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Figure 5 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 5. Oxydromus digitifera sp. nov. paratype (ESFM-POL/2018-158): (a) anterior part of proboscis, dorsal view; (b) middle parapodia, dorsal view; (c) middle parapodium, posterior face; (d) tip of falciger, middle parapodium; (e) falciger, middle parapodium; (f) notopodial furcate chaeta, middle parapodium. Scale bar: a = 170 µm; b = 60 µm; c = 55 µm; d = 4 µm; e, f = 21 µm.
Figure 14 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 14. Paraonis lobulata sp. nov. paratype and non-type specimens: (a) dorsal view of notopodia, branchial region (ESFM-POL/2018-124); (b) posterior end with pygidium, dorsal side (ESFM-POL/2017- 157); (c) lateral sense organ, branchial region (ESFM-POL/2017-157); (d) lateral sense organ, postbranchial region (ESFM-POL/2017-157); (e) lateral sense organ, posterior region (ESFM-POL/2019-14); (f) notopodium, posterior region (ESFM-POL/2019-14); (g) parapodium with modifed neurochaetae, posterior region. Scale bar: a = 44 µm; b = 82 µm; c = 11 µm; d = 6 µm; e = 0.2 µm; f = 20 µm. Abbreviations. ac: anal cirri; lso: lateral sense organ; mneu: modified neurochaeta; np: notopodial papilla; ntpcl: notopodial postchaetal lobe.
Figure 12 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 12. Paraonis lobulata sp. nov. holotype, paratype and non-type specimens: (a) antero-dorsal view of body, arrows pointing to lobated shapes of segments, paratype (ESFM-POL/2019-12); (b) antero-ventral view of body (ESFM-POL/2019-12); (c) ventral view of body, branchial region (ESFMPOL/2019-12); (d) dorsal view of prostomium (ESFM-POL/2018-124); (e) lateral margin of prostomium, dorsal side (ESFM-POL/2018-124); (f) modified neurochaetae on chaetiger 63 (ESFM-POL/2019-11); (g) bilobated posterior lip (ESFM-POL/2019-12); (h) notopodial papilla on chaetiger 12 (ESFM-POL/2017- 157); (i) lateral view of branchial region, unlabeled arrow pointing to lobe-shaped segment (ESFMPOL/2019-12); (j) posterior body region, unlabeled arrow pointing to lobe-shaped segment (ESFMPOL/2019-11); (k) dorsal view of chaetiger 12, with branchia and notopodial papilla (ESFM-POL/2017- 157). Scale bar: a = 121 µm; b = 96 µm; c = 155 µm; d = 71 µm; e = 71 µm; f = 44 µm; g = 74 µm; h = 16 µm; i = 30 µm; j = 255 µm; k = 130 µm. Abbreviations. bran: branchia; cb: ciliary band; co: cheek organ; no: nuchal organ; np: notopodial papilla; ntpcl: notopodial postchaetal lobe; per: peristomium; vl: ventral lobe.
Figure 10 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 10. Leitoscoloplos mediterranea sp. nov. paratype (ESFM–POL/2014–488): (a) abdominal parapodium, dorso-lateral view; (b) abdominal parapodium, lateral view; (c) thoracic chaetigers, lateral view; (d) middle abdominal chaetigers, lateral view. Scale bar: a = 200 µm; b = 75 µm; c = 101 µm; d = 217 µm. Abbreviations. br: branchia; brc: branchial ciliae; Crcap: crenulated capillaries; neP: neuropodium; nePsL: neuropodial postchaetal lobe; noPsL: notopodial postchaetal lobe; sp: subpodial papillae; sPod flange: subpodial flange; vC: ventral cirrus.
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.
Figure 38 in Diversity of schizomids (Arachnida: Schizomida) revealed by new fossil genera and species from mid-Cretaceous Burmese amber with implications for a Gondwanan origin of the Burma Terrane
Figure 38. Undescribed schizomids in Burmese amber (all from the Müller collection). A, BUB3556. B, BUB10. C, BUB007. D, BUB09. E, BUB3545. F, BUB3547. G, BUB3544. H, BUB3557. I, BUB1531. J, BUB559. K, BUB3554. L, BUB3551. Scale bars: 1 mm.
Figure 37 in Diversity of schizomids (Arachnida: Schizomida) revealed by new fossil genera and species from mid-Cretaceous Burmese amber with implications for a Gondwanan origin of the Burma Terrane
Figure 37. Undescribed schizomids in Burmese amber. A, Gröhn collection no. 11216. B, Gröhn collection no. 11215. C, Müller collection no. BUB08. D, Müller collection no. BUB561. E, Müller collection no. BUB1530. F, Müller collection no. BUB3546. G, Müller collection no. BUB08. Scale bars: 1 mm.
Figure 35 in Diversity of schizomids (Arachnida: Schizomida) revealed by new fossil genera and species from mid-Cretaceous Burmese amber with implications for a Gondwanan origin of the Burma Terrane
Figure 35. Distribution of species with a 1 + 2 setation on the anterior process in present times (A) and in same locations at 160 Mya (B), modified after Seton et al. (2021). Abbreviations: AF, Africa; ANT, Antarctica; AS, Asia; AU, Australia; BT, Burma Terrane; EUR, Europe; G, Greenland; I, India; NA, North America; SA, South America.
