head; 648: head viewed from the side; 649: oviscape, ventral receptacle and spermatheca proportionally; 650: spermatheca; 651: ventral receptacle proportionally.
FIGURES 640–645 in Rearing mining flies (Diptera: Agromyzidae) from host plants as an instrument for associating females with males, with the description of seven new species
FIGURES 640–645. Phytomyza ranunculi (Schrank); 640: cephalopharyngeal skeleton; 641: frontal view of head; 642: head viewed from the side; 643: oviscape, ventral receptacle and spermathecae proportionally; 644: spermatheca; 645: ventral receptacle.
FIGURES 634–639 in Rearing mining flies (Diptera: Agromyzidae) from host plants as an instrument for associating females with males, with the description of seven new species
FIGURES 634–639. Phytomyza pulmonaria Nowakowski; 634: cephalopharyngeal skeleton; 635: frontal view of head; 636: head viewed from the side; 637: oviscape, ventral receptacle and spermathecae proportionally; 638: spermatheca; 639 a–b: ventral receptacle; a: lateral view; b: ventro-lateral view.
FIGURES 622–627 in Rearing mining flies (Diptera: Agromyzidae) from host plants as an instrument for associating females with males, with the description of seven new species
FIGURES 622–627. Phytomyza pimpinellae Hendel; 622: cephalopharyngeal skeleton; 623: frontal view of head; 624: head viewed from the side; 625: oviscape, ventral receptacle and spermathecae proportionally; 626: spermatheca; 627: ventral receptacle.
FIGURES 628–633 in Rearing mining flies (Diptera: Agromyzidae) from host plants as an instrument for associating females with males, with the description of seven new species
FIGURES 628–633. Phytomyza plantaginis Robineau-Desvoidy; 628: cephalopharyngeal skeleton; 629: frontal view of head; 630: head viewed from the side; 631: oviscape, ventral receptacle and spermatheca proportionally; 632: spermatheca; 633: ventral receptacle.
FIGURES 662–667 in Rearing mining flies (Diptera: Agromyzidae) from host plants as an instrument for associating females with males, with the description of seven new species
FIGURES 662–667. Phytomyza torilisi spec. nov.; 662: cephalopharyngeal skeleton; 663: frontal view of head; 664: head viewed from the side; 665: thorax viewed from the side; 666: wing; 667: oviscape, ventral receptacle and spermathecae proportionally.
FIGURES 612–616 in Rearing mining flies (Diptera: Agromyzidae) from host plants as an instrument for associating females with males, with the description of seven new species
FIGURES 612–616. Phytomyza origani Hering; 612: cephalopharyngeal skeleton; 613: frontal view of head; 614: head viewed from the side; 615: oviscape, ventral receptacle and spermatheca proportionally; 616 a–b: spermatheca and ventral receptacle proportionally; a: spermatheca; b: ventral receptacle.
FIGURES 606–611 in Rearing mining flies (Diptera: Agromyzidae) from host plants as an instrument for associating females with males, with the description of seven new species
FIGURES 606–611. Phytomyza obscura Hendel; 606: cephalopharyngeal skeleton; 607: frontal view of head; 608: head viewed from the side; 609: oviscape, ventral receptacle and spermathecae proportionally; 610: spermatheca; 611: ventral receptacle.
FIGURES 594–598 in Rearing mining flies (Diptera: Agromyzidae) from host plants as an instrument for associating females with males, with the description of seven new species
FIGURES 594–598. Phytomyza medicaginis Hendel; 594: cephalopharyngeal skeleton; 595: frontal view of head; 596: head viewed from the side; 597: oviscape, ventral receptacle and spermathecae proportionally; 598 a–b: spermatheca and ventral receptacle proportionally; a: spermatheca; b: ventral receptacle.
ScienceDex guides
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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.