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721 results for “Namibia”
Linked collectors and determiners for: Occurrence data of Mydidae at Gobabeb, Namib Desert, Namibia (10 km radius).
Natural history specimen data linked to collectors and determiners held within, "Occurrence data of Mydidae at Gobabeb, Namib Desert, Namibia (10 km radius)". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/b489182e-4e49-4289-b551-dde39e13db37">https://bionomia.net/dataset/b489182e-4e49-4289-b551-dde39e13db37</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/b489182e-4e49-4289-b551-dde39e13db37">https://gbif.org/dataset/b489182e-4e49-4289-b551-dde39e13db37</a>. Formatted as a Frictionless Data package.
Linked collectors and determiners for: Occurrence data of Asilidae at Gobabeb, Namib Desert, Namibia (10 km radius).
Natural history specimen data linked to collectors and determiners held within, "Occurrence data of Asilidae at Gobabeb, Namib Desert, Namibia (10 km radius)". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/602a4e3d-f5c9-409f-b1e2-25f759ff7d8c">https://bionomia.net/dataset/602a4e3d-f5c9-409f-b1e2-25f759ff7d8c</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/602a4e3d-f5c9-409f-b1e2-25f759ff7d8c">https://gbif.org/dataset/602a4e3d-f5c9-409f-b1e2-25f759ff7d8c</a>. Formatted as a Frictionless Data package.
Linked collectors and determiners for: Senecio namibensis (Asteraceae: Senecioneae), a new species from Namibia.
Natural history specimen data linked to collectors and determiners held within, "Senecio namibensis (Asteraceae: Senecioneae), a new species from Namibia". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/d582dc3c-5dae-42ce-85be-f40dba0d4a5e">https://bionomia.net/dataset/d582dc3c-5dae-42ce-85be-f40dba0d4a5e</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/d582dc3c-5dae-42ce-85be-f40dba0d4a5e">https://gbif.org/dataset/d582dc3c-5dae-42ce-85be-f40dba0d4a5e</a>. Formatted as a Frictionless Data package.
Linked collectors and determiners for: National Museum of Namibia Scorpiones Collection Data 2022.
Natural history specimen data linked to collectors and determiners held within, "National Museum of Namibia Scorpiones Collection Data 2022". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/7a5d39ef-1abc-442f-be56-5ccf3b27aedd">https://bionomia.net/dataset/7a5d39ef-1abc-442f-be56-5ccf3b27aedd</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/7a5d39ef-1abc-442f-be56-5ccf3b27aedd">https://gbif.org/dataset/7a5d39ef-1abc-442f-be56-5ccf3b27aedd</a>. Formatted as a Frictionless Data package.
Text-fig. 4. Bivariate plots of the upper teeth (M2 – P3) of small to medium sized Miocene hyaenodonts from African localities. Data source: Pilgrim (1912, 1914, 1932), Colbert (1935), Savage (1965), Barry (1988), Morales et al. (1998a, 2007), Holroyd (1999), Rasmussen et al. (2009), Borths et al. (2016), Borths and Seiffert (2017). in New Hyaenodonts (Ferae, Mammalia) From The Early Miocene Of Napak (Uganda), Koru (Kenya) And Grillental (Namibia)
Text-fig. 4. Bivariate plots of the upper teeth (M2 – P3) of small to medium sized Miocene hyaenodonts from African localities. Data source: Pilgrim (1912, 1914, 1932), Colbert (1935), Savage (1965), Barry (1988), Morales et al. (1998a, 2007), Holroyd (1999), Rasmussen et al. (2009), Borths et al. (2016), Borths and Seiffert (2017).
Text-fig. 3. Bivariate plots of the lower teeth (m3 – m2) of small to medium sized Miocene hyaenodonts from African localities. Data source: Pilgrim (1912, 1932), Colbert (1935), Savage (1965), Barry (1988), Morales et al. (1998a, 2003, 2007, 2008, 2010), Holroyd (1999), Morlo et al. (2007), Rasmussen et al. (2009), Borths et al. (2016), Borths and Seiffert (2017). in New Hyaenodonts (Ferae, Mammalia) From The Early Miocene Of Napak (Uganda), Koru (Kenya) And Grillental (Namibia)
Text-fig. 3. Bivariate plots of the lower teeth (m3 – m2) of small to medium sized Miocene hyaenodonts from African localities. Data source: Pilgrim (1912, 1932), Colbert (1935), Savage (1965), Barry (1988), Morales et al. (1998a, 2003, 2007, 2008, 2010), Holroyd (1999), Morlo et al. (2007), Rasmussen et al. (2009), Borths et al. (2016), Borths and Seiffert (2017).
