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FIGURES 25–31 in The interesting and complex tribe Oxycoleini (Coleoptera, Cerambycidae): a new genus, new species, and taxonomic notes
FIGURES 25–31. Oxycoleus flavipes Martins & Galileo, 2006. 25–12) Male from Bolivia (Santa Cruz): 25) Dorsal habitus; 26) Ventral habitus; 27) Head, frontal view; 28) Abdominal apex; 29) Lateral habitus. 30–31) Female from Bolivia (Santa Cruz): 30) Dorsal habitus; 31) Ventral habitus.
FIGURES 8–14. Oxycoleus mirabilis, 8–12 in The interesting and complex tribe Oxycoleini (Coleoptera, Cerambycidae): a new genus, new species, and taxonomic notes
FIGURES 8–14. Oxycoleus mirabilis, 8–12) Holotype male: 8) Dorsal habitus; 9) Ventral habitus; 10) Lateral habitus; 11) Head, frontal view; 12) Antennomeres X–XI. 13–14) Paratype male: 13) Dorsal habitus; 14) Ventral habitus.
FIGURES 1–4. 1 in The interesting and complex tribe Oxycoleini (Coleoptera, Cerambycidae): a new genus, new species, and taxonomic notes
FIGURES 1–4. 1) Tethlimmena obscurus (Júlio, 1997), dorsal habitus, by Steven W. Lingafelter. 2–3) Wappesia tristis (Melzer, 1933): 2) Holotype female from Brazil (Santa Catarina), dorsal habitus; 3) Male from Brazil (Minas Gerais), dorsal habitus. 4) Tethlimmena aliena Bates, 1872, male from Costa Rica (Limón), dorsal habitus.
Daily abundance of Dall's sheep peaks during late summer in a seasonal habitat of high-management interest
<p class="Body">Informing conservation and management decisions for habitats frequented by species of high management interest often face the challenge of limited resources for conducting wildlife surveys. When surveys are focused on local areas or sparsely distributed species, it may also be difficult to obtain counts sufficient for implementing abundance models that account for imperfect detection. With replicated aerial surveys collected within a 70.25 km<sup>2</sup> portion of the Eastern Alaska Range, Alaska, USA during the summers of 2013–2015, we estimated daily abundance of Dall's sheep using two different estimation methods: Bayesian <i>N</i>-mixture models and Poisson regression models. We then compared estimates of relative abundance from both model types while paying special attention to the assumption of closure within individual survey units. With abundance estimates obtained from individual survey days, we then estimated the average number of Dall's sheep within the survey area for the period 1 July–1 October. Daily ewe abundance followed a quadratic pattern, with 10–20 ewes being within our survey area in early July and late September, and approximately 90 ewes within the survey area <span>in mid-August. Lamb to ewe ratios averaged 0.2 from July–September, while ram to ewe ratios averaged 0.4 from July until mid-August before increasing to about 1.0 by the end of September.</span> These results indicate that our survey area is an important habitat to local Dall's sheep populations when lambs are vulnerable to predators. Accordingly, human recreation and military training within the survey area should be minimized 1.5–3.0 months after parturition to minimize disturbance. We also found that <i>N</i>-mixture models displayed a pattern of abundance estimates that increased in magnitude as model complexity increased. We thus recommend an <i>a priori</i> approach to <i>N</i>-mixture model construction that balances the risk of overfitting models to modest data against the risk of fitting models that do not explain heterogeneity in abundance and detection probability. Lastly, we suggest simple improvements to replicated, aerial surveys for species like Dall's sheep focused on reducing violations of the closure assumption within individual survey units, which can reduce bias of density estimates obtained with <i>N</i>-mixture models.</p>
FIGURES 25–27 in Loss of a larval generic character: an interesting and new description for Isoperla vevcianensis Ikonomov, 1980 (Plecoptera: Perlodidae) with updated adult characters
FIGURES 25–27. Habitat of Isoperla vevcianensis Ikonomov, 1980; Jablanica Mts, North Macedonia—25: Upstream view; 26: downstream view; 27: Detail of the brook.
FIGURES 21–23. Isoperla vevcianensis Ikonomov, 1980 in Loss of a larval generic character: an interesting and new description for Isoperla vevcianensis Ikonomov, 1980 (Plecoptera: Perlodidae) with updated adult characters
FIGURES 21–23. Isoperla vevcianensis Ikonomov, 1980 male and egg—21: everted penis, oblique apical view; 22: paraprocts, caudal view; 23: egg, lateral view—scales 0.5 mm.
