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Figures 12-19 from: Yamamoto S, Maruyama M (2016) Revision of the subgenus Tinotus Sharp, stat. n., of the parasitoid rove-beetle genus Aleochara Gravenhorst (Coleoptera, Staphylinidae, Aleocharinae) from Japan, Taiwan, and the Russian Far East. ZooKeys 559: 81-106. https://doi.org/10.3897/zookeys.559.6755
Figures 12-19 - Terminalia of Aleochara (Tinotus) morion: 12 tergite VIII of male 13 tergite VIII of female 14 sternite VIII of male 15 sternite VIII of female 16 median lobe of male aedeagus, lateral view 17 ditto, parameral view 18 apical lobe of paramerite 19 female spermatheca.
Figures 9-11 from: Yamamoto S, Maruyama M (2016) Revision of the subgenus Tinotus Sharp, stat. n., of the parasitoid rove-beetle genus Aleochara Gravenhorst (Coleoptera, Staphylinidae, Aleocharinae) from Japan, Taiwan, and the Russian Far East. ZooKeys 559: 81-106. https://doi.org/10.3897/zookeys.559.6755
Figures 9-11 - Body parts of Aleochara (Tinotus) morion of male: 9 mesoventrite and metaventrite 10 right elytron, posterior margin 11 pronotum.
Figures 20-26 from: Yamamoto S, Maruyama M (2016) Revision of the subgenus Tinotus Sharp, stat. n., of the parasitoid rove-beetle genus Aleochara Gravenhorst (Coleoptera, Staphylinidae, Aleocharinae) from Japan, Taiwan, and the Russian Far East. ZooKeys 559: 81-106. https://doi.org/10.3897/zookeys.559.6755
Figures 20-26 - Terminalia of Aleochara (Tinotus) eoa: 20 tergite VIII of male 21 tergite VIII of female 22 sternite VIII of male 23 sternite VIII of female 24 median lobe of male aedeagus, lateral view 25 ditto, parameral view 26 female spermatheca.
Figures 27-34 from: Yamamoto S, Maruyama M (2016) Revision of the subgenus Tinotus Sharp, stat. n., of the parasitoid rove-beetle genus Aleochara Gravenhorst (Coleoptera, Staphylinidae, Aleocharinae) from Japan, Taiwan, and the Russian Far East. ZooKeys 559: 81-106. https://doi.org/10.3897/zookeys.559.6755
Figures 27-34 - Terminalia of Aleochara (Tinotus) takashii: 27 tergite VIII of male 28 tergite VIII of female 29 sternite VIII of male 30 sternite VIII of female 31 median lobe of male aedeagus, lateral view 32 ditto, parameral view 33 ditto, apex of apical lobe, parameral view 34 female spermatheca.
Figure 4 from: Yin Z-W, Li L-Z (2016) A new species of Acetalius Sharp from eastern China (Coleoptera, Staphylinidae, Pselaphinae). ZooKeys 592: 93-101. https://doi.org/10.3897/zookeys.592.8769
Figure 4 - Morphology of Acetalius grandis. A Male tergites IX B Male sternite IX (penial plate) C Aedeagus, in dorsal view D Same, in lateral view. Scale bars: 0.1 mm.
Figure 3 from: Yin Z-W, Li L-Z (2016) A new species of Acetalius Sharp from eastern China (Coleoptera, Staphylinidae, Pselaphinae). ZooKeys 592: 93-101. https://doi.org/10.3897/zookeys.592.8769
Figure 3 - Morphology of Acetalius grandis. A Head dorsum and pronotum B Right antenna C Abdomen, in lateral view D Abdomen, in dorsal view E Abdomen, in ventral view. Abbreviations: amc – admesal carinae, blf – basolateral foveae, bs – basal carina, bs – basal sulcus, dc – discal carinae, fc – frontal carina, imc – inner marginal carinae, mbc – mediobasal carina, ms – median sulcus, omc – outer marginal carinae, sac – subantennal carinae, vf – vertexal foveae. Scale bars: 0.2 mm.
Figure 1 from: Yin Z-W, Li L-Z (2016) A new species of Acetalius Sharp from eastern China (Coleoptera, Staphylinidae, Pselaphinae). ZooKeys 592: 93-101. https://doi.org/10.3897/zookeys.592.8769
Figure 1 - Dorsal habitus of Acetalius grandis. A Macropterous male B Apterous male. Scale bars: 0.5 mm.
