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Figure 8 in The diversity of polychaetes (Annelida: Polychaeta) in a longterm pollution monitoring study from the Levantine coast of Turkey (Eastern Mediterranean), with the descriptions of four species new to science and two species new to the Mediterranean fauna
Figure 8. Leitoscoloplos mediterranea sp. nov. paratypes: (a) anterior abdominal segment, cross section, anterior view (ESFM–POL/2015–304); (b) posterior abdominal parapodium, anterior view (ESFM–POL/2017–204); (c) thoracic parapodium, anterior view (ESFM–POL/2017–204); (d) crenulated capillary chaetae (a: in thoracic region; b: in anterior abdominal region; c: in posterior abdominal region). Scale bar: a = 0.5 mm; b = 0.36 mm; c = 0.45 mm; d(a) = 18 µm; d(b) = 14 µm; d(c) = 20 µm. Abbreviations. br: branchia; brc: branchial ciliae; br w/Lat lobe: branchia with a lateral lobe; Crcap: crenulated capillaries; neP: neuropodium; nePsL: neuropodial postchaetal lobe; neS: neuropodial chaeta; noPsL: notopodial postchaetal lobe; noS: notopodial chaeta; sPod flange: subpodial flange.
Figure 19 in The diversity of polychaetes (Annelida: Polychaeta) in a longterm pollution monitoring study from the Levantine coast of Turkey (Eastern Mediterranean), with the descriptions of four species new to science and two species new to the Mediterranean fauna
Figure 19. Chaetozone elakata ESFM-POL/2018-073 and ESFM-POL/2013-1430: (a) anterior end, dorsolateral view; (b) anterior end, dorsal view; (c) anterior end, dorsal view, stained with methyl green; (d) posterior parapodium, cross section. Scale bar: a = 0.96 mm; b = 0.72 mm; c = 0.98 mm; d = 0.14 mm.
Figure 7 in The diversity of polychaetes (Annelida: Polychaeta) in a longterm pollution monitoring study from the Levantine coast of Turkey (Eastern Mediterranean), with the descriptions of four species new to science and two species new to the Mediterranean fauna
Figure 7. Leitoscoloplos mediterranea sp. nov. paratype (ESFM-POL/2014-285): (a) anterior end, dorsal view; (b) anterior end, lateral view; (c) anterior end, lateral view with proboscis everted; (d) posterior end, dorso-lateral view. Scale bar: a = 0.5 mm; b = 0.63 mm; c = 0.42 mm; d = 0.27 mm. Abbreviations. aC: anal cirrus; an: anus; Crcap: crenulated capillaries; mo: mouth; neP: neuropodium; nePsl: neuropodial postchaetal lobe; noPsl: notopodial postchaetal lobe; nuO: nuchal organ; per: peristomium; pr: prostomium; prob: proboscis; sp: subpodial papillae; sPod flange: subpodial flange.
Dataset and Research Questions for Open Science and Open Innovation
<p>Worksheet with a dataset of 55 articles and Research Questions in regard to bridging Open Science and Open Innovation.</p>
Fig. 5. Termite SDM predictions for species located within Southern Australia for A in Utilization of Community Science Data to Explore Habitat Suitability of Basal Termite Genera
Fig. 5. Termite SDM predictions for species located within Southern Australia for A. Porotermes adamsoni (Stolotermitidae)(left) and B. Stolotermes victoriensis (right), and C. Mastotermes darwiniensis (Mastotermitidae). Final model predictions were generated using our thinned occurrence dataset and final set of uncorrelated environmental variables for each species, with 10 bootstrap replicates with 'cloglog' outputs in which raw values are converted to a range of 0 - 1 to approximate a probability of occurrence (Cobos et al. 2018). Brighter colors indicate areas of higher suitability (higher probability of occurrence), while darker colors indicate areas of lower suitability (lower probability of occurrence)..
