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.
140
datasets available to search
ShareScore release 0.9.0
Dataset results
140 results for “Fallax”
FIGURE 8. Fourth pelvic-fin ray. A in Eviota fallax, a New Dwarfgoby from the Western Pacific (Teleostei: Gobiidae)
FIGURE 8. Fourth pelvic-fin ray. A. Eviota fallax, paratype, WAM P.33039.009, 16.2 mm. B. Eviota melasma, USNM 227318, 17.5 mm. Photographs by D.W. Greenfield.
FIGURE 10 in Eviota fallax, a New Dwarfgoby from the Western Pacific (Teleostei: Gobiidae)
FIGURE 10. Eviota melasma, Lizard Island, Australia (Fig. 4, Greenfield & Randall, 2010). Photograph by A. Gonzáles- Cabello.
FIGURE 3 in Eviota fallax, a New Dwarfgoby from the Western Pacific (Teleostei: Gobiidae)
FIGURE 3. Eviota fallax, underwater photograph, Kimbe Bay, New Britain (BPBM 39028). Photograph by J.E. Randall.
FIGURE 2 in Eviota fallax, a New Dwarfgoby from the Western Pacific (Teleostei: Gobiidae)
FIGURE 2. Eviota fallax, underwater photograph, Cenderawasih Bay, West Papua, Indonesia. Photograph by G. R. Allen.
FIGURE 12. Ophiomusium fallax RMNH V.Ech.O 6342 in An illustrated catalogue of type specimens of the bathyal brittlestar genera Ophiomusium Lyman and Ophiosphalma H. L. Clark (Echinodermata: Ophiuroidea)
FIGURE 12. Ophiomusium fallax RMNH V.Ech.O 6342: a, b, dorsal and ventral disc sectors. FIGURE 13. Ophiomusium granosum MCZ 451: a,b, dorsal and ventral disc sectors.
FIGURE 4 in Two new species of the fallax-pezizoides complex in Helvella (Helvellaceae, Pezizales) from Yunnan, China
FIGURE 4. Helvella pseudoatra (HKAS 74023, holotype). A−B. Typical mature specimens (A: HKAS 74023. B: HKAS 54996). C−D. Receptacle surface of pileus. E. Stipitipellis. F. Asci and paraphyses. G−L. Asci. M. Ascospores. Scale bars: A−B = 1 cm. C−E = 50 μm. F−M = 20 μm.
FIGURE 3 in Two new species of the fallax-pezizoides complex in Helvella (Helvellaceae, Pezizales) from Yunnan, China
FIGURE 3. Helvella liquii (HKAS 90563, holotype). A−B. Typical mature specimens. C. Receptacle surface of pileus. D. Stipitipellis. E. Asci and paraphyses. F−I. Asci. J. Ascospores. Scale bars: A−B = 1 cm. C−D = 50 μm. E−J = 20 μm.
FIGURE 2 in Two new species of the fallax-pezizoides complex in Helvella (Helvellaceae, Pezizales) from Yunnan, China
FIGURE 2. The results of the pairwise homoplasy index (PHI) test for closely related species of Helvella liquii with H. pseudoatra using LogDet transformation. PHI test results (Φw) <0.05 indicate significant recombination within the dataset.
FIGURE 1 in Two new species of the fallax-pezizoides complex in Helvella (Helvellaceae, Pezizales) from Yunnan, China
FIGURE 1. The phylogenetic tree obtained by RAxML analysis of combined LSU and hsp90 sequence data. Four taxa (H. rivularis H276, H365; H. paraphysitorquata H271, MA Fungi: 24512) were used as outgroup. The node shows the bootstrap support value with ML greater than or equal to 75% and the BI posterior probability greater than or equal to 0.9. The new isolates of this study are in red. Sequences from holo-, iso-, epi- and neotype specimens are in bold.
FIGURE 7 in Systematics and distribution of Lankascincus fallax (Peters, 1860) (Reptilia, Scincidae), an endemic litter-skink from Sri Lanka
FIGURE 7. Current distribution map (based on museum specimens and personal observations) of Lankascincus fallax (circles), the two syntype localities of L. fallax are marked with squares; the holotype locality of L. deraniyagalae (synonym of L. fallax) is marked with a triangle.
FIGURE 6 in Systematics and distribution of Lankascincus fallax (Peters, 1860) (Reptilia, Scincidae), an endemic litter-skink from Sri Lanka
FIGURE 6. Lateral view of head and neck of a juvenile Lankascincus fallax (not collected) from a home garden at Piliyandala, Western Province (lowland wet zone).
FIGURE 5 in Systematics and distribution of Lankascincus fallax (Peters, 1860) (Reptilia, Scincidae), an endemic litter-skink from Sri Lanka
FIGURE 5. Color variation of males Lankascincus fallax in lowland populations (not collected, identified using photographs) from (A) dry zone and (B) wet zone.
