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3,206 results for “property (T)”
Figure 4 in Tegmina-size variation in a Neotropical cricket with implications on spectral song properties
Figure 4. Thin-plate spline using seven landmarks to depict harp shape variation in Lerneca inalata beripocone along each PC axis. Red landmarks explain most of the tegmen shape variation.
Figure 8 in Tegmina-size variation in a Neotropical cricket with implications on spectral song properties
Figure 8. Analysis of selected calling song syllables of Lerneca inalata beripocone from four Pantanal study sites. Top: oscillograms; middle: frequency analyses based on zero-crossing; bottom: power spectra of selected syllables. S1‒S4: Selected syllables of one echeme (first order assemblage of syllables). (a) SESC (flooded forest edge ‒ FFE); (b) Pouso Alegre (flooded forest 1 – FF1); (c) Pouso Alegre (flooded forest 2 – FF2); (d) Pouso Alegre (flooded forest 3 – FF3).
Figure 7 in Tegmina-size variation in a Neotropical cricket with implications on spectral song properties
Figure 7. Lerneca inalata beripocone: Examples of calling song patterns (oscillograms, frequency components in dB/seconds) from six Pantanal study sites. (a) SESC, flooded forest edge, FFE; (b) Pouso Alegre, flooded forest 1, PA FF1; (c) Pouso Alegre, flooded forest 2, PA FF2; (d) Pouso Alegre, flooded forest 3, PA FF3; (e) Pouso Alegre, non-flooded forest, PA NFF; (f) Pouso Alegre, forest edge, PA FE. BIINORGRLEIN codes refer to individual recordings.
Figure 1 in Tegmina-size variation in a Neotropical cricket with implications on spectral song properties
Figure 1. Lerneca inalata beripocone: Left tegmen, morphology (a) and landmarks (b) used for morphometric analyses. Vein abbreviations: Cu1 = cubit 1, M = media, Sc = subcostal, 1a = first anal, 2a = second anal, No = node, Di = diagonal, Cu2 = cubit 2.
Figure 3. Thin-plate spline using 16 in Tegmina-size variation in a Neotropical cricket with implications on spectral song properties
Figure 3. Thin-plate spline using 16 landmarks to depict left wing shape variation in Lerneca inalata beripocone along each PC axis. Red landmarks explain most of the tegmen shape variation.
Figure 2 in Tegmina-size variation in a Neotropical cricket with implications on spectral song properties
Figure 2. Lerneca inalata beripocone: Oscillogram of a calling song echeme (top, vertical axis shows frequency components in dB, horizontal axis time in seconds) and spectrogram (below, vertical axis indicates frequencies in kHz, horizontal axis time in seconds) of a representative male from Pouso Alegre (site flooded forest 1, FF1). Example: framed syllables (S1–S4) selected for further frequency analyses.
Figure 6 in Tegmina-size variation in a Neotropical cricket with implications on spectral song properties
Figure 6. UPGMA dendrogram based on wing shape with 10,000 bootstrap replicates (left), of the subpopulation of Lerneca inalata beripocone; mean amplitude (MA, right) of frequency of calling song (right) from two locations in the Pantanal of Poconé, MT, Brazil. SESC (FFE = flooded forest edge), PA (FF1, FF2, FF3 = flooded forest; NFF = non-flooded forest; FE1, FE2 = forest edge).
Figure 5 in Tegmina-size variation in a Neotropical cricket with implications on spectral song properties
Figure 5. Thin-plate spline using seven landmarks to depict mirror shape variation in Lerneca inalata beripocone along each PC axis. Red landmarks explain most of the tegmen shape variation.
