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Рис. 1. Карта-схема района иссΛеΑования и места сбора материаΛа: 1 — район косы НюкΛя; 2 — бухта Гертнера; 3 — бухта Батарейная; 4 — бухта Нагаева; 5 — Амахтонский заΛив, вбΛизи устья р. Армань in Species diversity and dominant species of the littoral area fishes of Tauysk bay, the Sea of Okhotsk
Рис. 1. Карта-схема района иссΛеΑования и места сбора материаΛа: 1 — район косы НюкΛя; 2 — бухта Гертнера; 3 — бухта Батарейная; 4 — бухта Нагаева; 5 — Амахтонский заΛив, вбΛизи устья р. Армань
Рис. 2.Соотношение виΑов рыб на ΛитораΛи Тауйской губы: А — по их зоогеографической принаΑΛежности; Б — по принаΑΛежности к ихтиоцену. Обозначения см. в табΛице 1 Fig. 2. Ratio of fish species in the littoral zone of Tauysk Bay: А — according to their zoogeographic affiliation; Б — by belonging to the ichthyocene. Designations are similar to those in Table 1. in Species diversity and dominant species of the littoral area fishes of Tauysk bay, the Sea of Okhotsk
Рис. 2.Соотношение виΑов рыб на ΛитораΛи Тауйской губы: А — по их зоогеографической принаΑΛежности; Б — по принаΑΛежности к ихтиоцену. Обозначения см. в табΛице 1 Fig. 2. Ratio of fish species in the littoral zone of Tauysk Bay: А — according to their zoogeographic affiliation; Б — by belonging to the ichthyocene. Designations are similar to those in Table 1.
Рис. 2. ЭкоΛого-географическая характеристика зоопΛанктона техногенных воΑоемов Fig. 2. Ecological and geographical characteristics of zooplankton in technogenic reservoirs in Zooplankton species diversity in technogenic reservoirs of the Southeastern Transbaikalia
Рис. 2. ЭкоΛого-географическая характеристика зоопΛанктона техногенных воΑоемов Fig. 2. Ecological and geographical characteristics of zooplankton in technogenic reservoirs
Рис. 1. Daphnia (D.) curvirostris. Партеногенетическая самка: А — гоΛова с боковой стороны, Б — постабΑомен Fig. 1. Daphnia (D.) curvirostris. Parthenogenetic female: А — head, lateral view, Б — postabdomen, lateral view in Zooplankton species diversity in technogenic reservoirs of the Southeastern Transbaikalia
Рис. 1. Daphnia (D.) curvirostris. Партеногенетическая самка: А — гоΛова с боковой стороны, Б — постабΑомен Fig. 1. Daphnia (D.) curvirostris. Parthenogenetic female: А — head, lateral view, Б — postabdomen, lateral view
Рис. 3. ÀенΑрограмма биоценотического схоΑства зоопΛанктона техногенных воΑоемов: 4–6 — ШерΛовогорское месторожΑение:4 — ШГ-10 — карьерное озеро, 5 — ШГ-8 — озеро поΑ отваΛами руΑного карьера, 6 — ШГ-9 — поΑпруΑное озеро у пгт. ШерΛовая Гора;7–8 — ОрΛовское месторожΑение: 7 — ОР-1, ОР-3 — хвостохраниΛище, 8 — ОР-7 — озеро ниже хвостохраниΛища; 9 — МаΛокуΛунΑинское месторожΑение: МК-2 — поΑпруΑное озеро р. МаΛая КуΛинΑа; 10 — Спокойнинское месторожΑение: ОР-8 — хвостохраниΛище; 11 — Жипкошинское месторожΑение: ЖП-2 — карьер Fig. 3. Dendrogram of zooplankton biocenotic similarity in technogenic reservoirs: 4–6 — Sherlovogorskoye deposit: 4 — ShG-10 pit lake, 5 — ShG-8, a lake under the dumps of an ore quarry, 6 — ShG-9 dammed lake near the village of Sherlovaya Gora;7 –8 — Orlovskoye deposit: O R-1, OR-3 — tailing dump, OR-7— lake below the tailing dump; 9 — Malokulundinskoye deposit: MK-2 — dammed lake on the Malaya Kulinda River; 10 — Spokoininskoye deposit: OR-8 — tailing dump; 11 — Zhipkoshinskoye deposit; ZhP-2 — pit lake in Zooplankton species diversity in technogenic reservoirs of the Southeastern Transbaikalia
Рис. 3. ÀенΑрограмма биоценотического схоΑства зоопΛанктона техногенных воΑоемов: 4–6 — ШерΛовогорское месторожΑение:4 — ШГ-10 — карьерное озеро, 5 — ШГ-8 — озеро поΑ отваΛами руΑного карьера, 6 — ШГ-9 — поΑпруΑное озеро у пгт. ШерΛовая Гора;7–8 — ОрΛовское месторожΑение: 7 — ОР-1, ОР-3 — хвостохраниΛище, 8 — ОР-7 — озеро ниже хвостохраниΛища; 9 — МаΛокуΛунΑинское месторожΑение: МК-2 — поΑпруΑное озеро р. МаΛая КуΛинΑа; 10 — Спокойнинское месторожΑение: ОР-8 — хвостохраниΛище; 11 — Жипкошинское месторожΑение: ЖП-2 — карьер Fig. 3. Dendrogram of zooplankton biocenotic similarity in technogenic reservoirs: 4–6 — Sherlovogorskoye deposit: 4 — ShG-10 pit lake, 5 — ShG-8, a lake under the dumps of an ore quarry, 6 — ShG-9 dammed lake near the village of Sherlovaya Gora;7 –8 — Orlovskoye deposit: O R-1, OR-3 — tailing dump, OR-7— lake below the tailing dump; 9 — Malokulundinskoye deposit: MK-2 — dammed lake on the Malaya Kulinda River; 10 — Spokoininskoye deposit: OR-8 — tailing dump; 11 — Zhipkoshinskoye deposit; ZhP-2 — pit lake
Fig. 1. Samples were identified within a in Diversity of Cryptosporidium in brush-tailed rock-wallabies (Petrogale penicillata) managed within a species recovery programme
Fig. 1. Samples were identified within a phylogenetic framework with the tree constructed using neighbour-joining with bootstrap test (1,000 replicates, displayed at nodes) using the 18S rRNA locus (878 bp). KV denotes Kangaroo Valley.
