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90 results for “relic”
Fig. 6 in A time relic: a new species of dwarf boa, Tropidophis Bibron, 1840 (Serpentes: Amerophidia), from the Upper Amazon Basin
Fig. 6. Dorsal view of Tropidophis cacuangoae sp. nov., ♀, paratype (DHMECN 15893) in life. Photograph credits: Danilo Medina.
Fig. 4 in A time relic: a new species of dwarf boa, Tropidophis Bibron, 1840 (Serpentes: Amerophidia), from the Upper Amazon Basin
Fig. 4. Lateral view of Tropidophis cacuangoae sp. nov., ♂, holotype (DHMECN 16725). Scale bar = 10 mm.
Fig. 1 in A time relic: a new species of dwarf boa, Tropidophis Bibron, 1840 (Serpentes: Amerophidia), from the Upper Amazon Basin
Fig. 1. Geographic distribution of mainland species of Tropidophis Bibron, 1840 in South America. Note the disjunct distribution pattern, with two allopatric groups: Andes mountain range (Tropidophis cacuangoae sp. nov, T. taczanowskyi (Steindachner, 1880)) and Atlantic Forest range (T. grapiuna Curcio et al., 2012, T. preciosus Curcio et al., 2012, T. paucisquamis (Müller in Schenkel, 1901)). Inset photograph: T. cacuangoae sp. nov. (not to scale).
Fig. 3 in A time relic: a new species of dwarf boa, Tropidophis Bibron, 1840 (Serpentes: Amerophidia), from the Upper Amazon Basin
Fig. 3. Morphological phylogeny of Squamata, inferred under Maximum Parsimony. A. Overview of full topology (Amerophidia, red; Extant Serpentes, purple; Other Squamates, black). B. Ophidia topology (Amerophidia, red; node support is Bremer Support).
Fig. 5 in A time relic: a new species of dwarf boa, Tropidophis Bibron, 1840 (Serpentes: Amerophidia), from the Upper Amazon Basin
Fig. 5. Lateral view of Tropidophis cauangoae sp. nov., ♀, paratype (DHMECN 15893). Scale bar = 10 mm.
Fig. 2 in A time relic: a new species of dwarf boa, Tropidophis Bibron, 1840 (Serpentes: Amerophidia), from the Upper Amazon Basin
Fig. 2. Phylogenetic relationships of amerophid snakes, based on nuclear data. A. Maximum likelihood topology (lnL = -2175.559394), based on neurotrophin-3 gene fragments, scale bar of substitution rates, bars indicate Amerophidia clade, Poisson Tree Process (PTP) and Bayesian Poisson Tree Process (bPTP) coalescent-based species delimitation analyses. B. Uncorrected p-distances. C. Patristic distances as inferred for maximum likelihood tree.
Figs 1–4 in On a putative Gondwanan relic Afroserphus bicornis Masner (Hymenoptera: Proctotrupidae), with a description of the hitherto unknown female
Figs 1–4. General appearance of Afroserphus bicornis, light microscopy: (1, 2) female in lateral and dorsal aspects, (3, 4) female and male antennae.
Figs 5–10 in On a putative Gondwanan relic Afroserphus bicornis Masner (Hymenoptera: Proctotrupidae), with a description of the hitherto unknown female
Figs 5–10. Details of body structures of Afroserphus bicornis female, ESEM: (5) head with small frontal horns above antennal pits, (6) fore-tarsal claw, (7, 8) propodeum in lateral and dorsal aspects, (9) abdomen laterally, (10) ovipositor.
Datasets for "Relic gravitational waves from the chiral plasma instability in the standard cosmological model"
<pre>This directory contains an index.html file with links to the run directories and idl plotting routines with secondary data for the other figures for the paper "Relic Gravitational Waves from the Chiral Plasma Instability in the Standard Cosmological Model". If anything turns out to be incomplete, please email brandenb@nordita.org.</pre>
Data and R code from: Relics of beavers past: time and population density drive scale-dependent patterns of ecosystem engineering
Open the record for dataset details and reuse information.
