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1,250 results for “nature reserve”
Supplementary material 1 from: Wölfling M, Uhl B, Fiedler K (2019) Multi-decadal surveys in a Mediterranean forest reserve – do succession and isolation drive moth species richness? Nature Conservation 35: 25-40. https://doi.org/10.3897/natureconservation.35.32934
: Data type: species data
FIGURE 4 in Eustra yinggelingensis sp. nov., a new flanged bombardier beetle from Yinggeling Nature Reserve, Hainan, China with contribution to the knowledge of Chinese Eustra species (Coleoptera, Carabidae, Paussinae)
FIGURE 4. Map of distribution of the Chinese species of Eustra.
Figures 1- 2 from: Bukhtiyarova LN (2019) The genus Eunotia Ehrenb. (Bacillariophyta) in the Cheremsky Nature Reserve, Ukrainian Polissya, and refined terminology relevant to the raphe system morphology. PhytoKeys 128: 1-31. https://doi.org/10.3897/phytokeys.128.35566
Figures 1- 2 - Location of the studied area 1 The Cheremsky Nature Reserve on the map of Ukraine, indicated by red dot 2 map-scheme of the Cheremsky Nature Reserve.
Figures 7-12a from: Bukhtiyarova LN (2019) The genus Eunotia Ehrenb. (Bacillariophyta) in the Cheremsky Nature Reserve, Ukrainian Polissya, and refined terminology relevant to the raphe system morphology. PhytoKeys 128: 1-31. https://doi.org/10.3897/phytokeys.128.35566
Figures 7-12a - New and rare in Ukraine species of Eunotia Ehrenb. from the Cheremsky Nature Reserve. 7–8a Eunotia julma Lange-Bert. in Lange-Bertalot et al., arrow indicates distal end of raphe slit, double arrow – funnel-like lacuna, terminal fissure is between the arrows 9 Eunotia sp. 1 (cf E. formica Ehrenb.) 10, 11 Eunotia formicina Lange-Bert. in Lange-Bertalot et al. 12, 12a Eunotia jarensis Lange-Bert. et al., arrow indicates rimoportula. Figs 7, 9–11 LM 8, 8a outside valve surface 12, 12a inside valve surface, SEM. Scale bars: 10 µm (7–17); 3 µm (8a); 2 µm (12a).
Figures 4-6b from: Bukhtiyarova LN (2019) The genus Eunotia Ehrenb. (Bacillariophyta) in the Cheremsky Nature Reserve, Ukrainian Polissya, and refined terminology relevant to the raphe system morphology. PhytoKeys 128: 1-31. https://doi.org/10.3897/phytokeys.128.35566
Figures 4-6b - New in Ukraine species Eunotia genuflexa Nörpel-Schempp in Lange-Bertalot and Metzeltin, outside valve surface, SEM. Arrows indicate distal ends of raphe slits, double arrows – funnel-like lacunae, terminal fissures are between the arrows. Scale bars: 10 µm (4–6); 2 µm (4a, 5a, 6a); 1 µm (6b).
Figures 13-27 from: Bukhtiyarova LN (2019) The genus Eunotia Ehrenb. (Bacillariophyta) in the Cheremsky Nature Reserve, Ukrainian Polissya, and refined terminology relevant to the raphe system morphology. PhytoKeys 128: 1-31. https://doi.org/10.3897/phytokeys.128.35566
Figures 13-27 - New and rare in Ukraine species of Eunotia Ehrenb. from Ukrainian Polissya and the Lectotypes of two Eunotia species. 13, 13a Eunotia pseudoflexuosa Hust., arrow indicates rimoportula at the middle of pole where raphe slit distal end finishes on the outer valve surface, double arrow – position of terminal fissure distal end on the outer valve surface, between the arrows – hyaline field from inside valve surface where the terminal fissure is located on the outer valve surface 14 Eunotia ruzickae Bílý & Marvan 15, 16 Eunotia implicata Nörpel-Schempp et al. Lectotype: 15 = Eunotia impressa var. angusta Grunow in Van Heurck 1881: pl. 33/fig. 22, designated here 17, 17a Eunotia sp. 2 ( cf. mongolica Kulikovskiy et al.) 18–20 Eunotia sp. 3 (cf. Eunotia paludosa Grunow) 21–23 Eunotia incisa W. Smith ex Gregory. Lectotype: 23 = Eunotia incisa W. Smith ex Gregory 1854: pl. 4/fig. 4, designated here 24 Eunotia sp. 4 (cf. Eunotia intermedia (Krasske ex Hustedt) Nörpel & Lange-Bert.) 25–27 Eunotia sp. 5 (cf. Eunotia meridiana Metzeltin & Lange-Bert.). Figs 13, 17, 18 SEM: 13, 13a inside valve surface 17, 17a, 18 outside valve surface; 19–28 LM. Scale bars: 10 µm (13–17, 19–27); 5 µm (18); 1 µm (13a, 17a).
