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Text-fig. 1. Locality map with the approximate extent of Clarkia Lake during Miocene times in what is today northern Idaho, USA. Black dots mark three of the localities yielding the Miocene Clarkia flora; the fossil leaf of Nymphaea sp. described here comes from locality P-33. Other symbols: Dashed lines for county boundaries; a thin dotted line for Idaho State Hwy 3; a triangle for the local peak of Bechtel Butte; and a star for the town of Clarkia. Inset: Location of the map in northern Idaho. Abbreviations: WA – Washington state, OR – Oregon, ID – Idaho, MT – Montana. Map redrawn from Ladderud et al. (2015). in First Water Lily, A Leaf Of Nymphaea Sp., From The Miocene Clarkia Flora, Northern Idaho, Usa: Occurrence, Taphonomic Observations, Floristic Implications
Text-fig. 1. Locality map with the approximate extent of Clarkia Lake during Miocene times in what is today northern Idaho, USA. Black dots mark three of the localities yielding the Miocene Clarkia flora; the fossil leaf of Nymphaea sp. described here comes from locality P-33. Other symbols: Dashed lines for county boundaries; a thin dotted line for Idaho State Hwy 3; a triangle for the local peak of Bechtel Butte; and a star for the town of Clarkia. Inset: Location of the map in northern Idaho. Abbreviations: WA – Washington state, OR – Oregon, ID – Idaho, MT – Montana. Map redrawn from Ladderud et al. (2015).
Text-fig. 1. Modern vegetation proxies as delivered by the Drudge 1 and 2 tools for Parschlug. Left column results from KovarEder et al. (2021) based on the floristic spectrum published by Kovar-Eder et al. (2004). The other three columns result from three variants using the enlarged floristic spectrum herein. Differences between variants 1–3 from this study are caused by differences in assignment of some taxa and morphotypes (see Appendix 1). European vegetation formations: Formation C – Subarctic, boreal and nemoral-montane open woodlands as well as subalpine and oro-Mediterranean vegetation; Formation D – Mesophytic and hygromesophytic coniferous and mixed broad-leaved-coniferous forests; Formation F – Mesophytic broadleaved deciduous and mixed broadleaved/conifer forests; Formation G – Thermophilous mixed deciduous broadleaved forests; Formation J – Mediterranean sclerophyllous forests and scrub; Formation K – Xerophytic coniferous forests, coniferous woodland and scrub. East Asian vegetation types: MCF China, Japan – Montane Coniferous Forests China, Honshu, Yakushima; BLDF N and NE Provinces, China – Broad-leaved Deciduous Forests of the Northern and Northeastern Provinces (China); BLDF Upper Yangtze, Honshu – Broad-leaved Deciduous Forest, Upper Yangtze Provinces, Mt. Emei, and Honshu; MMF China – Mixed Mesophytic Forest, Lower Yangtze Provinces; BLEF China, Japan – Broad-leaved Evergreen Forests, China, Japan; Meili Snow Mt. high altitude SCL and BLF, China – Meili Snow Mt., Sclerophyllous and broad-leaved forest zone (2,580-3,650 m alt.). (Designations of European vegetation formations follow Bohn et al. (2004) and Asian ones follow Kovar-Eder et al. (2021). in Floristic, Vegetation And Climate Assessment Of The Early/Middle Miocene Parschlug Flora Indicates A Distinctly Seasonal Climate
Text-fig. 1. Modern vegetation proxies as delivered by the Drudge 1 and 2 tools for Parschlug. Left column results from KovarEder et al. (2021) based on the floristic spectrum published by Kovar-Eder et al. (2004). The other three columns result from three variants using the enlarged floristic spectrum herein. Differences between variants 1–3 from this study are caused by differences in assignment of some taxa and morphotypes (see Appendix 1). European vegetation formations: Formation C – Subarctic, boreal and nemoral-montane open woodlands as well as subalpine and oro-Mediterranean vegetation; Formation D – Mesophytic and hygromesophytic coniferous and mixed broad-leaved-coniferous forests; Formation F – Mesophytic broadleaved deciduous and mixed broadleaved/conifer forests; Formation G – Thermophilous mixed deciduous broadleaved forests; Formation J – Mediterranean sclerophyllous forests and scrub; Formation K – Xerophytic coniferous forests, coniferous woodland and scrub. East Asian vegetation types: MCF China, Japan – Montane Coniferous Forests China, Honshu, Yakushima; BLDF N and NE Provinces, China – Broad-leaved Deciduous Forests of the Northern and Northeastern Provinces (China); BLDF Upper Yangtze, Honshu – Broad-leaved Deciduous Forest, Upper Yangtze Provinces, Mt. Emei, and Honshu; MMF China – Mixed Mesophytic Forest, Lower Yangtze Provinces; BLEF China, Japan – Broad-leaved Evergreen Forests, China, Japan; Meili Snow Mt. high altitude SCL and BLF, China – Meili Snow Mt., Sclerophyllous and broad-leaved forest zone (2,580-3,650 m alt.). (Designations of European vegetation formations follow Bohn et al. (2004) and Asian ones follow Kovar-Eder et al. (2021).