Figure 2 from: Yin Z-W, Li L-Z (2016) A new species of Acetalius Sharp from eastern China (Coleoptera, Staphylinidae, Pselaphinae). ZooKeys 592: 93-101. https://doi.org/10.3897/zookeys.592.8769
Figure 2 - Morphology of Acetalius grandis. A Head, in dorsal view B Same, in lateral view C Same, in ventral view D Pronotum E Prothorax, in lateral view F Prosternite G Left elytron H Meso- and metaventrite. Abbreviations: agp – apicolateral genal projections, at – antebasal tubercles, bef – basal elytral foveae, blc – basolateral carinae, fc – frontal carina, gf – gular fovea, laf – lateral antebasal foveae, lmcf – lateral mesocoxal foveae, lmsf – lateral mesoventral foveae, lpcf – lateral procoxal foveae, mbc – mediobasal carina, mc – median carina, mgs – median gular sulcus, mmsf – median mesoventral foveae, omc – ocular-mandibular carinae, pc – paranotal carinae, ss – sutural striae, vf – vertexal foveae. Scale bars: 0.2 mm.
FIGURE 3 in An extraordinary new species of the genus Syncosmetus Sharp, 1891 (Coleoptera: Ciidae) from Yunnan, China
FIGURE 3. Distribution of the described Syncosmetus species in China.
Dyke demolition led to a sharp decline in waterbird diversity due to habitat quality reduction: a case study of Dongting Lake, China
Dongting Lake, an important wintering habitat for migratory waterbirds in the East Asian–Australasian Flyway, has suffered serious degradation in recent decades. To restore habitats for biodiversity conservation and flood control, 459 dykes were demolished and 14 were preserved in 2017. However, the direct impact of dyke demolition on wintering waterbirds was not comprehensively assessed. In this study, based on annual waterbird census and habitat data (2013/14–2020/21), we compared the differences in habitat areas and species composition of waterbirds in the dyke-demolished and preserved areas, and explored whether habitat changes caused by the dyke demolition were responsible for the changes in the number of species and percentages of waterbird individuals. The results indicate that the areas of water (including shallow water) and mudflat habitats significantly decreased, but the vegetation area significantly increased in the dyke-demolished areas. The species numbers and percentages of waterbird individuals at the community and foraging guilds levels, and the percentages of nine species, were higher in the dyke-preserved areas than those in the dyke-demolished areas. Changes in the numbers of species and percentages of individuals of fish eaters, insectivores, and omnivores positively correlated with drastic changes in the percentages of water habitats (including shallow water) after dyke demolition. Effective measures should be carried out to restore hydrological regimes, providing waterbirds sufficient suitable habitats with different water depths. These findings improve our understanding of the influence of dyke demolition on waterbirds and provide insights for wetland management and waterbird conservation. --
Supplementary material 3 from: Reyes JA, Espinosa de los Monteros A, Santiago-Jiménez QJ (2023) Phylogeography of Falagonia mexicana Sharp, 1883 (Coleoptera, Staphylinidae, Aleocharinae). ZooKeys 1156: 107-131. https://doi.org/10.3897/zookeys.1156.84943
Table of haplotype frequencies found in COI sequences of F. mexicana by population
Supplementary material 2 from: Reyes JA, Espinosa de los Monteros A, Santiago-Jiménez QJ (2023) Phylogeography of Falagonia mexicana Sharp, 1883 (Coleoptera, Staphylinidae, Aleocharinae). ZooKeys 1156: 107-131. https://doi.org/10.3897/zookeys.1156.84943
Variable sites of the COI nucleotide sequences of F. mexicana
Supplementary material 5 from: Reyes JA, Espinosa de los Monteros A, Santiago-Jiménez QJ (2023) Phylogeography of Falagonia mexicana Sharp, 1883 (Coleoptera, Staphylinidae, Aleocharinae). ZooKeys 1156: 107-131. https://doi.org/10.3897/zookeys.1156.84943
Matrix
Supplementary material 1 from: Reyes JA, Espinosa de los Monteros A, Santiago-Jiménez QJ (2023) Phylogeography of Falagonia mexicana Sharp, 1883 (Coleoptera, Staphylinidae, Aleocharinae). ZooKeys 1156: 107-131. https://doi.org/10.3897/zookeys.1156.84943
Chronogram and Skyline-plots based on COI sequences of Falagonia mexicana
FIGURE 7 in A review of the Oocyclus Sharp of Ecuador with description of 12 new species (Coleoptera: Hydrophilidae: Laccobiini)
FIGURE 7. Distribution of Oocyclus spp. in Ecuador.
Sharing History Through Active Reminiscence and Photo-imagery (SHARP) Pilot Program
ClinicalTrials.gov study NCT05906654. IPD Sharing: NO. Countries: 0. Publications: 2.
Non-Invasive Reduction of Fat in the Flanks of Patients With Sharp Body Curvature
ClinicalTrials.gov study NCT01600638. IPD Sharing: NO. Countries: 1. Publications: 0.
Data from: A computational method for sharp interface advection
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Dyke demolition led to a sharp decline in waterbird diversity due to habitat quality reduction: a case study of Dongting Lake, China
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Feather mercury increases with feeding at higher trophic levels in two species of migrant raptors, Merlin (Falco columbarius) and Sharp-shinned Hawk (Accipiter striatus)
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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.
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.