Fig. 6 in Multiple Environmental Factors Increase the Niche Complexity and Species Diversity of Brachyuran Crabs in an Intertidal Algal Reef Ecosystem in Northwestern Taiwan.
Fig. 6. The box plot of abundance of all crab species with a carapace width smaller than 10 mm across the six sites (A) and seasons (B) in the reef habitat. The core volumes are 950 cm3.
Fig. 2 in Multiple Environmental Factors Increase the Niche Complexity and Species Diversity of Brachyuran Crabs in an Intertidal Algal Reef Ecosystem in Northwestern Taiwan.
Fig. 2. The species compositions in all six study sites in the algal reef habitat. Each bar represents the total number of species recorded at each site. Family is the lowest taxonomic category in this figure.
Fig. 3 in Multiple Environmental Factors Increase the Niche Complexity and Species Diversity of Brachyuran Crabs in an Intertidal Algal Reef Ecosystem in Northwestern Taiwan.
Fig. 3. Relationship between the species richness and local contribution to beta diversity (LCBD) indexes among the six sites in the algal reef habitat.
Fig. 5 in Multiple Environmental Factors Increase the Niche Complexity and Species Diversity of Brachyuran Crabs in an Intertidal Algal Reef Ecosystem in Northwestern Taiwan.
Fig. 5. The box plot of abundance of all crab species with carapace width larger than 10 mm for three factors: A: season; B: tidal and sampling time; C: study site and sampling time. The gray bar is daytime; the dark gray bar is night. The high tidal level is the edge between the sand and reef; the medium tidal level is at the algal reef 1 m below sea level.
Fig. 2 in Taxonomic survey on ciliate diversity in eastern area of Kangwon-province, Korea: Brief records of fifteen species unrecorded from Korea
Fig. 2. Protargolstained specimens, ventral views. A. Frontonia depressa, 65 μm in length; B. Anteholosticha distyla, 125 μm in length; C. Periholosticha paucicirrata, 70 μm in length; D. Saudithrix terricola, 220 μm in length; E. Oxytrichella mahadjacola, 35 μm in length; F. Notohymena antarctica, 80 μm in length; G. Phacodinium metchnicoffi, 100 μm in length.
species according to Broadley (1994). These may well be the result of continuing confusion over the placement of Keta. Given the localities known from Lunda Norte, it seems likely that the species occurs in other northern regions of Angola. MAP 363. Distribution of Scaphiophis albopunctatus in Angola. in Diversity and Distribution of the Amphibians and Terrestrial Reptiles of Angola Atlas of Historical and Bibliographic Records (1840-2017)
species according to Broadley (1994). These may well be the result of continuing confusion over the placement of Keta. Given the localities known from Lunda Norte, it seems likely that the species occurs in other northern regions of Angola. MAP 363. Distribution of Scaphiophis albopunctatus in Angola.