FIGURES 1–4. Isoperla vevcianensis Ikonomov, 1980 in Loss of a larval generic character: an interesting and new description for Isoperla vevcianensis Ikonomov, 1980 (Plecoptera: Perlodidae) with updated adult characters
FIGURES 1–4. Isoperla vevcianensis Ikonomov, 1980 (Figs. 1, 3–4) and I. tripartita species complex (Fig. 2) larvae—1–2: head and pronotum, dorsal view; 3: abdomen, dorsal view; 4: thorax, ventral view.
FIGURES 5–8. Isoperla vevcianensis Ikonomov, 1980 in Loss of a larval generic character: an interesting and new description for Isoperla vevcianensis Ikonomov, 1980 (Plecoptera: Perlodidae) with updated adult characters
FIGURES 5–8. Isoperla vevcianensis Ikonomov, 1980 (Figs. 5, 7) and I. tripartita species complex (Figs. 6, 8) larvae, terminalia—5–6: ventral view; 7–8: dorsal view.
FIGURES 15–20. Isoperla vevcianensis Ikonomov, 1980 in Loss of a larval generic character: an interesting and new description for Isoperla vevcianensis Ikonomov, 1980 (Plecoptera: Perlodidae) with updated adult characters
FIGURES 15–20. Isoperla vevcianensis Ikonomov, 1980 larva, right maxilla and mandible—15: maxilla, ventral view; 16: mandible, ventral view; 17: maxilla, dorsal view; 18: mandible, dorsal view; 19: maxilla, inner lateral view; 20: mandible, apical view.
FIGURES 9–14. Isoperla vevcianensis Ikonomov, 1980 larva—9 in Loss of a larval generic character: an interesting and new description for Isoperla vevcianensis Ikonomov, 1980 (Plecoptera: Perlodidae) with updated adult characters
FIGURES 9–14. Isoperla vevcianensis Ikonomov, 1980 larva—9: head, basolateral area, dorsal view; 10: head, basomedial area, dorsal view; 11: mouthparts, ventral view; 12: pronotum, right half, dorsal view; 13: terga 4–6, dorsal view; 14: cercal segments 9–14, dorsal view.
FIGURE. Microscopic structures of Rhodocollybia tablensis a, b, e, f (PAN238), c, d (KaiR343) a. Basidia. b. Basidiospores. c. Cheilocystidia. d. Pleurocystidia. e. Stipitipellis with caulocystidia. f. Pileipellis with terminal cells. Bars a, b and c = 10 µm, d, e and f = 20 µm. Drawings by H. Lotz-Winter. in New and interesting species of Agaricomycetes from Panama
FIGURE. Microscopic structures of Rhodocollybia tablensis a, b, e, f (PAN238), c, d (KaiR343) a. Basidia. b. Basidiospores. c. Cheilocystidia. d. Pleurocystidia. e. Stipitipellis with caulocystidia. f. Pileipellis with terminal cells. Bars a, b and c = 10 µm, d, e and f = 20 µm. Drawings by H. Lotz-Winter.
FIGURE. Microscopic structures of Gloeocantharellus salmonicolor (TH0817, holotype). a. Pileipellis with gloeoplerous hypha. b. Ornamented basidiospores drawn in surface view or optical section. c. Gloeocystidia. d. Basidia at different developmental stages. Bars = 10 µm. Drawings by K. Reschke. in New and interesting species of Agaricomycetes from Panama
FIGURE. Microscopic structures of Gloeocantharellus salmonicolor (TH0817, holotype). a. Pileipellis with gloeoplerous hypha. b. Ornamented basidiospores drawn in surface view or optical section. c. Gloeocystidia. d. Basidia at different developmental stages. Bars = 10 µm. Drawings by K. Reschke.
FIGURE. Gloeocantharellus salmonicolor (TH0817, holotype). a. Basidiocarps. b. Pileus with yellow staining after application of KOH. c. Hymenophore with yellow staining after application of KOH. Bars a, b, c = 2 cm. a Photo by K. Reschke. b, c Photos by C.W. Fischer. in New and interesting species of Agaricomycetes from Panama
FIGURE. Gloeocantharellus salmonicolor (TH0817, holotype). a. Basidiocarps. b. Pileus with yellow staining after application of KOH. c. Hymenophore with yellow staining after application of KOH. Bars a, b, c = 2 cm. a Photo by K. Reschke. b, c Photos by C.W. Fischer.
FIGURE 0 in New and interesting species of Agaricomycetes from Panama
FIGURE 0. Maximum likelihood phylogram of Gloeocantharellus spp. based on ITS sequences. Rooted to Gomphus clavatus and Turbinellus floccosus. Bar = estimated changes/nucleotide. Support values above or below branches: Bayesian posterior probability/ maximum likelihood bootstrap.