Reproduction package for "ClG 0217+70: A massive merging galaxy cluster with a large radio halo and relics"
<p>This is the reproduction package for "ClG 0217+70: A massive merging galaxy cluster with a large radio halo and relics", which has been accepted for publication in A&A.</p> <p>To use this package, please read the README.</p> <p>This package is tested in an environment that contains:</p> <ul> <li>SPEX v3.06</li> <li>CIAO v4.12</li> <li>python 3.6.5 <ul> <li>numpy 1.14.3</li> <li>astropy 3.0.2</li> <li>astroquery 0.4</li> <li>scipy 1.1.0</li> <li>matplotlib 2.2.2</li> </ul> </li> </ul>
Coral Relic Casket
5th - 1st century BCE coral relic casket from the burial stupa site in Kantharodai, Northern Sri Lanka. Source: Objaverse 1.0 / Sketchfab
FIGURE 3 in The oldest species of the relic extant genus Mesochria from Eocene Fushun amber of China (Diptera: Anisopodidae: Mycetobiinae)
FIGURE 3. Geographical distribution of fossil and extant species of the genus Mesochria.
Relic Viking Axe
Son, your ancestors used this axe to explore the vast world. Now, on my deathbed, I give it to you to fulfill your task. The axe is said to have been forged in Valhalla itself and will help you in the darkest moments of your life. So I could start the adventure in your video game using this axe created in blender and ready to be used in graphics engines like Unity or UnrealEngine. You can see a Video here: [https://www.youtube.com/watch?v=cAigAFNNYkE](http://) Source: Objaverse 1.0 / Sketchfab
Data from: Using Antarctic subglacial relic landscapes to inform past ice sheet retreat in the warm Pliocene
Open the record for dataset details and reuse information.
Data from: Hybridization relics complicate barcode-based identification of species in earthworms
Introgressive hybridization results in mito-nuclear discordance which could obscure the delimitation of closely related taxa. Although such events are increasingly reported, they have been poorly studied in earthworms. Here, we propose a method for investigating the degree of introgressive hybridization between three taxa of the Allolobophora chlorotica aggregate within two field populations (N = 67 and N = 105) using a reference dataset including published DNA barcoding and microsatellite data of all known A. chlorotica lineages (N = 85). For this, we used both molecular phylogenetic and population genetic approaches. The test of correspondence between mitochondrial cytochrome c oxidase I (COI) lineages and clusters of nuclear microsatellite genotypes allowed individuals to be sorted in three categories (matching, admixed and non-matching) and additional markers (mitochondrial NADH dehydrogenase subunit 1, nuclear Histone 3 and Internal transcribed Spacer Region 2) were used for phylogenetic reconstructions in order to check assignments. Although 15 admixed individuals were observed, no early-generation hybrids were detected within the two populations. Interestingly, 14 non-matching individuals (i.e. with a mtDNA haplotype that did not correspond to their nuclear cluster) were detected, a pattern that would result after multiple generations of unidirectional hybridization of female from one taxon to male of the other taxon. Because earthworms are simultaneous hermaphrodites, these events of unidirectional hybridization suggest sterility of the male function in several crosses and highlight that some individuals can be misidentified if reliance is placed on COI barcodes alone. These findings could improve the use of these barcodes in earthworms for species delineation.
Relic bowl
Source: Objaverse 1.0 / Sketchfab
Low Poly Female Egyptian Relic / Amulet
A very low poly femal Egytian Relic / Amulet collectable Source: Objaverse 1.0 / Sketchfab
FIGURES 9–12 in Descriptions of two new notodontid species from the relic Fagus forests in northeastern Taiwan (Lepidoptera, Notodontidae)
FIGURES 9–12. Habitus of Pheosiopsis species. 9. P. s e ni Wu & Hsu sp. n., male, holotype (BMNH); 10. ditto, female, paratype (NTNU); 11. P. abalienata Kishida & Kobayashi, 2005, male, holotype (SCAU); 12. ditto, female (NSMT). Bar scale = 10 mm. Photo by Shipher Wu (9, 10, 12); Min Wang (11).
FIGURES 29–32 in Descriptions of two new notodontid species from the relic Fagus forests in northeastern Taiwan (Lepidoptera, Notodontidae)
FIGURES 29–32. Female genitalia of Pheosiopsis species. 29, 31. Female genitalia; 30, 32. Magnified image of signum; 29– 30. P. abalienata Kishida & Kobayashi, 2005 (NSMT). 31–32. P. s e ni Wu & Hsu sp. n., paratype (NTNU). Photo by Shipher Wu.
ScienceDex guides
Understand access before you commit
These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.