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.
489
datasets available to search
ShareScore release 0.9.0
Dataset results
489 results for “appendages”
Fig. 2 in A large xenusiid lobopod with complex appendages from the Lower Cambrian Chengjiang Lagerstätte
Fig. 2. Lower Cambrian xenusiid lobopod Jianshanopodia decora gen. et sp. nov., from Haikou, Kunming, Yunnan, China, camera lucida drawings of the specimens illustrated on Fig. 1. A. A sketch drawing of the specimen ELI−J0005A from Fig. 1A1, demonstrating all available features of a new species. B. ELI−J0001. B1, the anterior part of Jianshanopodia decora redraw from Fig. 1B1, note the strongly wrinkled frontal appendages, mouth tube and funnel−like pharynx structures; B2, enlargement of the funnel−like pharynx structures of the same specimen, from the Fig. 1B3.
Figs 14–20. Male genital structures. 14–16 – second conjunctival appendages. 17–18 in Review of the genus Prolactistes (Heteroptera: Cydnidae), with two new combinations, first Indonesian records and a key to species of the genus
Figs 14–20. Male genital structures. 14–16 – second conjunctival appendages. 17–18 – opening of the pygophore. 19–20 – proctiger. 14 – Prolactistes jani (J. A. Lis, 1995); 15, 17, 19 – P. australis J. A. Lis, 2001; 16, 18, 20 – P. lisi (Magnien, 2014), arrows indicate the differences between studied species. Scale bars = 0.1 mm (Figs 14–16), 0.5 mm (Figs 17–20).
Figure 3 in Progressive troglomorphism of ambulatory and sensory appendages in three Mexican cave decapods
Figure 3. (A–F) Electron micrographs of segments from antennae (left column) and antennules external branch (right column), respectively, of Procambarus olmecorum (A, B), P. cavernicola (C, D), and P. oaxacae reddelli (E, F); (G–J) electron micrographs of segments of antennae (left column) and tip of antennules (right column), respectively, of M. totonacum (G, H) and M. villalobosi (I, J).
Figure 2 in Progressive troglomorphism of ambulatory and sensory appendages in three Mexican cave decapods
Figure 2. Electron micrographs of carapace surface, magnification of surface, and dactyl of third maxilliped, respectively, of Procambarus olmecorum (A–C), P. oaxacae reddelli (D–F), and P. cavernicola (G–I).
Text-fig. 5. Scanning electron microscope (SEM) images of megaspores with possible affinities to Isoetales (a–d) and megaspores of uncertain affinity (e–i); Torres Vedras locality, Portugal. a) Paxillitriletes reticulatus megaspore in lateral view showing long appendages on the flanges of the laesurae and the reticulate-spiny distal surface; b) Dijkstraisporites sp. megaspore in oblique lateral view showing long, sometimes dichotomizing, appendages on the equatorial flanges and bordering the laesurae; c, d) Tenellisporites sp. megaspore in proximal view (c) showing equatorial flanges and laesurae with short, broad, flattened and unbranched appendages; note numerous, spiny microspores adhering to the proximal face of the megaspore (d); e) Megaspore type sp. 2 in lateral view showing apical gula and ornamentation of scattered spines; f, g) Megaspore type sp. 3 in lateral (f) and proximal (g) view showing broad, often dichotomously branched appendages covering the megaspore surface; h, i) aff. Flabellisporites sp. megaspores in proximal (h) and lateral (i) view showing long, narrow appendages covering the megaspore surface. Specimens, TV39-S174619 (a), TV38-S170220 (b), TV38-S170221 (c, d), TV44-S174574 (e), TV44-S174575 (f), TV44-S174577 (g), TV38-S170223 (h), TV38-S170222 (i). Scale bars 100 Μm (a–c, e–i), 25 Μm (d). in The Early Cretaceous Mesofossil Flora Of Torres Vedras (Ne Of Forte Da Forca), Portugal: A Palaeofloristic Analysis Of An Early Angiosperm Community
