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291 results for “chaptering”
Fig. 23.2. Abudhabia radinskyi, AMNH 133509 in Chapter 23: Tedford's Gerbils from Afghanistan
Fig. 23.2. Abudhabia radinskyi, AMNH 133509. Skull in (A) dorsal, (B) ventral, (C) posterior, and
Fig. 22.2 in Chapter 22: Rodents from the Chinese Neogene: Biogeographic Relationships with Europe and North America
Fig. 22.2. Correlation of Chinese Neogene biochrons with those of Europe and North America.
Fig. 26.3. Phosphatochelys tedfordi, n. gen. and n in Chapter 26 Phosphatochelys, a New Side-Necked Turtle (Pelomedusoides: Bothremydidae) from the Paleocene of Morocco
Fig. 26.3. Phosphatochelys tedfordi, n. gen. and n. sp., restored line drawings of skull.
Fig. 26.2. Phosphatochelys tedfordi, n. gen. and n in Chapter 26 Phosphatochelys, a New Side-Necked Turtle (Pelomedusoides: Bothremydidae) from the Paleocene of Morocco
Fig. 26.2. Phosphatochelys tedfordi, n. gen. and n. sp., AMNH 30008, key to fig. 26.1.
Fig. 15.6 in Chapter 15: Moropus merriami in the Early Barstovian Lower Snake Creek Fauna of Nebraska, with Comments on Biogeography of North American Chalicotheres
Fig. 15.6. Dorsal (A), fibular (B), and tibial
Fig. 17.5 in Chapter 17: Gigantism, Dwarfism, and Cope's Rule: "Nothing in Evolution Makes Sense without a Phylogeny"
Fig. 17.5. Three examples of bodysize evo
IPBES Invasive Alien Species Assessment, database for Chapter 4. Impact Evidence Database
<p>This is a database described in the data management report for chapter 4 of IPBES thematic assessment on invasive alien species and their control.</p> <p>Data were gathered on direct observations of impacts from published literature, including grey literature, in order to form a database on the evidence to which invasive alien species impact, negatively and positively, nature, nature's contributions to people and good quality of life for Chapter 4 of IPBES thematic assessment of invasive alien species and their control. The criteria for inclusion were a published direct evidence of an impact on native species, a change in ecosystem properties, nature's contributions to people and the extent to which humans were affected through changes in their constituents of well-being.</p> <p> </p> <p>Updates to version 3:</p> <p>1) Assessor “EAM” has been replaced by “Ester Mostert”,</p> <p>2) There were 50 Unique IDs that were paired. These are now differentiated by adding an a and b to the end of these to make them truly unique,</p> <p>3) Removed 40 duplicates</p> <p>4) RowID were re-numbered to reflect the unique number of rows</p> <p> </p>
Data from: Recent chapters of Neotropical history overlooked in phylogeography: shallow divergence explains phenotype and genotype uncoupling in Antilophia manakins
Establishing links between phenotypic and genotypic variation is a central goal of evolutionary biology, as they might provide important insights into evolutionary processes shaping genetic and species diversity in nature. One of the more intriguing possibilities is when no genetic divergence is found to be associated with conspicuous phenotypic divergence. In that case, speciation theory predicts that phenotypic divergence may still occur in the presence of significant gene flow—thereby resulting in little genomic divergence—when genetic loci underpinning phenotypes are under strong divergent selection. However, a finding of phenotypic distinctiveness with weak or no population genetic structure may simply result from low statistical power to detect shallow genetic divergences when small datasets are used. Here, we used a subgenomic dataset of 2386 ultraconserved elements to explore genome-wide divergence between two species of Antilophia manakins, which are phenotypically distinct yet evidently lack strong genetic differentiation according to previous studies based on a limited number of loci. Our results revealed clear population structure that matches the two phenotypes, supporting the idea that smaller datasets lacked the power to detect this recent divergence event (likely < 100 k ya). Indeed, we found little or no introgression between the species, as well as evidence of genome-wide divergence. One implication of our study is that the Araripe plateau may be a hotspot of cryptic-diverging forest Cerrado populations. Besides their use in biogeography, subgenomic datasets may help redefine local conservation programs by revealing cryptic population structure that may be key to population management.
Data of Chapter 9
<p>Data belonging to chapter 9 of the dissertation "Metabolic versatility of verrucomicrobial methanotrophs".</p>
Data of Chapter 7
<p>Data belonging to chapter 7 of the dissertation "Metabolic versatility of verrucomicrobial methanotrophs".</p>
Schematic and adapted figures from IPBES Sustainable Use of Wild Species Assessment - Chapter 1. Setting the Scene
<p>Schematic and adapted figures from Chapter 1 of the thematic assessment of the sustainable use of wild species of the Intergovernmental Science-Policy Platform on Biodiversity and Ecosystem Services.</p>
Chapter 11 Image set for the book, "Data Science for Nano Image Analysis"
<p>This is the image set used in Chapter 11 of the book, "Data Science for Nano Image Analysis".</p>
Chapter 6 Image set for the book, "Data Science for Nano Image Analysis"
<p>This is the image set used in Chapter 6 of the book, "Data Science for Nano Image Analysis"</p>
Chapter 5 Image set for the book, "Data Science for Nano Image Analysis"
<p>This is the image set used in Chapter 5 of the book, "Data Science for Nano Image Analysis".</p>
Chapter 8 Image set for the book, "Data Science for Nano Image Analysis"
<p>This is the image set used in Chapter 8 of the book, "Data Science for Nano Image Analysis".</p>
Chapter 4 Image set for the book, "Data Science for Nano Image Analysis"
<p>This is the image set used in Chapter 4 of the book, "Data Science for Nano Image Analysis".</p>
Chapter 3 Image set for the book, "Data Science for Nano Image Analysis"
<p>This is the image set used in Chapter 3 of the book, "Data Science for Nano Image Analysis".</p>
Chapter 2 Image Data of the book "Data Science for Nano Image Analysis"
<p>This is the image set used in Chapter 2 of the book, "Data Science for Nano Image Analysis", by Park and Ding, 2021, Springer Nature</p>
Chapter 7 Image set for the book, "Data Science for Nano Image Analysis"
<p>This is the image set used in Chapter 7 of the book, "Data Science for Nano Image Analysis".</p>
Chapter 10 Image set for the book, "Data Science for Nano Image Analysis"
<p><br> This is the image set used in Chapter 10 of the book, "Data Science for Nano Image Analysis".</p>
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.