Text-fig. 8. Drawings of upper dentition in occlusal view of African Miocene Hyainailourinae. Comparison with other selected Hyaenodontida taxa. a: Brychotherium ephalmos, b: Anasinopa leakeyi, c: Teratodon spekei, d: Mlanyama sugu, e: Leakitherium hiwegi, f: Buhakia sp. from Karungu, g: Dissopsalis carnifex, h: Metapterodon stromeri, i: Pterodon dasyuroides, j: Hyainailouros napakensis, k: Falcatodon schlosseri, l: Sectisodon markgrafi, m: Isohyaenodon zadoki, n: Isohyaenodon sp. from Elisabethfeld, o: Sectisodon occultus, p–q: Exiguodon pilgrimi, p: from Napak, q: from Koru. in New Hyaenodonts (Ferae, Mammalia) From The Early Miocene Of Napak (Uganda), Koru (Kenya) And Grillental (Namibia)
Text-fig. 8. Drawings of upper dentition in occlusal view of African Miocene Hyainailourinae. Comparison with other selected Hyaenodontida taxa. a: Brychotherium ephalmos, b: Anasinopa leakeyi, c: Teratodon spekei, d: Mlanyama sugu, e: Leakitherium hiwegi, f: Buhakia sp. from Karungu, g: Dissopsalis carnifex, h: Metapterodon stromeri, i: Pterodon dasyuroides, j: Hyainailouros napakensis, k: Falcatodon schlosseri, l: Sectisodon markgrafi, m: Isohyaenodon zadoki, n: Isohyaenodon sp. from Elisabethfeld, o: Sectisodon occultus, p–q: Exiguodon pilgrimi, p: from Napak, q: from Koru.
Text-fig. 7. Bivariate plots of the upper teeth (M2, M1, P4) and lower teeth (m3, m2, p4) of large Miocene hyaenodonts from Eurasian and African localities. Data source: Stromer (1926), Savage (1965), Barry (1988), Ginsburg (1999), Holroyd (1999), Morales et al. (2003, 2007, 2008, 2010), Morlo et al. (2007), Rasmussen and Gutiérrez (2009), Borths et al. (2016). in New Hyaenodonts (Ferae, Mammalia) From The Early Miocene Of Napak (Uganda), Koru (Kenya) And Grillental (Namibia)
Text-fig. 7. Bivariate plots of the upper teeth (M2, M1, P4) and lower teeth (m3, m2, p4) of large Miocene hyaenodonts from Eurasian and African localities. Data source: Stromer (1926), Savage (1965), Barry (1988), Ginsburg (1999), Holroyd (1999), Morales et al. (2003, 2007, 2008, 2010), Morlo et al. (2007), Rasmussen and Gutiérrez (2009), Borths et al. (2016).
Text-fig. 2. Buhakia hyaenoides (MORALES et al., 2003) from Arrisdrift, Sperrgebiet (Namibia). GSN AD 241'99 (holotype), left m2. a: lingual view, b: buccal view, c: occlusal view (stereo pairs). in New Hyaenodonts (Ferae, Mammalia) From The Early Miocene Of Napak (Uganda), Koru (Kenya) And Grillental (Namibia)
Text-fig. 2. Buhakia hyaenoides (MORALES et al., 2003) from Arrisdrift, Sperrgebiet (Namibia). GSN AD 241'99 (holotype), left m2. a: lingual view, b: buccal view, c: occlusal view (stereo pairs).
Text-fig. 10. Phylogenetic relationships of Miocene hyaenodonts (for definitions of character states see Table 2). The data matrix was compiled in MacClade 4.05 and run in PAUP 4.0b10 (Macintosh version). We chose Cimolestes magnus CLEMENS et RUSSELL, 1965, (additional data from Lillegraven 1969), as the outgroup. The unordered and unweighted analysis produced 16 trees. a: Majority-rule consensus. b: Strict consensus. Consistency index (CI): 0.5882; Homoplasy index (HI): 0.4118; Retention index (RI): 0.7742. in New Hyaenodonts (Ferae, Mammalia) From The Early Miocene Of Napak (Uganda), Koru (Kenya) And Grillental (Namibia)
Text-fig. 10. Phylogenetic relationships of Miocene hyaenodonts (for definitions of character states see Table 2). The data matrix was compiled in MacClade 4.05 and run in PAUP 4.0b10 (Macintosh version). We chose Cimolestes magnus CLEMENS et RUSSELL, 1965, (additional data from Lillegraven 1969), as the outgroup. The unordered and unweighted analysis produced 16 trees. a: Majority-rule consensus. b: Strict consensus. Consistency index (CI): 0.5882; Homoplasy index (HI): 0.4118; Retention index (RI): 0.7742.
Text-fig. 6. Hyainailouros sulzeri BIEDERMANN, 1863 from Arrisdrift, Sperrgebiet, Namibia. GSN AD 106'99, left mandible with m1. a: radiograph showing unerupted m3 and m2, b: occlusal view, c: buccal view. pp = undetermined premolars, pa = paraconid, pr = protoconid. in New Hyaenodonts (Ferae, Mammalia) From The Early Miocene Of Napak (Uganda), Koru (Kenya) And Grillental (Namibia)
Text-fig. 6. Hyainailouros sulzeri BIEDERMANN, 1863 from Arrisdrift, Sperrgebiet, Namibia. GSN AD 106'99, left mandible with m1. a: radiograph showing unerupted m3 and m2, b: occlusal view, c: buccal view. pp = undetermined premolars, pa = paraconid, pr = protoconid.