Fig. 3 A – D in A new species of the genus Lamprobityle Heller, 1923 (Coleoptera: Cerambycidae) from Mt. Talomo, Mindanao island, Philippines
Fig. 3 A – D. Habitats of Lamprobityle danae sp. n. near Mt. Talomo, Mindanao isl., the Philippines (A - C: Photo: A.Barševskis; D: Photo: A.A.Cabras)
Fig. 3 in A List of Pselaphine Species (Insecta, Coleoptera, Staphylinidae) Collected from Mt. Phia Oac, North Vietnam in 2017 with a Corrected Checklist of the Pselaphine Species Known from Vietnam
Fig. 3. Photos of pselaphine species collected in the survey. A. Pyxidicerina, gen. and sp. undet 1; B. Pseudoplectus? sp. 1, male; C. ditto, female; D. Trimium? sp. 1; E. Intestinarius sp. 1; F. I. sp. 2; G. Trisinus sp. 1; H. T. sp. 2; I. T. sp. 3; J. Sathytes sp. 1; K. Reichenbachia sp. 1; L. Trissemus sp. 1; M. Batraxis sp. 1; N. Triomicrus sp. 1, male; O. ditto, female; P. Plagiophorus sp. 1; Q. P. sp. 2; R. Pseudophanias sp. 1; S. Pselaphodes sp. 1; T. Nomuraius piaoacus Yin et Lee, 2013, male; U. ditto, female.
Fig. 4 in A List of Pselaphine Species (Insecta, Coleoptera, Staphylinidae) Collected from Mt. Phia Oac, North Vietnam in 2017 with a Corrected Checklist of the Pselaphine Species Known from Vietnam
Fig. 4. SEM photos of Pseudoplectus? sp. 1. A–C. male; D–F. female. A, D. habitus in dorsal view; B, E. head and pronotum; C, F. head enlarged.
Fig. 6 in A List of Pselaphine Species (Insecta, Coleoptera, Staphylinidae) Collected from Mt. Phia Oac, North Vietnam in 2017 with a Corrected Checklist of the Pselaphine Species Known from Vietnam
Fig. 6. SEM photos of Nomuraius piaoacus Yin et Li. A–C. male; D–F. female. A, D. Head and pronotum in dorsal view; B, E. Ditto, enlarged; C, F. antennal club.
Fig. 2 in A List of Pselaphine Species (Insecta, Coleoptera, Staphylinidae) Collected from Mt. Phia Oac, North Vietnam in 2017 with a Corrected Checklist of the Pselaphine Species Known from Vietnam
Fig. 2. Habitats and conditions of the traps in the survey at N Vietnam in 2017. A. A view of Mt. Phia Oac; B. A view of the summit of Mt. Phia Oac; C. A forest view around the summit; D. A view of W (tungusten) mine on the halfway up to Mt. Phia Oac; E. The portable light trap set in Mt. Phia Oac.; F. Simplified Winkler apparatuses used in the survey.
Fig. 5 in A List of Pselaphine Species (Insecta, Coleoptera, Staphylinidae) Collected from Mt. Phia Oac, North Vietnam in 2017 with a Corrected Checklist of the Pselaphine Species Known from Vietnam
Fig. 5. SEM photos of Triomicrus spp. A, E. T. vietus Löbl et al. from Mt. Tam Dao, male; B, F. ditto, female; C, G. T. sp. 1 from Mt. Phia Oac, male; D, H. ditto, female. A–D. head and pronotum in dorsal view; E–H. apical segments of antenna.
Fig. 3 in Shrews (Mammalia: Eulipotyphla: Soricidae) from Mt. Tay Con Linh, Ha Giang Province, northeast Vietnam
Fig. 3. External features of (A) Chodsigoa hoffmanni (IEBR Motokawa-675), (B) Chodsigoa caovansunga (IEBR Motokawa-681), (C) Chimarrogale himalayica (IEBR Motokawa-715), (D) Anourosorex squamipes (IEBR Motokawa-685), (E) Blarinella quadraticauda (IEBR Motokawa-697), (F) Crocidura dracula (IEBR Motokawa-649), and (G) Crocidura wuchihensis (IEBR Motokawa-708). Scale bars: 50 mm.
Fig. 1 in Shrews (Mammalia: Eulipotyphla: Soricidae) from Mt. Tay Con Linh, Ha Giang Province, northeast Vietnam
Fig. 1. (A) Map of northern Vietnam with the location of Mt. Tay Con Linh (TCL), Ha Giang Province. This mountain is connected with southern China via a montane region above 1000 m in altitude (dark brown) and is also connected with other mountains in Ha Giang Province above an altitude of 500 m (light brown). (B) Map of Mt. Tay Con Linh showing trapping sites and the type of traps along trails between 1100 and 2100 m in altitude.