Fig. 4. Termite SDM predictions for species located within Eastern United States and Canada for A in Utilization of Community Science Data to Explore Habitat Suitability of Basal Termite Genera
Fig. 4. Termite SDM predictions for species located within Eastern United States and Canada for A. Zootermopsis nevadensis (Stolotermitidae)(left) B. Zootermopsis angusticollis (right), and C. Zootermopsis laticeps (bottom). Final model predictions were generated using our thinned occurrence dataset and final set of uncorrelated environmental variables for each species, with 10 bootstrap replicates with 'cloglog' outputs in which raw values are converted to a range of 0 - 1 to approximate a probability of occurrence (Cobos et al. 2019). Brighter colors indicate areas of higher suitability (higher probability of occurrence), while darker colors indicate areas of lower suitability (lower probability of occurrence).
Fig. 3 in Utilization of Community Science Data to Explore Habitat Suitability of Basal Termite Genera
Fig. 3. Termite SDM predictions for species located within Argentina and Chile (top left), New Zealand (top right), and Tazmania (bottom) for A. Porotermes quadricollis (Stolotermitidae) and B. Stolotermes ruficeps, and C. Stolotermes brunneicornis. Final model predictions were generated using our thinned occurrence dataset and final set of uncorrelated environmental variables for each species, with 10 bootstrap replicates with 'cloglog' outputs in which raw values are converted to a range of 0–1 to approximate a probability of occurrence (Cobos et al. 2019). Brighter colors indicate areas of higher suitability (higher probability of occurrence), while darker colors indicate areas of lower suitability (lower probability of occurrence).
Fig. 2 in Utilization of Community Science Data to Explore Habitat Suitability of Basal Termite Genera
Fig. 2. Termite SDM predictions for species located within South Africa (top and bottom), and Argentina (right) for A. Porotermes planiceps (Stolotermitidae) B. Microhodotermes viator (Hodotermitidae), and C. Porotermes quadricollis. Final model predictions were generated using our thinned occurrence dataset and final set of uncorrelated environmental variables for each species, with 10 bootstrap replicates with 'cloglog' outputs in which raw values are converted to a range of 0–1 to approximate a probability of occurrence (Cobos et al. 2019). Brighter shades indicate areas of higher suitability (higher probability of occurrence), while darker shades indicate areas of lower suitability (lower probability of occurrence).
Fig. 1 in Utilization of Community Science Data to Explore Habitat Suitability of Basal Termite Genera
Fig. 1. Summary tree showing current state of termite phylogeny. Simplified schematic based on familial termite relationships recovered with high support in (Engel et al. 2009, Legendre et al. 2015). Stylotermitidae is placed in its current position based on (Bucek et al. 2019). Branches representing unresolved relationships (bootstrap values <75) are indicated by *. The cockroach family Cryptocercidae was used as an outgroup, and soldier illustrations correlate with families used in summary tree. A. Mastotermes (Froggatt 1897, Blattodea Mastotermitidae), B. Zootermopsis angusticollis (Hagen 1858, Blattodea, Archotermopsidae), C. Hodotermopsis sjostedi (Holmgren 1911, Blattodea, Archotermopsidae), D. Anacanothermoes ochraceus (Burmeister 1839, Blattodea, Hodotermitidae), E. Porotermes adamsoni (Froggat 1897, Blattodea, Stolotermitidae), F. Cryptotermes brevis (Walker 1853, Blattodea, Kalotermitidae), G. Stylotermes halumicus (Liang, et al. 2017, Blattodea, Stylotermitidae), H. Coptotermes formosanus (Shiraki 1909, Blattodea, Rhinotermitidae), I. Serritermes serrifer (Hagen and Bates, Blattodea, Serritermitidae), J. Neocapritermes taraqua (Krishna and Araujo 1968, Blattodea,Termitidae), K. Nasutitermes corniger (Motschulsky 1855, Blattodea,Termitidae)
FIGURE 15 in Unearthing the diversity of Japanese Magelona (Annelida: Magelonidae); three species new to science, and a redescription of Magelona japonica
FIGURE 15. Magelona boninensis sp. nov. (NMW.Z.2022.001.0003, Paratypes, A, B, D; NMW.Z.2022.001.0005, Paratypes, C, E, F,). B, D, F, stained with Methyl Green. A, anterior region (prostomium and chaetigers 1–9), dorsal view; B, anterior region (prostomium and chaetigers 1–13), dorsal view; C, thorax and anterior abdomen, dorsal view; D, anterior region (prostomium and chaetigers 1–7), ventral view; E, whole specimen, dorsal view; F, thoracic-abdominal junction showing ventral swellings, ventrolateral view. Ab = abdomen, BO = burrowing organ, PH = prostomial horns, Pp = palp, Pr = prostomium, VS = ventral swellings, Th = thorax, numbers indicate chaetiger.
