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Figs. 44–48. 44 in A review of Japanese Encyrtidae (Hymenoptera), with descriptions of new species, new records and comments on the types described by Japanese authors
Figs. 44–48. 44 – Psyllaephagus kamitanii Japoshvili sp. nov., female, ovipositor. 45–48 – Psyllaephagus higashiurai Japoshvili sp. nov., female: 45 – antennae; 46 – midtarsus; 47 – ovipositor; 48 – fore wing.
Figs. 30–43. 30 in A review of Japanese Encyrtidae (Hymenoptera), with descriptions of new species, new records and comments on the types described by Japanese authors
Figs. 30–43. 30 – Leptomastix teii Japoshvili sp. nov., female, mesosoma. 31–37 – Psyllaephagus enokicola Japoshvili sp. nov., female: 31 – mesosoma; 32 – ovipositor; 33 – head; 34 – mandible; 35 – mid tarsus; 36 – antenna; 37 – fore wing. 38–43 – Psyllaephagus kamitanii Japoshvili sp. nov., female: 38 – mesosoma; 39 – mid tarsus; 40 – antennae; 41 – head; 42 – fore wing; 43 – mandible.
Figs. 13–18. Habitus. 13 in Galerucinae (Coleoptera: Chrysomelidae) of Socotra Island, with a review of taxa recorded from Yemen
Figs. 13–18. Habitus. 13 – Monolepta suchomeli sp. nov. (paratype, male, 1.9 mm); 14 – M. hlavaci sp. nov. (paratype, male, 2.9 mm); 15 – M. hlavaci sp. nov. (black form) (paratype, female, 2.8 mm); 16 – M. kmenti sp. nov. (holotype, male, 3.1 mm); 17 – Madurasia obscurella Jacoby, 1896 (female, 2.7 mm); 18 – Medythia sp. (female, 3.3 mm).
Figs. 19–24 in Galerucinae (Coleoptera: Chrysomelidae) of Socotra Island, with a review of taxa recorded from Yemen
Figs. 19–24. Monolepta suchomeli sp. nov. 19 – aedeagus (a – dorsal view, b – lateral view); 20 – sternite VIII and tignum; 21 – vaginal palpi; 22 – ventral bursa sclerites; 23 – last male ventrite; 24 – spermatheca. Scale bars: 0.5 mm for Figs. 19–23, 0.25 mm for Fig. 24.
Figs. 1–2. Habitus. 1 in Galerucinae (Coleoptera: Chrysomelidae) of Socotra Island, with a review of taxa recorded from Yemen
Figs. 1–2. Habitus. 1 – Beenenia scanticola sp. nov. (holotype, male, 6.0 mm); 2 – B. kabateki sp. nov. (holotype, male, 5.4 mm).
Figs. 32–38 in Galerucinae (Coleoptera: Chrysomelidae) of Socotra Island, with a review of taxa recorded from Yemen
Figs. 32–38. Monolepta kmenti sp. nov. 32 – aedeagus (a – dorsal view, b – lateral view, c – ventral view); 33 – sternite VIII and tignum; 34 – vaginal palpi; 35 – ventral bursa sclerites; 36 – dorsal bursa sclerites; 37 – last male ventrite; 38 – spermatheca. Scale bars: 0.5 mm for Figs. 32–37, 0.25 mm for Fig. 38.
Figs. 25–31 in Galerucinae (Coleoptera: Chrysomelidae) of Socotra Island, with a review of taxa recorded from Yemen
Figs. 25–31. Monolepta hlavaci sp. nov. 25 – aedeagus (a – dorsal view, b – lateral view, c – ventral view); 26 – sternite VIII and tignum; 27 – vaginal palpi; 28 – ventral bursa sclerites; 29 – dorsal bursa sclerites; 30 – last male ventrite; 31 – spermatheca. Scale bars: 0.5 mm for Figs. 25–30, 0.25 mm for Fig. 31.
Figs. 9–12 in Galerucinae (Coleoptera: Chrysomelidae) of Socotra Island, with a review of taxa recorded from Yemen
Figs. 9–12. Beenenia kabateki sp. nov. 9 – aedeagus (a – dorsal view, b – lateral view); 10 – sternite VIII and tignum; 11 – vaginal palpi; 12 – spermatheca. Scale bars: 1 mm for Figs. 9–10, 0.5 mm for Figs. 11–12.
Figs. 3–8 in Galerucinae (Coleoptera: Chrysomelidae) of Socotra Island, with a review of taxa recorded from Yemen
Figs. 3–8. Beenenia scanticola sp. nov. 3 – aedeagus (a – dorsal view, b – lateral view); 4 – last male ventrite; 5 – sternite VIII and tignum; 6 – vaginal palpi; 7 – spermatheca; 8 – claws. Scale bars: 1 mm for Figs. 3–5, 0.5 mm for Figs. 6–7, 0.25 mm for Fig. 8.
FIG. 4 in Middle Miocene Uruguaytheriinae (Mammalia, Astrapotheria) from Peruvian Amazonia and a review of the astrapotheriid fossil record in northern South America
FIG. 4.— Location map and fossil record of northern South American Astrapotheriidae Ameghino, 1887, based on data from Kraglievich (1928), Stehlin (1928), Scott (1937), Simpson (1940), Paula Couto (1976, 1982), Rancy (1981), Frailey (1986, 1987), Isea (1987), Johnson & Madden (1997), Flynn et al. (2002, 2008), Sánchez-Villagra et al. (2004), Weston et al. (2004), Antoine et al. (2007), Croft (2007), and Negri et al. (2010). Abbreviations: LO, late Oligocene; EM, early Miocene; MM, middle Miocene; LM, late Miocene.