Figure 3 from: Bukhtiyarova LN (2019) The genus Eunotia Ehrenb. (Bacillariophyta) in the Cheremsky Nature Reserve, Ukrainian Polissya, and refined terminology relevant to the raphe system morphology. PhytoKeys 128: 1-31. https://doi.org/10.3897/phytokeys.128.35566
Figure 3 - Scheme of the mirror-symmetric, mantle-offset, brevisslit raphe system in frustule of the genus Eunotia Ehrenb. A valve view, different parts of valve. TA – transapical axis. Central part – between the arrows, middle part – between upper and double arrows, the beginning of valve pole – double arrow B girdle view, arrow – central raphe pore C, D raphe system without terminal fissures C arrow – a pore outer at distal end of slit, that finishes at the middle of valve pole D arrow – a funnel-like outer at distal end of slit, that finishes at the venral corner of valve pole E, F raphe system with terminal fissures – dotted lines between arrows, arrow – distal end of a slit E double arrow – the end of terminal fissure F double arrow – lacuna at the end of terminal fissure. (Original by L. Bukhtiyarova)
Figures 28-35 from: Bukhtiyarova LN (2019) The genus Eunotia Ehrenb. (Bacillariophyta) in the Cheremsky Nature Reserve, Ukrainian Polissya, and refined terminology relevant to the raphe system morphology. PhytoKeys 128: 1-31. https://doi.org/10.3897/phytokeys.128.35566
Figures 28-35 - Species of Eunotia Ehrenb. from the Cheremsky Nature Reserve. 28, 28a, 29 Eunotia dorofeyukiae Lange-Bert. & Kulikovskiy 28a arrow indicates pore outer on the raphe slit distal end 29 arrow indicates rimoportula at the venral corner of pole where raphe slit distal end finishes on the outer valve surface 30, 30a Eunotia neocompacta S. Mayama 30a arrow indicates rimoportula at the venral corner of pole, absence of a hyaline field indicates absence of terminal fissure 31 Eunotia praerupta Ehrenb. 32 Eunotia sp. 6. 33 Eunotia sp. 7. 34, 35 Eunotia tetraodon Ehrenb. Figs 28–31 SEM: 28, 28a outside valve surface; 29–31 inside valve surface; 32–35 LM. Scale bars: 5 µm (28, 29, 30); 2 µm (28a); 1 µm (30a); 10 µm (31–34).
Figure 2 in Odonates (Insecta: Odonata) of the "Golczewskie Uroczysko" nature reserve (North-West Poland)
Figure 2. Participation of particular synecological groups of the odonatofauna of the "Golczewskie Uroczysko" nature reserve; the inner ring – a number of individuals, the outer ring – the number of species.
Figure 4 in Water mites (Acari: Hydrachnidia) of the "Golczewskie Uroczysko" nature reserve
Figure 4. Participation of particular synecological groups of the water mite fauna in different reservoirs; the inner ring – a number of individuals, the outer ring – the number of species.
Linked collectors and determiners for: Three new national records from Kon Chu Rang Nature Reserve, Vietnam: Euphorbia bokorensis, Glochidion geoffrayi and Lysimachia nutantiflora.
Natural history specimen data linked to collectors and determiners held within, "Three new national records from Kon Chu Rang Nature Reserve, Vietnam: Euphorbia bokorensis, Glochidion geoffrayi and Lysimachia nutantiflora". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/8aeca94d-19fa-46fd-bf32-b4a0ab0d37f4">https://bionomia.net/dataset/8aeca94d-19fa-46fd-bf32-b4a0ab0d37f4</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/8aeca94d-19fa-46fd-bf32-b4a0ab0d37f4">https://gbif.org/dataset/8aeca94d-19fa-46fd-bf32-b4a0ab0d37f4</a>. Formatted as a Frictionless Data package.
