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346 results for “cave diversity”
FIGURE 8. Polystichum malipoense Li Bing Zhang, M.Q in Eight new species of Polystichum (subg. Haplopolystichum; Dryopteridaceae) from limestone caves in Guangdong and Yunnan, China, with reference to species diversity in the karst terrains at high elevations in subtropical areas
FIGURE 8. Polystichum malipoense Li Bing Zhang, M.Q.Han & Yan Liu.—A. Two leaves.—B. Portion of abaxial lamina.
FIGURE 7. Polystichum malipoense Li Bing Zhang, M.Q in Eight new species of Polystichum (subg. Haplopolystichum; Dryopteridaceae) from limestone caves in Guangdong and Yunnan, China, with reference to species diversity in the karst terrains at high elevations in subtropical areas
FIGURE 7. Polystichum malipoense Li Bing Zhang, M.Q.Han & Yan Liu.—A. Habitat and plant.—B. Adaxial view of leaves.—C. Abaxial view of lamina.—D. Portion of abaxial lamina.—E. Adaxial view of pinna.—F. Portions of petioles.—G. Portion of pinna.—H, K. Polar and equatorial views of spores with and without perispores under SEM.—J. Inside view of the cave where the new species was discovered.
FIGURE 6. Polystichum hanmengqii Li in Eight new species of Polystichum (subg. Haplopolystichum; Dryopteridaceae) from limestone caves in Guangdong and Yunnan, China, with reference to species diversity in the karst terrains at high elevations in subtropical areas
FIGURE 6. Polystichum hanmengqii Li Bing Zhang & Yan Liu.—A. Two leaves.—B. Portion of adaxial lamina.—C. Portion of abaxial lamina.
FIGURE 5. Polystichum hanmengqii Li in Eight new species of Polystichum (subg. Haplopolystichum; Dryopteridaceae) from limestone caves in Guangdong and Yunnan, China, with reference to species diversity in the karst terrains at high elevations in subtropical areas
FIGURE 5. Polystichum hanmengqii Li Bing Zhang & Yan Liu.—A. Adaxial view of lamina.—B. Abaxial view of lamina.—C. Portion of lamina.—D. Abaxial view of pinna.—E. Portion of rachis with pinna.—F. Portion of pinna.—G. Portion of rachis with portion of pinna.—H, K. Equatorial view of spore under SEM.—J. Outside view of the cave where the new species was discovered.
FIGURE 1. Polystichum deltatum Li Bing Zhang, M.Q in Eight new species of Polystichum (subg. Haplopolystichum; Dryopteridaceae) from limestone caves in Guangdong and Yunnan, China, with reference to species diversity in the karst terrains at high elevations in subtropical areas
FIGURE 1. Polystichum deltatum Li Bing Zhang, M.Q.Han & Yan Liu.—A. Habitat and plant.—B, G. Portions of rachises with pinnae.— C. Lamina.—D. Portion of lamina.—E. Indusium under SEM.—F. Portions of petioles.—H. Portion of pinna.—J, L. Polar views of spores with and without perispores under SEM.—K. Outside view of the cave where the new species was discovered.
FIGURE 4. Polystichum gejiuense Li Bing Zhang, M.Q in Eight new species of Polystichum (subg. Haplopolystichum; Dryopteridaceae) from limestone caves in Guangdong and Yunnan, China, with reference to species diversity in the karst terrains at high elevations in subtropical areas
FIGURE 4. Polystichum gejiuense Li Bing Zhang, M.Q.Han & Yan Liu.—A. Habit.—B. Portion of abaxial lamina.
FIGURE 3. Polystichum gejiuense Li Bing Zhang, M.Q in Eight new species of Polystichum (subg. Haplopolystichum; Dryopteridaceae) from limestone caves in Guangdong and Yunnan, China, with reference to species diversity in the karst terrains at high elevations in subtropical areas
FIGURE 3. Polystichum gejiuense Li Bing Zhang, M.Q.Han & Yan Liu.—A. Habitat and plant.—B, C, E. Portions of lamina.—D, F. Portions of rachises with pinnae.—G, K. Polar and equatorial views of spores with and without perispores under SEM.—H. Indusium.—J. Inside view of the cave where the new species was discovered.
FIGURE 2. Polystichum deltatum Li Bing Zhang, M.Q in Eight new species of Polystichum (subg. Haplopolystichum; Dryopteridaceae) from limestone caves in Guangdong and Yunnan, China, with reference to species diversity in the karst terrains at high elevations in subtropical areas
FIGURE 2. Polystichum deltatum Li Bing Zhang, M.Q.Han & Yan Liu.—A. Habit.—B. Portion of abaxial lamina.
Figures 8 in REVIEW Diplura in caves: diversity, ecology, evolution and biogeography
Figures 8. Distribution of cave-adapted diplurans: A, worldwide; B, Euro-Mediterranean region. In yellow: karst areas (source: Chen et al., 2017). In orange: deserts (source: Olson & Dinerstein, 2002). In blue: ice cover during the Last Glacial Maximum (source: Ehlers et al., 2011). In black: hypogenic karst areas (source: Klimchouk, 2007).
Figure 1 in REVIEW Diplura in caves: diversity, ecology, evolution and biogeography
Figure 1. Maximum likelihood (ML) trees of Diplura. A, ML tree obtained from 18S rDNA data available in Genbank. B, ML tree obtained from COI data. Only bootstrap support values above 70 are shown.