FIGURES 49–60 in Revision of the types of the genus Rhamphomyia species (Diptera, Empididae) described by R. Frey from the collection of the Zoological Institute of Russian Academy of Sciences, St. Petersburg
FIGURES 49–60. Primary types of Rhamphomyia species. 49, 50. R. (Rhamphomyia) sphaerophora Frey, holotype, male, 49. habitus, lateral view, 50. labels; 51, 52. R. (P.) stackelbergi Frey, lectotype, male, 51. habitus, lateral view, 52. labels; 53, 54. R. (R.) subtibialis Frey, lectotype, male, 53. habitus, lateral view, 54. labels; 55, 56. R. (R.) taimyrensis Frey, lectotype, female, 55. habitus, lateral view, 56. labels; 57, 58. R. (Pararhamphomyia) transversipyga Frey, lectotype, male, 57. habitus, lateral view, 58. labels; 59, 60. R. (R.) ussuriensis Frey, lectotype, female, 59. habitus, lateral view, 60. labels.
FIGURES 13–24 in Revision of the types of the genus Rhamphomyia species (Diptera, Empididae) described by R. Frey from the collection of the Zoological Institute of Russian Academy of Sciences, St. Petersburg
FIGURES 13–24. Primary types of Rhamphomyia species. 13, 14. R. (R.) bicoloripes Frey, holotype, male, 13. habitus, lateral view, 14. labels; 15, 16. R. (R.) brussnewi Frey, holotype, male, 15. habitus, lateral view, 16. labels; 17, 18. R. (R.) chrysodactyla Frey, lectotype, male, 17. habitus, lateral view, 18. labels; 19, 20. R. (Megacyttarus) cymbella Frey, lectotype, male, 19. habitus, lateral view, 20. labels; 21, 22. Rhamphomyia (Pararhamphomyia) deformata Frey, holotype, male, 21. habitus, lateral view, 22. labels; 23, 24. R. (Rhamphomyia) distincta Frey, holotype, male, 23. habitus, lateral view, 24. labels.
FIGURE 16 in Unearthing the diversity of Japanese Magelona (Annelida: Magelonidae); three species new to science, and a redescription of Magelona japonica
FIGURE 16. Magelona boninensis sp. nov. (NMW.Z.2022.001.0003, Paratypes, A, D, F; NMW.Z.2022.001.0002, Holotype, B, E; NMW.Z.2022.001.0005, Paratypes, C). A–C, E, F, stained with Methyl Green. A, whole specimen, dorsal view; B, anterior region (prostomium and chaetigers 1–13), lateral view; C, anterior, dorsal view; D, whole specimen, ventral view; E, chaetigers 18–23, lateral view (interparapodial patches visible); F, posterior showing pygidium (anal cirri and anus), ventral view. AC = anal cirri, BO = burrowing organ, Pg = pygidium, PH = prostomial horns, Pr = prostomium, numbers indicate chaetiger.
FIGURE 5 in Unearthing the diversity of Japanese Magelona (Annelida: Magelonidae); three species new to science, and a redescription of Magelona japonica
FIGURE 5. Known distribution records for Magelona crenulifrons, Magelona cornuta and M. cf. cornuta from present study. Record of M. cornuta from Mortimer & Mackie (2009) highlighted separately due to uncertainty of identification.