FIGURE 2 in Systematics and distribution of Lankascincus fallax (Peters, 1860) (Reptilia, Scincidae), an endemic litter-skink from Sri Lanka
FIGURE 2. Maximum likelihood (ML) phylogeny of the members of the genus Lankascincus based on mitochondrial 16S rRNA gene (~500bp). Numbers at nodes represent branch supports (bootstrap) and color shadings represent wet and dry zone populations of L. fallax.
FIGURE 1 in Systematics and distribution of Lankascincus fallax (Peters, 1860) (Reptilia, Scincidae), an endemic litter-skink from Sri Lanka
FIGURE 1. PC1 vs PC2 ordination plot of the morphometric variation of adult Lankascincus fallax (n=27) from two different bioclimatic (wet and dry) zones in Sri Lanka, each point represents a specimen, and the relative distances between two points represent the similarity.
FIGURE 3 in Systematics and distribution of Lankascincus fallax (Peters, 1860) (Reptilia, Scincidae), an endemic litter-skink from Sri Lanka
FIGURE 3. Lankascincus fallax, syntype male (ZMB 3762), (A) full body; head in (B) dorsal view, (C) ventral view, (D) lateral view; not to scale. Photo F. Tillack.
FIGURE 4 in Systematics and distribution of Lankascincus fallax (Peters, 1860) (Reptilia, Scincidae), an endemic litter-skink from Sri Lanka
FIGURE 4. Lankascincus fallax, males in breeding coloration (not collected) from (A) Galle (lowland wet zone), and (B) Ampara (lowland dry zone).
FIGURE 3 in Chrysosplenium fallax (Saxifragaceae), a new species from the Russian Far East
FIGURE 3. Axial vegetative shoot of Chrysosplenium fallax. A. Apical part of a shoot at the beginning of growth. B. Apical part of a growing shoot. C. Apical part of a shoot at the end of growth. D. Shoot in the late growing season. E. Prostrate shoot with rising apex.
FIGURE 2. Chrysosplenium fallax. A–B in Chrysosplenium fallax (Saxifragaceae), a new species from the Russian Far East
FIGURE 2. Chrysosplenium fallax. A–B. Branching of a generative plant. C. Structure of generative and vegetative plants. D. Structure of the shoot system. E. A vegetative plant with slanting axial shoot: (a) generative shoot; (b) lateral above-ground vegetative shoots; (c) axial above-ground vegetative shoot; (d) rhizome; (e) underground stolons; (f) above-ground repent stolon-like shoot.
FIGURE 4. Chrysosplenium fallax. A. Flower. B. Inflorescence. C in Chrysosplenium fallax (Saxifragaceae), a new species from the Russian Far East
FIGURE 4. Chrysosplenium fallax. A. Flower. B. Inflorescence. C. Capsules (side view). D. Capsules (top view). E. Seed. F. Seed surface structure.
On following pages: 30. Peninsular Pocket Mouse (Chaetodipus rudinoris); 31. Spiny Pocket Mouse (Chaetodipus spinatus); 32. California Pocket Mouse (Chaetodipus californicus); 33. San Diego Pocket Mouse (Chaetodipus fallax); 34. Little Desert Pocket Mouse (Chaetodipus arenarius); 35. Dalquest''s Pocket Mouse (Chaetodipus ammophilus); 36. Cerralvo Island Pocket Mouse (Chaetodipus siccus); 37. Desert Pocket Mouse (Chaetodipus penicillatus); 38. Chihuahuan Desert Pocket Mouse (Chaetodipus eremicus); 39. Sinaloan Pocket Mouse (Chaetodipus pernix); 40. Rock Pocket Mouse (Chaetodipus intermedius); 41. Nelson's Pocket Mouse (Chaetodipus nelsoni); 42. Lined Pocket Mouse (Chaetodipus lineatus); 43. Goldman's Pocket Mouse (Chaetodipus goldmani); 44. Narrow-skulled Pocket Mouse (Chaetodipus artus). in Heteromyidae
On following pages: 30. Peninsular Pocket Mouse (Chaetodipus rudinoris); 31. Spiny Pocket Mouse (Chaetodipus spinatus); 32. California Pocket Mouse (Chaetodipus californicus); 33. San Diego Pocket Mouse (Chaetodipus fallax); 34. Little Desert Pocket Mouse (Chaetodipus arenarius); 35. Dalquest''s Pocket Mouse (Chaetodipus ammophilus); 36. Cerralvo Island Pocket Mouse (Chaetodipus siccus); 37. Desert Pocket Mouse (Chaetodipus penicillatus); 38. Chihuahuan Desert Pocket Mouse (Chaetodipus eremicus); 39. Sinaloan Pocket Mouse (Chaetodipus pernix); 40. Rock Pocket Mouse (Chaetodipus intermedius); 41. Nelson's Pocket Mouse (Chaetodipus nelsoni); 42. Lined Pocket Mouse (Chaetodipus lineatus); 43. Goldman's Pocket Mouse (Chaetodipus goldmani); 44. Narrow-skulled Pocket Mouse (Chaetodipus artus).
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.