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1,416 results for “Evidence Base”

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FIGURE 17 in Three new species of Hyposmocoma (Lepidoptera, Cosmopterigidae) from the Hawaiian Islands, based on morphological and molecular evidence

FIGURE 17. Case types of Hyposmocoma kapakai from specimens collected from Makapu'u (top) and Sandy Beach (bottom).

opennotspecifiedDec 2008View details →
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FIGURES 14–16 in Three new species of Hyposmocoma (Lepidoptera, Cosmopterigidae) from the Hawaiian Islands, based on morphological and molecular evidence

FIGURES 14–16. Female genitalia of Hyposmocoma spp., ventral aspect 14. H. kaupo (slide PS119); 15. H. kapakai (slide PS116); 16. H. kaikuono (slide PS117).

opennotspecifiedDec 2008View details →
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FIGURES 5–7 in Three new species of Hyposmocoma (Lepidoptera, Cosmopterigidae) from the Hawaiian Islands, based on morphological and molecular evidence

FIGURES 5–7. Male genitalia of Hyposmocoma kaupo from specimen on slide PS118. 5. Tegumen, ventral aspect; 6. Valvae with phallus, ventral aspect; 7. Sclerotized hook on abdominal segment VII, ventral aspect.

opennotspecifiedDec 2008View details →
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7009X Evidence Base

<p>The evidence base used during the development of the IEEE Standard for Fail-Safe Design of Autonomous and Semi-Autonomous Systems (7009-2024) . The evidence base is now being used to develop the first extension (X1) derived from the 7009 standard.&nbsp; An accompanying document (7009X-EBI.pdf) provides a brief introduction to the baseline release of the evidence base (V2.1).</p>

opencc-by-sa-4.0Aug 2024View details →
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Figure 94 in Phylogeny of the spider genus Ixchela Huber, 2000 (Araneae: Pholcidae) based on morphological and molecular evidence (CO1 and 16S), with a hypothesized diversification in the Pleistocene

Figure 94. Chronogram with the molecular dating for the genus Ixchela using the lognormal relaxed clock model. Bars at nodes indicate the 95% highest posterior density interval (HPD) to each tmrca (time of the most recent common ancestor). Numbers on bars indicate the mean age for each node in millions of years (Mya). Gradient of colours indicates ages of nodes, from the older nodes (darker) toward more recent nodes (lighter).

opennotspecifiedAug 2015View details →
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Figure 95 in Phylogeny of the spider genus Ixchela Huber, 2000 (Araneae: Pholcidae) based on morphological and molecular evidence (CO1 and 16S), with a hypothesized diversification in the Pleistocene

Figure 95. Biogeographical provinces of Mexico following the scheme of Morrone (2004, 2005), showing the distribution of the genus Ixchela. Red background colour indicates the Mexican Montane biotic component and its provinces: 1, Sierra Madre Occidental (no records of Ixchela); 2, Transmexican Volcanic Belt (species recorded in green); 3, Sierra Madre Oriental (species recorded in yellow); 4, Cuenca del Balsas (no records of Ixchela); 5, Sierra Madre del Sur (species recorded in dark blue). Yellow background colour indicates the Province of Chiapas (species recorded in light blue) which belongs to the Mesoamerican biotic component and is extended toward mountainous zones of Central America (Guatemala, Honduras, El Salvador and Nicaragua).

opennotspecifiedAug 2015View details →
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Figure 93 in Phylogeny of the spider genus Ixchela Huber, 2000 (Araneae: Pholcidae) based on morphological and molecular evidence (CO1 and 16S), with a hypothesized diversification in the Pleistocene

Figure 93. Majority consensus tree derived from the Bayesian analysis using the (morphology + CO1 + 16S) data set. Numbers above branches indicate posterior probabilities. Numbers below branches: (+) indicates clades found with PA/ Jackknife support values and/or with significant PA/Bremer support values. Black squares below branches indicate clades found with PA using different concavity values (K) using implied weighting; white squares indicate clades not recovered with some concavity values (see inset). Numbers and arrows indicate clades that are discussed in the text.

opennotspecifiedAug 2015View details →
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Figure 91 in Phylogeny of the spider genus Ixchela Huber, 2000 (Araneae: Pholcidae) based on morphological and molecular evidence (CO1 and 16S), with a hypothesized diversification in the Pleistocene

Figure 91. Consensus tree of the five most parsimonious trees obtained by the morphological cladistic analysis with equal weighting of characters (L = 59, CI = 0.72, RI = 0.84). Black squares indicate synapomorphic or apomorphic states, whereas white squares indicate homoplastic character states. Small numbers above squares indicate character number; small numbers below squares indicate character state. Larger numbers above branches indicate Jackknife support values; larger numbers below branches indicate Bremer support values. Black squares below branches indicate clades recovered with PA using different concavity values (K) using implied weighting; white squares indicate clades not recovered with some concavity values (see inset).