FIGURE 11 in Unearthing the diversity of Japanese Magelona (Annelida: Magelonidae); three species new to science, and a redescription of Magelona japonica
FIGURE 11. Magelona alba sp. nov. (NMW.Z.2022.001.0012, A–F), Magelona cepiceps Mortimer & Mackie, 2006 (NMW. Z.2000.020.0208, Holotype, G & H). A, prostomium, dorsal view; B, anterior, dorsal view; C, entire specimen, ventral view; D, prostomium and first five chaetigers, ventral view; E, thorax, ventral view; F, chaetigers 4 and 5, ventral view; G–H, entire specimen, dorsal and ventral views respectively. B–D, F–H, stained with Methyl Green. Ab = abdomen, BO = burrowing organ, PH = prostomial horns, Pp = palp, Pr = prostomium, Th = thorax, Noto = notopodia, Neuro = neuropodia, SDL = superior dorsal lobe, VS = ventral swellings, numbers indicate chaetiger.
FIGURE 2 in Unearthing the diversity of Japanese Magelona (Annelida: Magelonidae); three species new to science, and a redescription of Magelona japonica
FIGURE 2. Magelona cf. cornuta (NMW.Z.2022.001.0013). A, anterior, dorsal view; B, prostomium, dorsal view; C–L, parapodia of chaetigers 1–9, 12 respectively, anterior views (C, E, H, J–L left hand; D, F, G, I right-hand parapodia); M, thoracic chaeta from chaetiger 7; N, abdominal hooded hook from chaetiger 31, frontal view; O, abdominal hooded hook from chaetiger 31, lateral view. Pr = prostomium, PH = prostomial horns, Pp = palp, Noto = notopodia, Neuro = neuropodia, SDL = superior dorsal lobe, numbers indicate chaetiger.
FIGURE 19. A in Unearthing the diversity of Japanese Magelona (Annelida: Magelonidae); three species new to science, and a redescription of Magelona japonica
FIGURE 19. A comparative figure of Japanese magelonids found in the current surveys (Magelona agoensis not included).
FIGURE 10 in Unearthing the diversity of Japanese Magelona (Annelida: Magelonidae); three species new to science, and a redescription of Magelona japonica
FIGURE 10. Magelona alba sp. nov. (NMW.Z.2022.001.0012). A, anterior, dorsal view showing Methyl Green staining pattern; B, prostomium, dorsal view; C–L, left-hand parapodia of chaetigers 1–9, 11 respectively, anterior views; M, unilimbate chaeta from chaetiger 6; N, unilimbate chaeta from chaetiger 9, with marginally pennoned tip; O, tridentate abdominal hooded hook from chaetiger 11, oblique lateral view. Pr = prostomium, PH = prostomial horns, Pp = palp, Noto = notopodia, Neuro = neuropodia, SDL = superior dorsal lobe, TP = triangular processes, numbers indicate chaetiger.
FIGURE 4 in Unearthing the diversity of Japanese Magelona (Annelida: Magelonidae); three species new to science, and a redescription of Magelona japonica
FIGURE 4. Tridentate abdominal hooded hooks of Magelona alba sp. nov. (A–B), Magelona cf. cornuta (C–E) and Magelona armatis sp. nov. (F–G). A–C, F & G lateral views; D, frontal view; E, posterolateral view.
FIGURE 7 in Unearthing the diversity of Japanese Magelona (Annelida: Magelonidae); three species new to science, and a redescription of Magelona japonica
FIGURE 7. Magelona japonica (NMW.Z.2022.001.0001, D–G, stained with Methyl Green). A, anterior region (prostomium and chaetigers 1–13), dorsal view, showing faded pigment band; B, anterior region (prostomium and chaetigers 1–10), taken shortly after sampling (by NJ), dorsal view, pigment band clear; C, anterior region (prostomium and chaetigers 1–12), ventral view; D, prostomium and chaetigers 1–4, dorsal view; E, anterior region, dorsal view; F, prostomium and chaetigers 1–10, ventrolateral view; G, prostomium, burrowing organ and chaetigers 1–3, ventral view. BO = burrowing organ, Pp = palp, Pr = prostomium, PB = pigment band, numbers indicate chaetiger.
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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.