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9 results for “Mexican biodiversity”
FIGURE 3 in A protocol for online documentation of spider biodiversity inventories applied to a Mexican tropical wet forest (Araneae, Araneomorphae)
FIGURE 3. Example of a species page documented with standard views Cyrtognatha petila Dimitrov & Hormiga 2009. http:// www.unamfcaracnolab.com/WPGS_TUXV/tuxv.html
FIGURE 4 in A protocol for online documentation of spider biodiversity inventories applied to a Mexican tropical wet forest (Araneae, Araneomorphae)
FIGURE 4. Species richness estimations. Red triangles with values indicated with (*) correspond to the species estimations for those treatments fitted to a lognormal distribution. White and red triangles over the x axis indicate higher overestimations.
FIGURE 5. Species richness estimations slopes. Jack 2s in A protocol for online documentation of spider biodiversity inventories applied to a Mexican tropical wet forest (Araneae, Araneomorphae)
FIGURE 5. Species richness estimations slopes. Jack 2s indicates the slope average for these estimations based on incidence (BAT) and abundance (Bat and Estimates). Same averages were calculated for Jack 1s and Chao 1 and 2 estimation slopes. Column indicated with (*) correspond to the slope value for pitfalls under Chao's estimations.
FIGURE 1 in Making biodiversity discovery more efficient: An exploratory test using Mexican birds
FIGURE 1. Two example predictions of possible distributions of 'unknown' species (i.e., restricted range and poorly known species used here to simulate unknown species) based on ecological characteristics of more widely distributed congener species. The dark outline indicates the 100 km buffer around known occurrences of the less well-known species
Assessing spatial patterns of phylogenetic diversity of Mexican mammals for biodiversity conservation
<p>Phylogenetic diversity is a biodiversity measurement that describes the amount of evolutionary history contained by the taxonomic units in a region. It has proven to be an important metric for determining conservation priorities. Mammalian phylogenetic diversity patterns have been suggested as potential surrogates of biodiversity for establishing priority areas for conservation. This study aims to identify areas of high mammalian phylogenetic diversity in Mexico, a megadiverse country with high mammalian richness, and to assess how well protected areas encompass the phylogenetic diversity. IUCN distribution data for 479 Mexican mammals were used to estimate species richness. Data for the molecular markers cytB, 12S and COI, were gathered from GenBank and from laboratory extractions for reconstructing a maximum-likelihood phylogenetic tree. Spatial patterns in phylogenetic diversity were estimated by summing the branch lengths of the phylogenetic tree representing species presence across grid cells. The results were compared with the distribution of protected areas in Mexico in order to assess if phylogenetic diversity is effectively conserved. The southeastern part of Mexico was found to be the most diverse. The breadth of the phylogenetic tree was well represented within the protected areas. Beta-diversity analyses showed that the species composition between protected and unprotected areas is very similar. Protected areas group based on the phylogenetic composition of mammal species into three clusters corresponding to the Nearctic, Neotropical, and Mexican Transition Zone biogeographical regions, which suggests that protected areas could be managed based on these clusters.</p>
Assessing spatial patterns of phylogenetic diversity of Mexican mammals for biodiversity conservation
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FIGURE 1 in A protocol for online documentation of spider biodiversity inventories applied to a Mexican tropical wet forest (Araneae, Araneomorphae)
FIGURE 1. Diagram for the one-hectare plot sampled and its 16 subdivisions. Grey path indicates the creek that ran throughit. Black path indicates the access trail. Ovals indicate the position of the pitfall traps.
FIGURE 2 in A protocol for online documentation of spider biodiversity inventories applied to a Mexican tropical wet forest (Araneae, Araneomorphae)
FIGURE 2. Schematic diagram for website protocol. Green squares indicate that the data are provided by the user. Red squares indicate data produced by Perl. Blue squares indicate data produced by Excel.
FIGURE 6 in A protocol for online documentation of spider biodiversity inventories applied to a Mexican tropical wet forest (Araneae, Araneomorphae)
FIGURE 6. Methods and seasonality diversity indices and Jaccard similarity analyses. A, similarity and Shannon diversity indices for methods. B, similarity and Shannon diversity indices for the collecting months representing seasonality.
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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.
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DANDI Archive for NWB datasets
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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.