Fig. 2 in Shrews (Mammalia: Eulipotyphla: Soricidae) from Mt. Tay Con Linh, Ha Giang Province, northeast Vietnam
Fig. 2. (A) Habitat at approximately 1600-m altitude on Mt. Tay Con Linh, Ha Giang Province, northeast Vietnam. A plantation of Chinese cardamom (Lanxangia tsaoko) occupied the understory (forward) of fragmented subtropical trees (backward). (B) Habitat at approximately 2100-m altitude on Mt. Tay Con Linh. The forest and bamboo shrubs were cut down to prepare for Chinese cardamom plantation (forward) and disturbed forests still remain (backward).
Fig. 4 in Shrews (Mammalia: Eulipotyphla: Soricidae) from Mt. Tay Con Linh, Ha Giang Province, northeast Vietnam
Fig. 4. Skulls (dorsal view, ventral view, left lateral view of cranium, and right lingual view of mandible) of (A) Chodsigoa hoffmanni (IEBR Motokawa-675), (B) Chodsigoa caovansunga (IEBR Motokawa-681), (C) Chimarrogale himalayica (IEBR Motokawa-715), (D) Anourosorex squamipes (IEBR Motokawa-685), (E) Blarinella quadraticauda (IEBR Motokawa-697), (F) Crocidura dracula (IEBR Motokawa-649), and (G) Crocidura wuchihensis (IEBR Motokawa-708). Scale bars: 5 mm.
Figs 1–4 in New Species Of Scaphisoma Leach (Coleoptera: Staphylinidae: Scaphidiinae) From Mt. Wilhelm, Papua New Guinea
Figs 1–4. Aedeagus of Scaphisoma species: 1–2 = S. coeruleum sp. n., scale bar = 0.1 mm; 3–4: S. fenestratum sp. n., scale bar 0.2 mm
Fig. 4 in Spatial Organization And Home Range Of Apodemus Flavicollis And A. Agrarius On Mt. Avala, Serbia
Fig. 4. Least-squared corrected means of observed range length (ORL) values (four possible density combination showing the interaction effects): A = A. flavicollis, B = A. agrarius
Fig. 6 in Spatial Organization And Home Range Of Apodemus Flavicollis And A. Agrarius On Mt. Avala, Serbia
Fig. 6. Correspondence of vegetation cover (a) and capture frequency of both species (b, c) on the grid as an indicator of their habitat preferences
Fig. 1 in Spatial Organization And Home Range Of Apodemus Flavicollis And A. Agrarius On Mt. Avala, Serbia
Fig. 1. Population densities of A. flavicollis (A) and A. agrarius (B) during the study period. The base line indicates arbitrarily defined periods of high versus low density
Fig. 5 in Spatial Organization And Home Range Of Apodemus Flavicollis And A. Agrarius On Mt. Avala, Serbia
Fig. 5. Least-squared corrected means of home range (HR) area (four possible density combination showing the interaction effects): A = A. flavicollis, B = A. agrarius
Figs. 5-8 in Silica-scaled chrysophytes from Mt. Sinbul wetland in South Korea
Figs. 5-8. Silica-scaled chrysophytes from Mt. Sinbul wetland. 5-7. Mallomonas leboimei, 5. Whole cell of Mallomonas leboimei, 6. Showing the scales with very small or large dome, 7. Bristles, 8. M. metvienkoae. Scale bars = 5 (5 μm), 6-8 (1 μm).
Figs. 16-20 in Silica-scaled chrysophytes from Mt. Sinbul wetland in South Korea
Figs. 16-20. Mallomonas dimorphus sp. nov., 16. Apical scales with short papilla (arrow head) and longitudinal rib (arrow), 17. Body scales showing flat dome marked with irregularly ribs such as labyrinth, perforated base plate and small papillae (arrow) on the anterior submarginal rib, 18. Body scales showing hooded V-shaped rib, large meshes or pores and strutted posterior flange, 19, 20. Showing the small scales (arrows) with circular ribs and short, smooth needle like bristles. Scale bars = 1 μm.
Text-fig. 2. Map showing the distribution of localities included in the treatment of Brown (1962), based on the coordinates presented in Appendix Table 1. Localities are distributed across New Mexico (NM), Colorado (CO), Wyoming (WY), Montana (MT), South Dakota (SD) and North Dakota (ND). Also plotted are cited Canadian localities: Joffre Bridge, in Alberta (AB), and Ravenscrag, in Saskatchewan (SK). Map generated with Map-It (2014) website. in Revisions To Roland Brown'S North American Paleocene Flora
Text-fig. 2. Map showing the distribution of localities included in the treatment of Brown (1962), based on the coordinates presented in Appendix Table 1. Localities are distributed across New Mexico (NM), Colorado (CO), Wyoming (WY), Montana (MT), South Dakota (SD) and North Dakota (ND). Also plotted are cited Canadian localities: Joffre Bridge, in Alberta (AB), and Ravenscrag, in Saskatchewan (SK). Map generated with Map-It (2014) website.
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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.