Supplementary material 1 from: Zhao X, Zhang J, Guo H (2021) Development evaluation of nature reserves under China's forestry department: A spatiotemporal empirical study at the province level. Nature Conservation 44: 81-97. https://doi.org/10.3897/natureconservation.44.65488
Tables S1, S2
Figure 2 from: Lin X-B, Zhen Y-D, Peng Z (2021) On the Lathrobium fauna of the Nanling National Nature Reserve, southern China (Coleoptera, Staphylinidae, Paederinae). ZooKeys 1054: 15-24. https://doi.org/10.3897/zookeys.1054.68991
Figure 2 Lathrobium yangyihani. A female tergite VIII B female sternite VIII C female tergites IX–X. D male sternite VII E male sternite VIII F aedeagus in ventral view G aedeagus in lateral view. Scale bars: 0.5 mm.
Figures 5-7 from: Lin X-B, Zhen Y-D, Peng Z (2021) On the Lathrobium fauna of the Nanling National Nature Reserve, southern China (Coleoptera, Staphylinidae, Paederinae). ZooKeys 1054: 15-24. https://doi.org/10.3897/zookeys.1054.68991
Figures 5-7 Collecting sites on the Nanling National Nature Reserve 5 type localities of Lathrobium yangyihani (1,260 m) 6 type locality of Lathrobium jiaxingyangi (1,850 m) 7 type locality of Lathrobium wangxingmini (1,090 m).
Figure 1 from: Lin X-B, Zhen Y-D, Peng Z (2021) On the Lathrobium fauna of the Nanling National Nature Reserve, southern China (Coleoptera, Staphylinidae, Paederinae). ZooKeys 1054: 15-24. https://doi.org/10.3897/zookeys.1054.68991
Figure 1 Male habitus of Lathrobium spp. AL. yangyihaniBL. jiaxingyangiCL. wangxingmini. Scale bars: 1.0 mm.
Figure 4 from: Lin X-B, Zhen Y-D, Peng Z (2021) On the Lathrobium fauna of the Nanling National Nature Reserve, southern China (Coleoptera, Staphylinidae, Paederinae). ZooKeys 1054: 15-24. https://doi.org/10.3897/zookeys.1054.68991
Figure 4 Lathrobium wangxingmini. A female tergite VIII B female sternite VIII C female tergites IX–X. D male sternite VII E male sternite VIII F aedeagus in ventral view G aedeagus in lateral view. Scale bars: 0.5 mm.
Figure 3 from: Lin X-B, Zhen Y-D, Peng Z (2021) On the Lathrobium fauna of the Nanling National Nature Reserve, southern China (Coleoptera, Staphylinidae, Paederinae). ZooKeys 1054: 15-24. https://doi.org/10.3897/zookeys.1054.68991
Figure 3 Lathrobium guangdongense (A–C) and L. jiaxingyangi (D–G) A female tergite VIII B female sternite VIII C female tergites IX–X. D male sternite VII E male sternite VIII F aedeagus in ventral view G aedeagus in lateral view. Scale bars: 0.5 mm.
FIGURE 1 in Strobilanthes medahinnensis (Acanthaceae) a new species, based on morphological and molecular data, from the Peak Wilderness Nature Reserve, Sri Lanka
FIGURE 1. Strobilanthes medahinnensis and Strobilanthes anceps recorded localities in Sri Lanka.
Figure 17 in Spider diversity in Fanjing Mountain Nature Reserve, Guizhou, China, II: Clubionidae (Araneae)
Figure 17. Clubiona subcylindrata Wang, Chen & Zhang ZS, sp. nov., holotype male. A. Habitus, dorsal view. B–D. Left pedipalp. B. Prolateral view; C. Ventral view; D. Retrolateral view. Scale bars: A = 2 mm; B–D = 0.5 mm.
Figure 18 in Spider diversity in Fanjing Mountain Nature Reserve, Guizhou, China, II: Clubionidae (Araneae)
Figure 18. Clubiona subrostrata Zhang & Hu, 1991. A–B. Habitus, dorsal view. A. Male; B. Female. C–D. Left male pedipalp. C. Ventral view; D. Retrolateral view. E–F. Epigyne. E. Ventral view; F. Dorsal view. Scale bars: A–B = 2 mm; C–D = 0.5 mm; E–F = 0.2 mm.
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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)
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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.