Text-fig. 5. Scanning electron microscope (SEM) images of megaspores with possible affinities to Isoetales (a–d) and megaspores of uncertain affinity (e–i); Torres Vedras locality, Portugal. a) Paxillitriletes reticulatus megaspore in lateral view showing long appendages on the flanges of the laesurae and the reticulate-spiny distal surface; b) Dijkstraisporites sp. megaspore in oblique lateral view showing long, sometimes dichotomizing, appendages on the equatorial flanges and bordering the laesurae; c, d) Tenellisporites sp. megaspore in proximal view (c) showing equatorial flanges and laesurae with short, broad, flattened and unbranched appendages; note numerous, spiny microspores adhering to the proximal face of the megaspore (d); e) Megaspore type sp. 2 in lateral view showing apical gula and ornamentation of scattered spines; f, g) Megaspore type sp. 3 in lateral (f) and proximal (g) view showing broad, often dichotomously branched appendages covering the megaspore surface; h, i) aff. Flabellisporites sp. megaspores in proximal (h) and lateral (i) view showing long, narrow appendages covering the megaspore surface. Specimens, TV39-S174619 (a), TV38-S170220 (b), TV38-S170221 (c, d), TV44-S174574 (e), TV44-S174575 (f), TV44-S174577 (g), TV38-S170223 (h), TV38-S170222 (i). Scale bars 100 Μm (a–c, e–i), 25 Μm (d).
FIG. 13 in New diagnostic microcharacters of the cephalothoracic appendages in Cyclops O. F. Müller, 1776 (Crustacea, Copepoda, Cyclopoida)
FIG. 13. — Setulation of the medial spine and ornamentation of the frontal surface of P1 basipodite, female; A, C. columbianus Lindberg, 1956 (Alaska, Karluk lake[?]); B, C. scutifer Sars, 1863 (Norway, Maridalsvann); C, C. heberti Einsle, 1996 (Germany, paratype). Scale bars: 50 µm.
FIG. 10 in New diagnostic microcharacters of the cephalothoracic appendages in Cyclops O. F. Müller, 1776 (Crustacea, Copepoda, Cyclopoida)
FIG. 10. — Ornamentation of the frontal surface of the maxilliped syncoxopodite, female; A, Cyclops columbianus Lindberg, 1956 (Alaska, Karluk lake[?]); B, C. insignis Claus, 1857 (Norway, Frognertjern); C, C. canadensis Einsle, 1988 (Alaska, Chatanika); D, C. singularis Einsle, 1996 (Germany, paratype); E, C. kolensis Lilljeborg, 1901 (Poland, L. Wigry); F, C. alaskaensis Lindberg, 1956 (Alaska). Scale bars: 50 µm.
FIG. 7 in New diagnostic microcharacters of the cephalothoracic appendages in Cyclops O. F. Müller, 1776 (Crustacea, Copepoda, Cyclopoida)
FIG. 7. — Ornamentation of the maxillular palp, and setulation of the palp setae, female; A, Cyclops strenuus Fischer, 1851 (Russia, Peterhof); B, C, C. canadensis Einsle, 1988; B, Alaska, Point Barrow; C, Alaska, Chatanika; D, C. abyssorum Sars, 1863 (Norway, Lønavatn); E, C. furcifer Claus, 1857 (Germany, Baden); F, C. singularis Einsle, 1996 (Germany, paratype). Scale bars: 50 µm.
FIG. 4 in New diagnostic microcharacters of the cephalothoracic appendages in Cyclops O. F. Müller, 1776 (Crustacea, Copepoda, Cyclopoida)
FIG. 4. — Spinule ornamentation on the caudal surface of the antennal coxobasis, female; A-D, Cyclops strenuus Fischer, 1851; A, Russia, Peterhof; B, Norway, Frognertjern; C, Germany, Gottmadingen; D, Germany, Untersee, "C. strenuus landei" Koźmiński, 1933; E, C. abyssorum Sars, 1863 (Norway, Lønavatn); F, C. furcifer Claus, 1857 (Germany, Baden). Scale bars: 50 µm.