Telescopus finkeldeyi Haacke, 2013 DAMARA TIGER SNAKE Telescopus finkeldeyi Haacke 2013:281. Holotype: TM 53542 (collector J.A. van Rooyen). Type locality: "Rössing Uranium mine area, Swako- mund [sic] district (2214Db) Namibia." Global conservation status (IUCN): Not Evaluated. Global distribution: The species is known from Angola and Namibia. Ocurrences in Angola (Map 364): The species occurs in southwestern Angola. Namibe: "5 km north Namibé" [-15.20000, 12.15000] (Haacke 2013:285). Taxonomic and distributional notes: Some earlier records of T. semiannulatus polystictus in Namibia actually refer to this recently described species. MAP 364. Distribution of Telescopus finkeldeyi in Angola. in Diversity and Distribution of the Amphibians and Terrestrial Reptiles of Angola Atlas of Historical and Bibliographic Records (1840-2017)
Telescopus finkeldeyi Haacke, 2013 DAMARA TIGER SNAKE Telescopus finkeldeyi Haacke 2013:281. Holotype: TM 53542 (collector J.A. van Rooyen). Type locality: "Rössing Uranium mine area, Swako- mund [sic] district (2214Db) Namibia." Global conservation status (IUCN): Not Evaluated. Global distribution: The species is known from Angola and Namibia. Ocurrences in Angola (Map 364): The species occurs in southwestern Angola. Namibe: "5 km north Namibé" [-15.20000, 12.15000] (Haacke 2013:285). Taxonomic and distributional notes: Some earlier records of T. semiannulatus polystictus in Namibia actually refer to this recently described species. MAP 364. Distribution of Telescopus finkeldeyi in Angola.
with Hemidactylus brookii angulatus Hallowell, 1852. The species was recently recorded from Quiçama National Park in Luanda Province (M. Marques, L. Ceríaco, A. Bauer and D. Blackburn pers. obs. 2015, 2016). MAP 130. Distribution of Hemidactylus bayonii in Angola. in Diversity and Distribution of the Amphibians and Terrestrial Reptiles of Angola Atlas of Historical and Bibliographic Records (1840-2017)
with Hemidactylus brookii angulatus Hallowell, 1852. The species was recently recorded from Quiçama National Park in Luanda Province (M. Marques, L. Ceríaco, A. Bauer and D. Blackburn pers. obs. 2015, 2016). MAP 130. Distribution of Hemidactylus bayonii in Angola.
ly a misidentification as today the recognized distribution of this species is restricted to western Africa. It is possible that the Cabinda frog may be referable to Phrynobatrachus auritus Boulenger, 1900. MAP 96. Distribution of Phrynobatrachus plicatus in Angola. in Diversity and Distribution of the Amphibians and Terrestrial Reptiles of Angola Atlas of Historical and Bibliographic Records (1840-2017)
ly a misidentification as today the recognized distribution of this species is restricted to western Africa. It is possible that the Cabinda frog may be referable to Phrynobatrachus auritus Boulenger, 1900. MAP 96. Distribution of Phrynobatrachus plicatus in Angola.
which has priority over all other available names (Lanza and Broadley 2014). More recently, Broadley et al. (2018) split Gonionotophis into four genera, with brussauxi being the only Angolan species remaining in the genus. MAP 291. Distribution of Gonionotophis brussauxi in Angola. in Diversity and Distribution of the Amphibians and Terrestrial Reptiles of Angola Atlas of Historical and Bibliographic Records (1840-2017)
which has priority over all other available names (Lanza and Broadley 2014). More recently, Broadley et al. (2018) split Gonionotophis into four genera, with brussauxi being the only Angolan species remaining in the genus. MAP 291. Distribution of Gonionotophis brussauxi in Angola.
Fungal species diversity in French bread sourdoughs made of organic wheat flour
<p>Datasets describing the fungal species diversity, microbial density and acidity of French sourdoughs as well as the diversity of bread-making practices.The species diversity of 14 sourdoughs collected from bakeries located all over France was analyzed. Bakeries were chosen to represent diverse bakery practices and included bakers and farmer-bakers. Both non-culture-based (pyrosequencing of Internal Transcribed Spacer 1 amplicons) and culture-based methods were used.</p> <p>The data were collected, analyzed, and reported within the following publication :</p> <p>Charlotte Urien, Judith Legrand, Pierre Montalent, Serge Casaregola and Delphine Sicard. Fungal species diversity in French bread sourdoughs made of organic wheat flour. Frontier in Microbiology. Submitted</p>
Fig. 4 in The Trichoptera diversity of Nyungwe National Park, Rwanda, with description of a new species in the family Pisuliidae
Fig. 4. Silvatares laetae Ngirinshuti & Johanson sp. nov., ♂, holotype. A. Right forewing. B. Right hind wing. C. Right forewing, underside, showing long golden hairs. Scale bar = 1 mm.
Fig. 20 in Diversity and distribution of Pleioplectron Hutton cave wētā (Orthoptera: Rhaphidophoridae: Macropathinae), with the synonymy of Weta Chopard and the description of seven new species
Fig. 20. Tangle of Pleioplectron thomsoni (Chopard, 1923) comb. nov. on cave ceiling. Trotters Gorge, Otago.
Fig. 18 in Diversity and distribution of Pleioplectron Hutton cave wētā (Orthoptera: Rhaphidophoridae: Macropathinae), with the synonymy of Weta Chopard and the description of seven new species
Fig. 18. Known distribution of cave wētā in the genus Pleioplectron Hutton, 1896. A. North Island, New Zealand, showing the distribution of P. hudsoni. B–J. South Island, New Zealand, showing the distribution of the remaining nine species.
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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.