FIGURE. Multiclavula caput-serpentis (KaiR699, holotype). a. Embankment covered by the thallus, with several groups of numerous basidiocarps (arrows). b. Thallus on soil, with a group of basidiocarps. c. Basidiocarps with different shapes, +/- lateral view. d. Basidiocarps from below-lateral. Bars a = 20 cm, b = 1 cm, c, d = 2 mm. Photos by K. Reschke. in New and interesting species of Agaricomycetes from Panama
FIGURE. Multiclavula caput-serpentis (KaiR699, holotype). a. Embankment covered by the thallus, with several groups of numerous basidiocarps (arrows). b. Thallus on soil, with a group of basidiocarps. c. Basidiocarps with different shapes, +/- lateral view. d. Basidiocarps from below-lateral. Bars a = 20 cm, b = 1 cm, c, d = 2 mm. Photos by K. Reschke.
FIGURE. Maximum likelihood phylogram of Multiclavula spp. based on ITS sequences. Rooted to Clavulina cristata. Bar = estimated changes/nucleotide. Support values above or below branches: Bayesian posterior probability/maximum likelihood bootstrap. in New and interesting species of Agaricomycetes from Panama
FIGURE. Maximum likelihood phylogram of Multiclavula spp. based on ITS sequences. Rooted to Clavulina cristata. Bar = estimated changes/nucleotide. Support values above or below branches: Bayesian posterior probability/maximum likelihood bootstrap.
FIGURE. Microscopic structures of Humidicutis roseorubra (KaiR621, holotype). a. Pileipellis and upper pileitrama. b. Basidia with toruloid clamps at different developmental stages. c. Basidiospores. Bars a = 20 µm, b, c = 10 µm. Drawings by K. Reschke. in New and interesting species of Agaricomycetes from Panama
FIGURE. Microscopic structures of Humidicutis roseorubra (KaiR621, holotype). a. Pileipellis and upper pileitrama. b. Basidia with toruloid clamps at different developmental stages. c. Basidiospores. Bars a = 20 µm, b, c = 10 µm. Drawings by K. Reschke.
FIGURE. Basidiocarps of species of Agaricales in Panama. a. Asterophora parasitica (PAN180) on decayed basidiocarp of Russula sp. b–c. Campanophyllum probiscideum. b. On bark of a standing tree (KaiR434). c. From above and below (KaiR434). d–e. Rhodocollybia tablensis. d. (KaiR484). e. (PAN238). f. Cantharocybe brunneovelutina (PAN260). g. Pluteus hongoi (PAN413). h. Tetrapyrgos atrocyanea (KaiR395). Bars a = 1 cm, b, c, f, g = 2 cm, d, e = 5 cm, h = 0.5 cm. a, f, g Photos by H. Lotz-Winter. b, c, d, h Photos by K. Reschke. e Photo by O. Koukol. in New and interesting species of Agaricomycetes from Panama
FIGURE. Basidiocarps of species of Agaricales in Panama. a. Asterophora parasitica (PAN180) on decayed basidiocarp of Russula sp. b–c. Campanophyllum probiscideum. b. On bark of a standing tree (KaiR434). c. From above and below (KaiR434). d–e. Rhodocollybia tablensis. d. (KaiR484). e. (PAN238). f. Cantharocybe brunneovelutina (PAN260). g. Pluteus hongoi (PAN413). h. Tetrapyrgos atrocyanea (KaiR395). Bars a = 1 cm, b, c, f, g = 2 cm, d, e = 5 cm, h = 0.5 cm. a, f, g Photos by H. Lotz-Winter. b, c, d, h Photos by K. Reschke. e Photo by O. Koukol.
FIGURE. Basidiocarps of Humidicutis roseorubra. a. KaiR621. b. KaiR622. c. KaiR622 close-up, depicting fibrillose aspect of pileal surface. Bars a, b = 2 cm, c = 1cm. Photos by K. Reschke. in New and interesting species of Agaricomycetes from Panama
FIGURE. Basidiocarps of Humidicutis roseorubra. a. KaiR621. b. KaiR622. c. KaiR622 close-up, depicting fibrillose aspect of pileal surface. Bars a, b = 2 cm, c = 1cm. Photos by K. Reschke.
FIGURE. Maximum likelihood phylogram of Humidicutis spp. based on ITS sequences. Rooted to Humidicutis marginata. Bar = estimated changes/nucleotide. Support values above or below branches: Bayesian posterior probability/maximum likelihood bootstrap. in New and interesting species of Agaricomycetes from Panama
FIGURE. Maximum likelihood phylogram of Humidicutis spp. based on ITS sequences. Rooted to Humidicutis marginata. Bar = estimated changes/nucleotide. Support values above or below branches: Bayesian posterior probability/maximum likelihood bootstrap.
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.