Spatio-temporal dynamics of abiotic and biotic properties explain biodiversity-ecosystem functioning relationships
<p>There is increasing evidence that spatial and temporal dynamics of biodiversity and ecosystem functions play an essential role in biodiversity-ecosystem functioning (BEF) relationships. Despite the known importance of soil processes for forest ecosystems, belowground functions in response to tree diversity and spatio-temporal dynamics of ecological processes and conditions remain poorly described. We propose a novel conceptual framework integrating spatio-temporal dynamics in BEF relationships and hypothesized a positive tree species richness effect on soil ecosystem functions through the spatial and temporal stability of biotic and abiotic soil properties based on species complementarity and asynchrony. We tested this framework within a long-term tree diversity experiment in Central Germany by assessing soil ecosystem functions (soil microbial properties and litter decomposition) and abiotic variables (soil moisture and surface temperature) for two consecutive years in high spatial and temporal resolution. Tree species richness and identity had significant effects on soil properties (e.g., soil microbial biomass). Structural equation modeling revealed that overall soil microbial biomass was partly explained by (a) enhanced temporal stability of soil surface temperature and (b) decreased spatial stability of soil microbial biomass. Overall, spatial stability of soil microbial properties was positively correlated with their temporal stability. These results suggest that spatio-temporal dynamics are indeed crucial determinants in BEF relationships and highlight the importance of vegetation-induced microclimatic conditions for stable provisioning of soil ecosystem functions and services.</p>
Figure 4 in Community properties of benthic molluscs as indicators of environmental stress induced by organic enrichment
Figure 4. MDS plots of Functional Feeding Groups (FFG) where mean abundance of each group is superimposed.
Figure 3 in Community properties of benthic molluscs as indicators of environmental stress induced by organic enrichment
Figure 3. MDS plot (a) and cluster analysis (b) of species abundances highlighting three main groups of areas.
Figure 2 in Community properties of benthic molluscs as indicators of environmental stress induced by organic enrichment
Figure 2. Probability funnels of diversity indices Δ+ (a) and Λ+ (b) for all sampling stations and seasons in the study area.
Figure 1. A in Community properties of benthic molluscs as indicators of environmental stress induced by organic enrichment
Figure 1. A map of the island of Lesvos indicating Gera Gulf, the study area (Palioloutro) where the fish farm unit is located and the sampling sites.
Simulation results for "Modeling the joint effects of vegetation characteristics and soil properties on ecosystem dynamics in a Panama tropical forest"
<p>This dataset is the ELM-FATES simulation outputs for the paper entitled "Modeling the joint effects of vegetation characteristics and soil properties on ecosystem dynamics in a Panama tropical forest". </p>
FIGURE 15 in Eleventh Annual Report of Historic Properties at the Phoenix-Mesa Gateway Airport, Mesa, Arizona
FIGURE 15. Brevipalpus phoenicis female dorsum, venter and deutonymph (after Baker & Tuttle 1987).
Unprocessed data for the "Property-Based Testing of Web APIs" paper
<p>Unprocessed data for the "Property-Based Testing of Web APIs" paper. </p>
FIGURE 36. A in Eleventh Annual Report of Historic Properties at the Phoenix-Mesa Gateway Airport, Mesa, Arizona
FIGURE 36. A) Phyllotetranychus aegyptium female dorsum (after Sayed 1938); B) Phyllotetranychus romaine female dorsum and palp (after Pritchard & Baker 1958).
FIGURE 33 in Eleventh Annual Report of Historic Properties at the Phoenix-Mesa Gateway Airport, Mesa, Arizona
FIGURE 33. Crossipalpus verticillatae female dorsum, venter of gnathosoma and palpi (after Smiley et al. 1996).
FIGURE 27 in Eleventh Annual Report of Historic Properties at the Phoenix-Mesa Gateway Airport, Mesa, Arizona
FIGURE 27. Obdulia tamaricis female dorsum (original), venter and palps (after Pritchard & Baker 1958).
Supporting Data for "Actively Searching: Inverse Design of Novel Molecules with Simultaneously Optimized Properties" Manuscript
<p>Training data and xTB calculated properties of sampled structures from the generative active learning experiments reported in the manuscript.</p>
ScienceDex guides
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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.