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154 results for “relict species”
FIGURE 6 in Family Panorpodidae (Insecta, Mecoptera) from Baltic amber (upper Eocene): new species, redescription and palaeogeographic remarks of relict scorpionflies
FIGURE 6. Female abdomen of Panorpodes brevicauda: A, photograph; B, latero-ventral view.
FIGURE 7 in Family Panorpodidae (Insecta, Mecoptera) from Baltic amber (upper Eocene): new species, redescription and palaeogeographic remarks of relict scorpionflies
FIGURE 7. Panorpodes hageni, holotype.
FIGURE 9 in Family Panorpodidae (Insecta, Mecoptera) from Baltic amber (upper Eocene): new species, redescription and palaeogeographic remarks of relict scorpionflies
FIGURE 9. Panorpodes weitschati sp. nov., holotype.
FIGURE 1 in Family Panorpodidae (Insecta, Mecoptera) from Baltic amber (upper Eocene): new species, redescription and palaeogeographic remarks of relict scorpionflies
FIGURE 1. Present and past distribution of family Panorpodidae.
FIGURE 1 in Relict populations of Diaphanosoma (Cladocera: Ctenopoda) in the Chadian Sahara, with the description of a new species
FIGURE 1. West bank of Lake Bokou while the sample for the present study was being taken.
Figure 5 from: Liebherr JK (2017) Bryanites graeffii sp. n. (Coleoptera, Carabidae): museum rediscovery of a relict species from Samoa. Zoosystematics and Evolution 93(1): 1-11. https://doi.org/10.3897/zse.93.10802
Figure 5 - Notagonum kanak female (MNHN), label data: Ncalédonie / ile d. Pins / f. Faustien // MUSEUM PARIS / Ex. Coll. M. MAINDRON / Coll. G. BABAULT 1930 // Colpodes / kanak / Fauvel dedit 1906 (card mounted, abdomen removed, female genitalia and reproductive tract in vial on pin).
Figure 3 from: Liebherr JK (2017) Bryanites graeffii sp. n. (Coleoptera, Carabidae): museum rediscovery of a relict species from Samoa. Zoosystematics and Evolution 93(1): 1-11. https://doi.org/10.3897/zse.93.10802
Figure 3 - Strict consensus cladogram of 49 taxa of Pacific platynine carabid beetles. Type species, where included, indicated by asterisks. See text for further explanation of cladistic analysis. Distributional areas of species include: As, Asia; Au, Australia; F, Fiji; HI, Hawaiian Islands; I, India including Sri Lanka; Jp, Japan; Jv, Java; NC, New Caledonia; NG, New Guinea; NZ, New Zealand; Ph, Philippine Islands; R, Rapa; Sa, Samoa; So, Solomon Islands; Sunda, Sunda Islands; T, Tahiti and Society Islands; V, Vanuatu.
Figure 4 from: Liebherr JK (2017) Bryanites graeffii sp. n. (Coleoptera, Carabidae): museum rediscovery of a relict species from Samoa. Zoosystematics and Evolution 93(1): 1-11. https://doi.org/10.3897/zse.93.10802
Figure 4 - Male aedeagus, internal sac everted, of Bryanites graeffii male holotype, right lateral view. Abbreviations include: ae, aedeagal median lobe; is, internal sac; lp, left paramere; rp, right paramere.
FIGURES 1, 2 in Pterostichus neilgaimani sp. nov., a new species of ground beetles (Coleoptera: Carabidae) from relict sacred grove in Eastern Georgia
FIGURES 1, 2. Pterostichus neilgaimani sp. nov., male, holotype, 1—dorsal view, 2—ventral view.
Figure 6 from: Ramos A, Bandala VM, Montoya L (2017) A new species and a new record of Laccaria (Fungi, Basidiomycota) found in a relict forest of the endangered Fagus grandifolia var. mexicana. MycoKeys 27: 77-94. https://doi.org/10.3897/mycokeys.27.21326
Figure 6 - Laccaria trichodermophora, a basidiospores b pleurocystidia c basidia d pileipellis e cheilocystidia a–e Montoya 4393. Scale bars: 5 µm (a); 10 µm (b–c, e); 25 µm (d).
Figure 3 from: Ramos A, Bandala VM, Montoya L (2017) A new species and a new record of Laccaria (Fungi, Basidiomycota) found in a relict forest of the endangered Fagus grandifolia var. mexicana. MycoKeys 27: 77-94. https://doi.org/10.3897/mycokeys.27.21326
Figure 3 - Laccaria squarrosa, lamellae attachment and habit. a, c DM 121 b DM 63 (holotype) d DM 93. Scale bars: 10 mm.
Figure 5 from: Ramos A, Bandala VM, Montoya L (2017) A new species and a new record of Laccaria (Fungi, Basidiomycota) found in a relict forest of the endangered Fagus grandifolia var. mexicana. MycoKeys 27: 77-94. https://doi.org/10.3897/mycokeys.27.21326
Figure 5 - Laccaria squarrosa, a–b basidiospores under SEM c–f details of the pileipellis c–d cutis (arrow indicating scales) e–f details of the pileipellis scales c–f DM 63 (holotype). Scale bars: 5 µm (a); 2 µm (b); 100 µm (c); 20 µm (d); 50 µm (e–f).