FIG. 3 in New diagnostic microcharacters of the cephalothoracic appendages in Cyclops O. F. Müller, 1776 (Crustacea, Copepoda, Cyclopoida)
FIG. 3. — Interspecific variability of the aesthetasc on the ancestral XXI antennular segment, female; A, Cyclops singularis Einsle, 1996 (Germany, paratype); B, C, C. heberti Einsle, 1996; B, Poland, Wigry (Cyclops strenuus strenuus Fischer, 1851 sensu Koźmiński, 1933); C, Germany (paratype); D, C. insignis Claus, 1857 (Norway, Frognertjern); E, C. alaskaensis Lindberg, 1956 (Alaska); F, C. canadensis Einsle, 1988 (Alaska, Point Barrow); G, C. scutifer Sars, 1863 (Norway, Lønavatn). Scale bar: 50 µm.
FIG. 2 in New diagnostic microcharacters of the cephalothoracic appendages in Cyclops O. F. Müller, 1776 (Crustacea, Copepoda, Cyclopoida)
FIG. 2. — Interspecific variability of the aesthetasc on the ancestral XXI antennular segment, female; A, Cyclops strenuus Fischer, 1851 (Russia, Peterhof); B, C. abyssorum Sars, 1863 (Norway, Lønavatn); C, D, C. furcifer Claus, 1857 (Germany, Baden); E, C. kolensis Lilljeborg, 1901 (Poland, L. Wigry); F, C. columbianus Lindberg, 1956 (Alaska, Karluk lake[?]). Scale bar: 50 µm.
FIG. 9 in New diagnostic microcharacters of the cephalothoracic appendages in Cyclops O. F. Müller, 1776 (Crustacea, Copepoda, Cyclopoida)
FIG. 9. — Ornamentation of the frontal surface of the maxilliped syncoxopodite, female; A, Cyclops strenuus Fischer, 1851 (Russia, Peterhof); B, C, C. abyssorum Sars, 1863; B, Norway, Rockpool VS-XI; C, Norway, Lønavatn; D-F, C. heberti Einsle, 1996; D, Poland, Wigry (Cyclops strenuus strenuus Fischer, 1851 sensu Koźmiński, 1933); E, Germany, Oldenburg; F, Germany, paratype; G, C. scutifer Sars, 1863 (Norway, Maridalsvann). Scale bars: 50 µm.
FIG. 1 in New diagnostic microcharacters of the cephalothoracic appendages in Cyclops O. F. Müller, 1776 (Crustacea, Copepoda, Cyclopoida)
FIG. 1. — Schematic representation of the antennular segmentation in the females of Cyclops O. F. Müller, 1776. Asterisks mark the aesthetascs on the ancestral XXI segment. Proximal is left.
FIG. 6 in New diagnostic microcharacters of the cephalothoracic appendages in Cyclops O. F. Müller, 1776 (Crustacea, Copepoda, Cyclopoida)
FIG. 6. — Spinule ornamentation on the caudal surface of the antennal coxobasis, female; A, B, Cyclops singularis Einsle, 1996; A, Hungary, Tiszavasvári; B, Germany (paratype); C, D, C. alaskaensis Lindberg, 1956 (Alaska); E, F, C. kolensis Lilljeborg, 1901 (Poland, L. Wigry); G, H, C. canadensis Einsle, 1988 (Alaska, Point Barrow). Scale bars: 50 µm.