Figure 31. Specimen GPIH04892 in Diversity of schizomids (Arachnida: Schizomida) revealed by new fossil genera and species from mid-Cretaceous Burmese amber with implications for a Gondwanan origin of the Burma Terrane
Figure 31. Specimen GPIH04892, †Muellerizomus amandae sp. nov., female paratype, details. A, female flagellum in dorsal view, photograph. B, same, interpretative drawing. See Material and methods for explanation of abbreviations. Scale bar: 0.50 mm.
Figure 39 in Diversity of schizomids (Arachnida: Schizomida) revealed by new fossil genera and species from mid-Cretaceous Burmese amber with implications for a Gondwanan origin of the Burma Terrane
Figure 39. Undescribed schizomids in Burmese amber (all from the Müller collection except for D, Gröhn collection). A, BUB3550. B, BUB11. C, BUB3543. D, Gröhn collection no. 11207. E, BUB3555. F, BUB562. G, BUB560. H, BUB3558. I, BUB3552. J, BUB3564. K, BUB3548. L, BUB3549. Scale bars: 1 mm.
Figure 34. Specimen GPIH04894 in Diversity of schizomids (Arachnida: Schizomida) revealed by new fossil genera and species from mid-Cretaceous Burmese amber with implications for a Gondwanan origin of the Burma Terrane
Figure 34. Specimen GPIH04894, †Muellerizomus palicaudatus sp. nov., holotype, details. A, flagellum in dorsal view, photograph. B, same, interpretative drawing. C, flagellum in ventral view, photograph. D, same, interpretative drawing. See Material and methods for explanation of abbreviations. Scale bars: 0.25 mm.
Figure 29. Specimen GPIH04892 in Diversity of schizomids (Arachnida: Schizomida) revealed by new fossil genera and species from mid-Cretaceous Burmese amber with implications for a Gondwanan origin of the Burma Terrane
Figure 29. Specimen GPIH04892, †Muellerizomus amandae sp. nov., female paratype. A, specimen in dorsal view, photograph. B, same, interpretative drawing. C, specimen in ventral view, photograph. D, same, interpretative drawing. See Material and methods for explanation of abbreviations. Scale bars: 1 mm.
Figure 30. Specimen GPIH04892 in Diversity of schizomids (Arachnida: Schizomida) revealed by new fossil genera and species from mid-Cretaceous Burmese amber with implications for a Gondwanan origin of the Burma Terrane
Figure 30. Specimen GPIH04892, †Muellerizomus amandae sp. nov., female paratype, details. A, propeltidium in dorsal view, photograph. B, same, interpretative drawing. C, metapeltidium in dorsal view, photograph. D, same, interpretative drawing. See Material and methods for explanation of abbreviations. Scale bars: 0.5 mm (A, B); 0.25 mm (C, D).
Figure 32. Specimen GPIH04894 in Diversity of schizomids (Arachnida: Schizomida) revealed by new fossil genera and species from mid-Cretaceous Burmese amber with implications for a Gondwanan origin of the Burma Terrane
Figure 32. Specimen GPIH04894, †Muellerizomus palicaudatus sp. nov., holotype. A, specimen in dorsal view, photograph. B, same, interpretative drawing. C, specimen in ventral view, photograph. D, same, interpretative drawing. See Material and methods for explanation of abbreviations. Scale bars: 1 mm.
Figure 27. Specimen GPIH04895 in Diversity of schizomids (Arachnida: Schizomida) revealed by new fossil genera and species from mid-Cretaceous Burmese amber with implications for a Gondwanan origin of the Burma Terrane
Figure 27. Specimen GPIH04895, †Muellerizomus amandae, sp. nov., holotype. A, specimen in dorsal view, photograph. B, same, interpretative drawing. C, specimen in ventral view, photograph. D, same, interpretative drawing. See Material and methods for explanation of abbreviations. Scale bars: 1 mm.
Figure 25. Specimen GPIH04986 in Diversity of schizomids (Arachnida: Schizomida) revealed by new fossil genera and species from mid-Cretaceous Burmese amber with implications for a Gondwanan origin of the Burma Terrane
Figure 25. Specimen GPIH04986, †Mesozomus groehni, holotype details. A, specimen in dorsal view, three-dimensional (3D) model. B, specimen in ventral view, 3D model. See Material and methods for explanation of abbreviations. Scale bar: 1 mm. Modified after Müller et al. (2019).
Figure 28. Specimen GPIH04895 in Diversity of schizomids (Arachnida: Schizomida) revealed by new fossil genera and species from mid-Cretaceous Burmese amber with implications for a Gondwanan origin of the Burma Terrane
Figure 28. Specimen GPIH04895, †Muellerizomus amandae, sp. nov., holotype details. A, male flagellum in dorsal view, photograph. B, same, interpretative drawing. C, male flagellum in ventral view, photograph. D, same. interpretative drawing. See Material and methods for explanation of abbreviations. Scale bars: 0.25 mm.
Figure 24. Specimen GPIH04986 in Diversity of schizomids (Arachnida: Schizomida) revealed by new fossil genera and species from mid-Cretaceous Burmese amber with implications for a Gondwanan origin of the Burma Terrane
Figure 24. Specimen GPIH04986, †Mesozomus groehni, holotype. A, specimen in dorsal view, photograph. B, same, interpretative drawing. C, specimen in ventral view, photograph. D, same, interpretative drawing. See Material and methods for explanation of abbreviations. Scale bars: 1 mm. Modified after Müller et al. (2019).
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.