opennotspecifiedAug 2015View details →
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Figure 92 in Phylogeny of the spider genus Ixchela Huber, 2000 (Araneae: Pholcidae) based on morphological and molecular evidence (CO1 and 16S), with a hypothesized diversification in the Pleistocene

Figure 92. Majority consensus tree derived from the Bayesian analysis using the morphology + CO1 data set. Numbers above branches indicate posterior probabilities. Numbers below branches: (+) indicates clades found with PA/Jackknife support values and/or with statistically significant PA/Bremer support values. Black squares below branches indicate clades found with PA using different concavity values (K) using implied weighting; white squares indicate clades not recovered with some concavity values (see inset). Numbers and arrows indicate clades that are discussed in the text.

opennotspecifiedAug 2015View details →
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Figures 79–89 in Phylogeny of the spider genus Ixchela Huber, 2000 (Araneae: Pholcidae) based on morphological and molecular evidence (CO1 and 16S), with a hypothesized diversification in the Pleistocene

Figures 79–89. Ixchela tlayuda sp. nov. Male: 79, 80, Habitus, lateral and dorsal views, respectively. 81, Carapace and chelicerae, frontal view. 82, Chelicerae, frontal view. 83–84, Left palp, retrolateral and prolateral views, respectively. 85, Chelicera, lateral view. Female: 86, Epigynum, left lateral view. 87, Epigynum, ventral view. 88, Epigynum, dorsal view. 89, Epigynum, frontal view. Scale bars: 0.5 mm (Figs 82, 85, 88), 1 mm (Figs 79–81, 83, 84, 86, 87, 89).

opennotspecifiedAug 2015View details →
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Figures 68–78 in Phylogeny of the spider genus Ixchela Huber, 2000 (Araneae: Pholcidae) based on morphological and molecular evidence (CO1 and 16S), with a hypothesized diversification in the Pleistocene

Figures 68–78. Ixchela purepecha sp. nov. Male: 68, 69, Habitus, lateral and dorsal views, respectively. 70, Carapace and chelicerae, frontal view. 71, Chelicerae, frontal view. 72, 73, Left palp, retrolateral and prolateral views, respectively. 74, Chelicera, lateral view. Female: 75, Epigynum, left lateral view. 76, Epigynum, ventral view. 77, Epigynum, anterior–dorsal view. 78, Epigynum, frontal view. Scale bars: 0.5 mm (Figs 71, 74, 75, 77), 1 mm (Figs 68, 69, 72, 73, 76, 78).

opennotspecifiedAug 2015View details →
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Figures 45–55 in Phylogeny of the spider genus Ixchela Huber, 2000 (Araneae: Pholcidae) based on morphological and molecular evidence (CO1 and 16S), with a hypothesized diversification in the Pleistocene

Figures 45–55. Ixchela jalisco sp. nov. Male: 45, 46, Habitus, lateral and dorsal views, respectively. 47, Carapace and chelicerae, frontal view. 48, Chelicerae, frontal view. 49, 50, Left palp, retrolateral and prolateral views, respectively. 51, Chelicera, lateral view. Female: 52, Epigynum, left lateral view. 53, Epigynum, ventral view. 54, Epigynum, dorsal view. 55, Epigynum, frontal view. Scale bars: 0.5 mm (Figs 48, 51, 52, 54, 55), 1 mm (Figs 45–47, 49, 50, 53).

opennotspecifiedAug 2015View details →
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Figures 56–67 in Phylogeny of the spider genus Ixchela Huber, 2000 (Araneae: Pholcidae) based on morphological and molecular evidence (CO1 and 16S), with a hypothesized diversification in the Pleistocene

Figures 56–67. Ixchela mendozai sp. nov. Male: 56, 57, Habitus, lateral and dorsal views, respectively. 58, Carapace and chelicerae, frontal view. 59, Chelicerae, frontal view. 60, 61, Left palp, retrolateral and prolateral views, respectively. 62, Chelicera, lateral view. 63, Bulb and embolus, prolatero-dorsal view (arrow indicates the curved and sharp subdistally sclerotized spine). Female: 64, Epigynum, ventral view. 65, Epigynum, dorsal view. 66, Epigynum, left lateral view. 67, Epigynum, frontal view. Scale bars: 0.5 mm (Figs 58, 59, 62–67), 1 mm (Figs 56, 57, 60, 61).

opennotspecifiedAug 2015View details →
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Figures 34–44 in Phylogeny of the spider genus Ixchela Huber, 2000 (Araneae: Pholcidae) based on morphological and molecular evidence (CO1 and 16S), with a hypothesized diversification in the Pleistocene