FIG. 8 in New diagnostic microcharacters of the cephalothoracic appendages in Cyclops O. F. Müller, 1776 (Crustacea, Copepoda, Cyclopoida)
FIG. 8. — Ornamentation of the maxillular palp, and setulation of the palp setae, female; A, B, Cyclops heberti Einsle, 1996; A, Germany, paratype; B, Poland, Wigry (Cyclops strenuus strenuus Fischer, 1851 sensu Koźmiński, 1933); C, C. scutifer Sars, 1863 (Norway, Maridalsvann); D, C. columbianus Lindberg, 1956 (Alaska, Karluk lake[?]); E, C. kolensis Lilljeborg, 1901 (Poland, L. Wigry); F, C. alaskaensis Lindberg, 1956 (Alaska); G, C. insignis Claus, 1857 (Norway, Frognertjern). Scale bar: 50 µm.
FIG. 11 in New diagnostic microcharacters of the cephalothoracic appendages in Cyclops O. F. Müller, 1776 (Crustacea, Copepoda, Cyclopoida)
FIG. 11. — Setulation of the medial spine and ornamentation of the frontal surface of P1 basipodite, female; A, Cyclops strenuus Fischer, 1851 (Russia, Peterhof); B, C. insignis Claus, 1857 (Norway, Frognertjern); C, C. singularis Einsle, 1996 (Germany, paratype); D, C. canadensis Einsle, 1988 (Alaska, Point Barrow). Scale bars: 50 µm.
FIG. 12 in New diagnostic microcharacters of the cephalothoracic appendages in Cyclops O. F. Müller, 1776 (Crustacea, Copepoda, Cyclopoida)
FIG. 12. — Setulation of the medial spine and ornamentation of the frontal surface of P1 basipodite, female; A, Cyclops abyssorum Sars, 1863 (Norway, Lønavatn); B, C. kolensis Lilljeborg, 1901 (Poland, L. Wigry); C, C. furcifer Claus, 1857 (Germany, Baden); D, C. alaskaensis Lindberg, 1956 (Alaska). Scale bar: 50 µm.
FIG. 5 in New diagnostic microcharacters of the cephalothoracic appendages in Cyclops O. F. Müller, 1776 (Crustacea, Copepoda, Cyclopoida)
FIG. 5. — Spinule ornamentation on the caudal surface of the antennal coxobasis, female; A, B, Cyclops heberti Einsle, 1996; A, Germany, Oldenburg; B, Germany (paratype); C, D, C. scutifer Sars, 1863; C, Norway, Maridalsvann; D, Norway, Lønavatn; E, F, C. insignis Claus, 1857 (Norway, Frognertjern); G, C. columbianus Lindberg, 1956 (Alaska, Karluk lake[?]). Scale bar: 50 µm.
FIG. 13. Male terminalia, A. durangoensis. A. Ejaculatory apodeme. B. Lateral view. C. Subepandrial appendage, distal margin. D. Inner paraphysis, apex. E. Outer paraphysis, entire. F. Posterior view. G. Outer paraphyses, ventral view. H. Aedeagal apodeme. I. Surstylus. J in Revision Of The Nearctic Species Of The Genus Amiota Loew (Diptera: Drosophilidae)
FIG. 13. Male terminalia, A. durangoensis. A. Ejaculatory apodeme. B. Lateral view. C. Subepandrial appendage, distal margin. D. Inner paraphysis, apex. E. Outer paraphysis, entire. F. Posterior view. G. Outer paraphyses, ventral view. H. Aedeagal apodeme. I. Surstylus. J. Outer paraphysis, distal end (posterior view). K. Subepandrial appendage. (Am 1520, holotype).
FIG. 50. Male terminalia, A. tibialis. A. Ventral view. B. Lateral view, with ejaculatory apodeme. C. Subepandrial sclerite. D. Surstylus. E. Subepandrial appendage, apex lateral view. F in Revision Of The Nearctic Species Of The Genus Amiota Loew (Diptera: Drosophilidae)
FIG. 50. Male terminalia, A. tibialis. A. Ventral view. B. Lateral view, with ejaculatory apodeme. C. Subepandrial sclerite. D. Surstylus. E. Subepandrial appendage, apex lateral view. F. Aedeagal apodeme. (Am 470, holotype).
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.