FIG. 2 in Middle Miocene Uruguaytheriinae (Mammalia, Astrapotheria) from Peruvian Amazonia and a review of the astrapotheriid fossil record in northern South America
FIG. 2. — Xenastrapotherium sp. from the late middle Miocene Fitzcarrald local fauna, Peruvian Amazonia: A-F, edentulous symphysis with canine alveoli (MUSM 1468), IN-DTC 20 locality; A, dorsal view; B, interpretative reconstruction with canines, same view; C, rostro-dorsal view;D, interpretative reconstruction with alveoli of anterior teeth,same view;E, right lateral view;F, interpretative reconstruction with canines, same view; G -J, left P3 without ectoloph (MUSM 1467), IN-DTC 37 locality; G, occlusal view; H, interpretative sketch of the occlusal view, with main observed features; I, mesiolingual view; J, distal view; K-M, left i1 (MUSM 1466), IN-DTC 20 locality; K, occlusal view; L, labial view; M, lingual view. Leftward and upward arrows show mesial and labial sides, respectively. Scale bars: A-F, 50 mm; G-M, 20 mm.
FIG. 1 in Middle Miocene Uruguaytheriinae (Mammalia, Astrapotheria) from Peruvian Amazonia and a review of the astrapotheriid fossil record in northern South America
FIG. 1. — Location map of the late middle Miocene astrapotheriid-yielding vertebrate localities in the Río Inuya and Río Mapuya area ("Fitzcarrald local fauna", Ipururo Formation), Ucayali Department, eastern Peru.
FIG. 3 in Middle Miocene Uruguaytheriinae (Mammalia, Astrapotheria) from Peruvian Amazonia and a review of the astrapotheriid fossil record in northern South America
FIG. 3. — Granastrapotherium cf. snorki from the late middle Miocene Fitzcarrald local fauna, Peruvian Amazonia. Left broken M2 without ectoloph (MUSM 994), IN-DTC 28 locality (float): A, occlusal view; B, interpretative sketch of the occlusal view; C, tentative reconstruction of the whole tooth. Scale bar: 20 mm.
Data and code to accompany 'One hundred years of daily sea surface temperature from the Hopkins Marine Station in Pacific Grove, California: A review of the history, acquisition, and significance of the record'
<p>Data and analysis code to accompany the manuscript 'One hundred years of daily sea surface temperature from the Hopkins Marine Station in Pacific Grove, California: A review of the history, acquisition, and significance of the record', published in <em>Oceanography and Marine Biology: An Annual Review </em>(<a href="https://doi.org/10.1201/9781003363873-2">https://doi.org/10.1201/9781003363873-2</a>). Data files include records of sea surface temperature (SST) collected in Pacific Grove, California, USA from January 20, 1919 to the end of 2020. The analysis code produces a continuous 100+ year record with adjustments made for time of day the data were collected, and filling gaps in the data set where necessary. </p> <p>This dataset makes use of an earlier 83-year version of the sea surface temperatures produced by Breaker et al. 2005 available at <a href="https://aquadocs.org/handle/1834/20890">https://aquadocs.org/handle/1834/20890</a>, with the data file available at <a href="https://purl.stanford.edu/rc833pc4972">https://purl.stanford.edu/rc833pc4972</a> </p>
Fig. 1 in A review of the fossil record of spiders (Araneae) with special reference to Africa, and description of a new specimen from the Triassic Molteno Formation of South Africa
Fig. 1. Summary phylogenetic tree of Araneae, produced by combining the fossil record with the cladograms of Coddington and Levi (1991), Griswold (1993), Scharff and Coddington (1997), Griswold et al. (1998, 1999), and Ramírez (2000).
Fig. 2 in A review of the fossil record of spiders (Araneae) with special reference to Africa, and description of a new specimen from the Triassic Molteno Formation of South Africa
Fig. 2. Location map of the Telemachus Spruit locality (Eastern Cape, South Africa) in relation to the outcrop of the Late Triassic Molteno Formation (shown in black) (after Anderson et al. 1998).
Figs 4, 5. T. andersonorum specimen PRE-F 17234 Tel 111 in A review of the fossil record of spiders (Araneae) with special reference to Africa, and description of a new specimen from the Triassic Molteno Formation of South Africa
Figs 4, 5. T. andersonorum specimen PRE-F 17234 Tel 111 from Telemachus Spruit: (4) camera lucida illustration, (5) actual fossil dry (A) and under ethanol (B). Abbreviations: fe – femur, mt – metatarsus, pa – patella, ta – tarsus, ti – tibia. Scale bar = 0.5 mm.
Figure 4 in Characterizing Environmental Change and Species' Histories from Stratified Faunal Records in Southeastern Australia: A Regional Review and a Case Study for the Early to Middle Holocene
Figure 4. Selected species representations at WJ99. Species are sorted by those that show decline into the Holocene (blue), those whose values generally do not show particular decline or increase during the Holocene Climatic Optimum (gold), and those whose numbers appear to be affected—decline or increase—during the Holocene Climatic Optimum (red). Grey shading indicates approximate timing of peak Holocene Climatic Optimum conditions.
Figure 1 in Characterizing Environmental Change and Species' Histories from Stratified Faunal Records in Southeastern Australia: A Regional Review and a Case Study for the Early to Middle Holocene
Figure 1. Map of SE Australian Alps and region, indicating locations of sites with faunal material mentioned in text.
Figure 3 in Characterizing Environmental Change and Species' Histories from Stratified Faunal Records in Southeastern Australia: A Regional Review and a Case Study for the Early to Middle Holocene
Figure 3. Summary of known environmental shifts during the early to middle Holocene from SE Australia, chronologically related to notable temporal changes within (and environmental inferences from) the faunal composition of WJ99. * Approximate calibrated date ranges inferred from original uncalibrated dates.
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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.