Text-fig. 1. Leakitherium hiwegi SAVAGE, 1965 from Rusinga, Kenya. NHMUK M 19083 (holotype), left maxilla with M2 – M1. a: occlusal view, b: lingual view, c: buccal view (stereo pairs). in New Hyaenodonts (Ferae, Mammalia) From The Early Miocene Of Napak (Uganda), Koru (Kenya) And Grillental (Namibia)
Text-fig. 1. Leakitherium hiwegi SAVAGE, 1965 from Rusinga, Kenya. NHMUK M 19083 (holotype), left maxilla with M2 – M1. a: occlusal view, b: lingual view, c: buccal view (stereo pairs).
Text-fig. 9. Biostratigraphy of African Miocene localities, with the temporal ranges of the diverse species of hyaenodonts found therein. See Pickford (1986a), Pickford and Senut (2003), Reynoso (2014) and Werdelin (2010). in New Hyaenodonts (Ferae, Mammalia) From The Early Miocene Of Napak (Uganda), Koru (Kenya) And Grillental (Namibia)
Text-fig. 9. Biostratigraphy of African Miocene localities, with the temporal ranges of the diverse species of hyaenodonts found therein. See Pickford (1986a), Pickford and Senut (2003), Reynoso (2014) and Werdelin (2010).
Text-fig. 5. Hyainailourus napakensis GINSBURG, 1980. a: NHMUK M 19090, left M1 from Napak (Uganda), 1: occlusal view, 2: buccal view, 3: lingual view. b: KNM-ME 22, left m2 from Meswa Brigde (Kenya), 1: buccal view, 2: lingual view. Hyainailouros sulzeri BIEDERMANN, 1863. c: GSN AD 375'94, right M1 from Arrisdrift (Namibia), 1: occlusal view, 2: buccal view, 3: lingual view. d: MNHN Tav 167, right m2 from Tavers (France), 1: occlusal view, 2: buccal view, 3: lingual view. in New Hyaenodonts (Ferae, Mammalia) From The Early Miocene Of Napak (Uganda), Koru (Kenya) And Grillental (Namibia)
Text-fig. 5. Hyainailourus napakensis GINSBURG, 1980. a: NHMUK M 19090, left M1 from Napak (Uganda), 1: occlusal view, 2: buccal view, 3: lingual view. b: KNM-ME 22, left m2 from Meswa Brigde (Kenya), 1: buccal view, 2: lingual view. Hyainailouros sulzeri BIEDERMANN, 1863. c: GSN AD 375'94, right M1 from Arrisdrift (Namibia), 1: occlusal view, 2: buccal view, 3: lingual view. d: MNHN Tav 167, right m2 from Tavers (France), 1: occlusal view, 2: buccal view, 3: lingual view.
CCG Starter Data Kit: Namibia
<p>A starter data kit for Namibia</p>
Figs 23–31 in Apterous crickets of the tribe Gryllini from South Africa and Namibia (Orthoptera: Gryllidae)
Figs 23–31. Cophogryllus and Acophogryllus, _: (23–25) C. pietersburgi sp. n., genitalia dorsally (23), ventrally (24) and laterally (25); (26–28) C.? zoutpansbergi (after Otte 1987), distal part of genitalia dorsally (26) and ventrally (27), genitalia laterally (28); (29–31) A. schultzei (after Gorochov 1996), genitalia dorsally (29), ventrally (30) and laterally (31). Abbreviations: (ec) ectoparamere; others as in Figs 1–5 and 15–22.
Figs 1–5 in Apterous crickets of the tribe Gryllini from South Africa and Namibia (Orthoptera: Gryllidae)
Figs 1–5. Kurtguentheria: (1–4) K. macroxipha sp. n., male genitalia dorsally (1), their distal half ventrally (2) and laterally (3), distal half of ovipositor laterally (4); (5) K. simonsi (after Otte 1987), distal half of male genitalia laterally.Abbreviations: (e) epiphallus, (1ec) first ectoparamere, (2ec) second ectoparamere, (en) endoparamere, (la) lateral apodeme of endoparamere, (m) mesal lobe of ectoparamere, (r) ramus, (s) spermatophore sac, (v) virga.
Figs 9, 10 in Scorpions of the Brandberg Massif, Namibia: Species richness inversely correlated with altitude
Figs 9, 10. Adult females, habitus in life: (9) Hottentotta conspersus (Thorell, 1876); (10) Parabuthus brevimanus (Thorell, 1876).
Figs 15, 16 in Scorpions of the Brandberg Massif, Namibia: Species richness inversely correlated with altitude
Figs 15, 16. Uroplectes adults, habitus in life: (15) U. gracilior Hewitt, 1913, male; (16) U. planimanus (Karsch, 1879), female with brood.
Fig. 1 in Scorpions of the Brandberg Massif, Namibia: Species richness inversely correlated with altitude
Fig. 1. Brandberg Massif (Namibia), gravel plains southwest, facing northeast to Massif in distance, dry year. Gravel plains, habitat of Parabuthus brevimanus (Thorell, 1876), Parabuthus namibensis Lamoral, 1979 and Uroplectes gracilior Hewitt, 1913.
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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.