Figure 7 in REVIEW Diplura in caves: diversity, ecology, evolution and biogeography
Figure 7. Pretarsal adaptations in cave-adapted campodeid species: A, Lepidocampa beltrani from Caverna Batu, La Reúnion Island, France; B, Turkmenocampa mirabilis from Kaptarhana cave, Koytendog District, Lebap, Turkmenistan; C, Anisuracampa sp. from Win Twin Cave, Ywangan, Shan State, Myanmar; D, Patrizicampa sardoa from Grotta di Mesu'e Monte, Baunei, Sardinia, Italy.
Figure 3. Cave-adapted dipluran species described from 1871 in REVIEW Diplura in caves: diversity, ecology, evolution and biogeography
Figure 3. Cave-adapted dipluran species described from 1871 to 2020; photographs of the authors arranged from right to left and from top to bottom: Alpheus Spring Packard, Armand Viré, Filippo Silvestri, Jean Robert Denis, Petr Wygodzinsky, Boris Pimenovitch Chevrizov, Bruno Condé, Jean Pagés and Mark Alan Muegge. Courtesy of Bernd Hauser, Sergei Golovatch and Ernest C. Bernard.
Figures 4 in REVIEW Diplura in caves: diversity, ecology, evolution and biogeography
Figures 4. Two cave-adapted Diplura: A, Plusiocampa hoffmanni Sendra & Paragamian, 2020 from Spilaio Sfento Trypa Cave, Crete, Greece (author: Kaloust Paragamian); B, Gollumjapyx smeagol from Avenc d'En Serenge, Cabanes, Castellón, Spain. Courtesy of José María Azkárraga.
Figure 6 in REVIEW Diplura in caves: diversity, ecology, evolution and biogeography
Figure 6. Olfactory chemoreceptor of the last antennomere in soil-adapted species: A, Campodea (Paurocampa) suensoni Tuxen, 1930 from Dos Aguas, Valencia, Spain; and cave-adapted species: B, Cycladiacampa irakleiae Sendra, 2020 from Spilaio Ioanni Cave, Irakleia Island, Greece; C, Pacificampa daidarabotchi Sendra, 2018 from Mejito-do Cave, Kyushu Island, Japan; D, undescribed Plusiocampinae from Huitième Ciel Cave. Banqiao, Hubei, China; E, Turkmenocampa mirabilis Sendra & Stoev, 2017 from Kaptarhana Cave, Koytendog District, Lebap, Turkmenistan; F, Remycampa herbanica from Montaña Blanca Cave, Fuerteventura Island, Spain.
Figure 5 in REVIEW Diplura in caves: diversity, ecology, evolution and biogeography
Figure 5. Bar chart showing the relative number of soil (orange) and cave-adapted (blue) dipluran species per family, subfamily and genus.
FIGURE 31. Jiudu Cave I in A contribution to cavernicolous beetle diversity of South China Karst: eight new genera and fourteen new species (Coleoptera: Carabidae: Trechini)
FIGURE 31. Jiudu Cave I, the type locality of Dongodytes (s. str.) mingruoae n. sp. A. entrance; B. several plants of Begonia edulis Lévl., 1909; C. a running specimen of Dongodytes (s. str.) mingruoae n. sp. in cave.
FIGURE 22. Suolue Cave I in A contribution to cavernicolous beetle diversity of South China Karst: eight new genera and fourteen new species (Coleoptera: Carabidae: Trechini)
FIGURE 22. Suolue Cave I, the type locality of Pangaphaenops seraphicus n. gen., n. sp. A. entrance; B-E, stalactic beauties in the cave; F. an individual of Pangaphaenops seraphicus n. gen., n. sp.; G. a cricket of the genus Tachycines; H. millipedes, a cluster of Glyphiulus sp., with several individuals of Pacidesmus sp.
FIGURE 125 in Diversity of cave-dwelling pseudoscorpions from Guizhou in China, with the description of twenty-four new species of the genus Tyrannochthonius (Pseudoscorpiones, Chthoniidae)
FIGURE 125. Tyrannochthonius yanshanensis sp. nov., holotype female: A. Left chela (lateral view), with details of teeth and with trichobothrial pattern; B. Left chela (dorsal view); C. Leg I (lateral view); D. Leg IV (lateral view). Scale bars: 0.10 mm.
FIGURE 124 in Diversity of cave-dwelling pseudoscorpions from Guizhou in China, with the description of twenty-four new species of the genus Tyrannochthonius (Pseudoscorpiones, Chthoniidae)
FIGURE 124. Tyrannochthonius yanshanensis sp. nov., holotype female: A. Carapace (dorsal view); B. Left chelicera (dorsal view), with details of teeth; C. Coxal spines on coxae II (ventral view); D. Left pedipalp (minus chela, dorsal view); E. Rallum. Scale bars: 0.10 mm.
FIGURE 114 in Diversity of cave-dwelling pseudoscorpions from Guizhou in China, with the description of twenty-four new species of the genus Tyrannochthonius (Pseudoscorpiones, Chthoniidae)
FIGURE 114. Tyrannochthonius quattuor sp. nov., holotype male: A. Carapace (dorsal view); B. Left chelicera (dorsal view), with details of teeth; C. Coxal spines on coxae II (ventral view); D. Left pedipalp (minus chela, dorsal view); E. Rallum. Scale bars: 0.20 mm (A–B, D); 0.10 mm (C, E).
ScienceDex guides
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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.