Figure 4 from: Ramos A, Bandala VM, Montoya L (2017) A new species and a new record of Laccaria (Fungi, Basidiomycota) found in a relict forest of the endangered Fagus grandifolia var. mexicana. MycoKeys 27: 77-94. https://doi.org/10.3897/mycokeys.27.21326
Figure 4 - Laccaria squarrosa, a basidiospores b pleurocystidia c cheilocystidia d basidia a, c DM 121 b DM 63 (holotype) d DM 93. Scale bars: 5 µm (a); 10 µm (b–d).
Figure 2 from: Ramos A, Bandala VM, Montoya L (2017) A new species and a new record of Laccaria (Fungi, Basidiomycota) found in a relict forest of the endangered Fagus grandifolia var. mexicana. MycoKeys 27: 77-94. https://doi.org/10.3897/mycokeys.27.21326
Figure 2 - Laccaria squarrosa, basidiomes. a, b habit c, d pileus surface details a, c DM 121 b DM 63 (holotype) d DM 93. Scale bars: 10 mm.
Figure 1 from: Ramos A, Bandala VM, Montoya L (2017) A new species and a new record of Laccaria (Fungi, Basidiomycota) found in a relict forest of the endangered Fagus grandifolia var. mexicana. MycoKeys 27: 77-94. https://doi.org/10.3897/mycokeys.27.21326
Figure 1 - Phylogenetic relationships within Laccaria species inferred from the combined ITS and LSU sequence data by maximum likelihood method. Tree with the highest log likelihood (–4163.7219), the percentage of trees in which the associated taxa clustered together (only values ≥ 70% are considered) is shown next to the branches, followed by the posterior probabilities (only values ≥ 0.90 are indicated) obtained after Bayesian inference. The tree is drawn to scale, with branch lengths measured in the number of substitutions per site.
Figure 7 from: Ramos A, Bandala VM, Montoya L (2017) A new species and a new record of Laccaria (Fungi, Basidiomycota) found in a relict forest of the endangered Fagus grandifolia var. mexicana. MycoKeys 27: 77-94. https://doi.org/10.3897/mycokeys.27.21326
Figure 7 - Laccaria trichodermophora, a–b basidiospores under SEM c–d pileipellis a, c–d Montoya 4393 b Bandala 4282. Scale bars: 1 µm (a–b); 50 µm (c); 25 µm (d).
Figure 5 from: Townsend J, Medina-Flores M, Wilson L, Jadin R, Austin J (2013) A relict lineage and new species of green palm-pitviper (Squamata, Viperidae, Bothriechis) from the Chortís Highlands of Mesoamerica. ZooKeys 298: 77-105. https://doi.org/10.3897/zookeys.298.4834
Figure 5 - Paratypes of Bothriechis guifarroi in life; A USNM 579874, green-phase juvenile B USNM 579873, brown-phase juvenile C close-up of head of USNM 579874 D close-up of head of USNM 579873 E USNM 579875, female paratype photographed in situ at Cerro El Chino, 1,420 m elevation. Photographs by JHT.
Figure 6 from: Townsend J, Medina-Flores M, Wilson L, Jadin R, Austin J (2013) A relict lineage and new species of green palm-pitviper (Squamata, Viperidae, Bothriechis) from the Chortís Highlands of Mesoamerica. ZooKeys 298: 77-105. https://doi.org/10.3897/zookeys.298.4834
Figure 6 - Variation in dorsal head scales among paratypes of Bothriechis guifarroi; A USNM 579877, adult female B MVZ 269305, adult male C USNM 579876, adult female D USNM 579875, adult female E USNM 579878, adult male F USNM 579873, neonate G USNM 579874, neonate. Photographs by JHT.
Figure 7 from: Townsend J, Medina-Flores M, Wilson L, Jadin R, Austin J (2013) A relict lineage and new species of green palm-pitviper (Squamata, Viperidae, Bothriechis) from the Chortís Highlands of Mesoamerica. ZooKeys 298: 77-105. https://doi.org/10.3897/zookeys.298.4834
Figure 7 - Geographic distribution of selected Bothriechis species and populations discussed in the text; localities are based on data published herein and those of Campbell and Lamar (2004), McCranie (2011a), and Savage (2002); red diamond = type locality of Bothriechis guifarroi in Refugio de Vida Silvestre Texíguat; black diamond = referred population of Bothriechis guifarroi from Parque Nacional Pico Bonito; circles = Bothriechis sp. inquirenda populations for the Sierra de Sulaco; squares = Bothriechis marchi; triangles = Bothriechis thalassinus, inverted triangles = Bothriechis lateralis.
Figure 4 from: Townsend J, Medina-Flores M, Wilson L, Jadin R, Austin J (2013) A relict lineage and new species of green palm-pitviper (Squamata, Viperidae, Bothriechis) from the Chortís Highlands of Mesoamerica. ZooKeys 298: 77-105. https://doi.org/10.3897/zookeys.298.4834
Figure 4 - Habitat in the vicinity of the type locality of Bothriechis guifarroi,La Liberación, Refugio de Vida Silvestre Texíguat, Honduras; A riparian vegetation along the Río Jilamito, 1,015 m elevation B small seepage pond near the top of Cerro El Chino, 1,380 m elevation C premontane rainforest with the clearing aroundLa Liberación (1,030 m elevation) visible in the foreground. Photographs by JHT.
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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.