Figures 34–44. Ixchela azteca sp. nov. Male: 34, 35, Habitus, lateral and dorsal views, respectively. 36, Carapace and chelicerae, frontal view. 37, Chelicerae, frontal view. 38, 39, Left palp, retrolateral and prolateral views, respectively. 40, Chelicera, lateral view. Female: 41, Epigynum, left lateral view. 42, Epigynum, ventral view. 43, Epigynum, dorsal view. 44, Epigynum, frontal view. Scale bars: 0.5 mm (Figs 42, 43), 1 mm (Figs 34–41, 44).

opennotspecifiedAug 2015View details →
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Figures 26–33 in Phylogeny of the spider genus Ixchela Huber, 2000 (Araneae: Pholcidae) based on morphological and molecular evidence (CO1 and 16S), with a hypothesized diversification in the Pleistocene

Figures 26–33. Ixchela azteca sp. nov. Male. 26, Chelicerae, ventral view. 27, Left chelicerae, frontal view. 28, Right chelicerae, posterior view. 29, Left endite, ventral view (arrow indicates the serrated margin). 30, Detail of the serrated margin on endite. 31, Spinnerets, ventral view. 32, Detail of one anterior lateral spinneret (arrows indicate the slightly pointed spigot and the wide spigot). 33, Detail of one posterior median spinneret (arrows indicate the acciniform gland spigots). Scale bars: 50 μm (Figs 30, 32, 33), 100 μm (Figs 28, 29), 200 μm (Fig. 27), 300 μm (Fig. 31), 500 μm (Fig. 26).

opennotspecifiedAug 2015View details →
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Supplementary material 2 from: Ya J-D, Wang W-T, Liu Y-L, Jiang H, Han Z-D, Zhang T, Huang H, Cai J, Li D-Z (2023) Five new and noteworthy species of Epidendroideae (Orchidaceae) from southwestern China based on morphological and phylogenetic evidence. PhytoKeys 235: 211-236. https://doi.org/10.3897/phytokeys.235.111230

List of taxa, vouchers and GenBank accession numbers of Papilionanthe samples downloaded from NCBI (with newly sampled sequences added, below)

opencc-zeroNov 2023View details →
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FIGURE 2 in Luisia brachyota (Orchidaceae; Epidendroideae) a new species from China: evidence based on morphological and molecular data

FIGURE 2. Luisia brachyota (A) Plant; (B) Inflorescence; (C) Flower; (D) Pollinia; (E, G) Petals; (F) Dorsal sepal; (H, K) Lateral sepal; (I) Lip; (J) Ovary and column; (L) anther cap.

opennotspecifiedDec 2023View details →
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FIGURE 1 in Luisia brachyota (Orchidaceae; Epidendroideae) a new species from China: evidence based on morphological and molecular data

FIGURE 1. Phylogenetic tree inferred by maximum-likelihood analysis of the combined matrix. The numbers near the nodes are bootstrap percentages and Bayesian posterior probabilities (only showing the value of BS ML&gt; 30, BP ML left, BP MP middle, and PP right). The partial trees based on nrITS (A) and combined plastid (B) are shown in the top left corner. A dash (-) indicates the node topology is inconsistent between the MP, ML and Bayesian tree.

opennotspecifiedDec 2023View details →
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Weak evidence base for bee protective pesticide mitigation measures: Data Behind Systematic Review- Raw, Extracted and Tabulated

<p>An excel file with the raw exported data from Web of Science, the data extracted from it, and the summary statistics.&nbsp;</p> <p>Data associated with https://doi.org/10.1093/jee/toad118</p> <p>Edward A Straw, Dara A Stanley, Weak evidence base for bee protective pesticide mitigation measures, <em>Journal of Economic Entomology</em>, Volume 116, Issue 5, October 2023, Pages 1604&ndash;1612, <a href="https://doi.org/10.1093/jee/toad118">https://doi.org/10.1093/jee/toad118</a></p> <p>&nbsp;</p> <p>Straw and Stanley, 2023.&nbsp;</p> <p>&nbsp;</p> <p>&nbsp;</p>

opencc-by-4.0Jul 2023View details →
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Supplements and underlying data for the study: Using Health Claims to Teach Evidence-Based Practice to Healthcare Students: A Mixed Methods Study

<p>Supplements and English translation of the Norwegian data sets, in addition to checklists for the manuscript.</p>

opencc-by-4.0Nov 2023View details →

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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.

allen-brain-atlas
neuroscienceopenDocumentation, web resources, and API references are available online.
Last verified 2026-04-30Open record

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.

abode-home-cage
behavioral-neuroscienceopenThe DataShare record exposes download links for annotations, documentation, license text, and the zipped per-snippet data directory.
Last verified 2026-04-30Open record

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.

dandi-nwb
electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
Last verified 2026-04-30Open record

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.

ibl
behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
Last verified 2026-04-29Open record

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.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record