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3,507 results for “Species identification”
Figure 2 from: Park B, Prous M, Lee J-W (2019) Taxonomic review of genus Empria Lepeletier & Serville (Hymenoptera, Tenthredinidae) in South Korea: morphological and molecular identification of two new species. Journal of Hymenoptera Research 74: 1-25. https://doi.org/10.3897/jhr.74.39299
Figure 2 Empria spp.: A, B, E, G, I, JE. wui, female from Shanxi, China and male from Gyeongbuk, South Korea C, D, F, H, K, LE. zhangi from Gangwon, South Korea A, C dorsal habitus, female B, D dorsal habitus, male E, F lateral habitus, female G, H lateral habitus, male I, K frontal head, female J, L frontal head, male. Scale bars: 2 mm (A–D); 1 mm (E–H); 0.5 mm (I–L).
Figure 1 from: Park B, Prous M, Lee J-W (2019) Taxonomic review of genus Empria Lepeletier & Serville (Hymenoptera, Tenthredinidae) in South Korea: morphological and molecular identification of two new species. Journal of Hymenoptera Research 74: 1-25. https://doi.org/10.3897/jhr.74.39299
Figure 1 Empria spp.: A, B, E, G, I, JE. candidata from Gangwon, South Korea C, D, F, H, K, LE. tridentis, female from Jeonnam and male from Gangwon, South Korea A, C dorsal habitus, female B, D dorsal habitus, male E, F lateral habitus, female G, H lateral habitus, male I, K frontal head, female J, L frontal head, male. Scale bars: 2 mm (A–D); 1 mm (E–H); 0.5 mm (I–L).
Figure 3 from: Park B, Prous M, Lee J-W (2019) Taxonomic review of genus Empria Lepeletier & Serville (Hymenoptera, Tenthredinidae) in South Korea: morphological and molecular identification of two new species. Journal of Hymenoptera Research 74: 1-25. https://doi.org/10.3897/jhr.74.39299
Figure 3 Empria lycroi sp. nov. from Primorsky Krai, Russia: A, C, E–G, K holotype, DEI-GISHym86081 B, D, H–J, L allotype, DEI-GISHym80769. A, B dorsal habitus C, D lateral habitus E, H dorsal head F, I frontal head G ventral abdomen at apex J sternum 9 K, L claw. Scale bars: 2 mm (A, B); 1 mm (C, D); 0.5 mm (E–J); 0.1 mm (K, L).
Supplementary material 1 from: Jiang N, Yang Q, Fan X-L, Tian C-M (2020) Identification of six Cytospora species on Chinese chestnut in China. MycoKeys 62: 1-25. https://doi.org/10.3897/mycokeys.62.47425
: Data type: (phylogram of Cytospora)
Figure 4 from: Jiang N, Yang Q, Fan X-L, Tian C-M (2020) Identification of six Cytospora species on Chinese chestnut in China. MycoKeys 62: 1-25. https://doi.org/10.3897/mycokeys.62.47425
Figure 4 Cytospora kuanchengensis on Castanea mollissima (BJFC-S1695). A, B Habit of conidiomata on branches C longitudinal section through conidiomata D transverse section of conidiomata E peridium F, G conidiogenous cells attached with conidia H conidia. Scale bars: 500 μm (B–D), 10 μm (E–G), 5 μm (H).
Figure 7 from: Jiang N, Yang Q, Fan X-L, Tian C-M (2020) Identification of six Cytospora species on Chinese chestnut in China. MycoKeys 62: 1-25. https://doi.org/10.3897/mycokeys.62.47425
Figure 7 Cytospora schulzeri on Castanea mollissima (BJFC-S1702). A, B Habit of conidiomata on branches C transverse section of conidiomata D longitudinal section through conidiomata E conidiogenous cells attached with conidia F conidia. Scale bars: 500 μm (B–D), 10 μm (E, F).
Figure 3 from: Jiang N, Yang Q, Fan X-L, Tian C-M (2020) Identification of six Cytospora species on Chinese chestnut in China. MycoKeys 62: 1-25. https://doi.org/10.3897/mycokeys.62.47425
Figure 3 Cytospora ceratospermopsis on Castanea mollissima (BJFC-S1699, BJFC-S1700). A, C Habit of conidiomata on branches B habit of ascomata on branches D transverse section of conidiomata E transverse section of ascomata F longitudinal section through conidiomata G longitudinal section through ascomata H, I asci J ascospores K conidiogenous cells with attached conidia L conidia. Scale bars: 500 μm (C–G), 10 μm (H–L).
Figure 2 from: Jiang N, Yang Q, Fan X-L, Tian C-M (2020) Identification of six Cytospora species on Chinese chestnut in China. MycoKeys 62: 1-25. https://doi.org/10.3897/mycokeys.62.47425
Figure 2 Maximum parsimony phylogram of Cytospora obtained from the combined matrix of ITS, LSU, ACT and RPB2 genes. Bootstrap value ≥ 50% for MP and ML analyses are presented at the first and second position. Scale bar = 200 nucleotide substitutions. The strains in the current study are in blue and ex-strains are marked with *.
Figure 9 from: Jiang N, Yang Q, Fan X-L, Tian C-M (2020) Identification of six Cytospora species on Chinese chestnut in China. MycoKeys 62: 1-25. https://doi.org/10.3897/mycokeys.62.47425
Figure 9 Cultures of Cytospora species from Castanea mollissima after 1 month at 25 °C. AC. myrtagenaBC. kuanchengensisCC. ceratospermopsisDC. leucostomaEC. xinglongensisFC. schulzeriA1–G2 cultures on PDA A3–G4 cultures on MEA A5–G6 fruiting bodies or hyphal masses produced on cultures
Figure 8 from: Jiang N, Yang Q, Fan X-L, Tian C-M (2020) Identification of six Cytospora species on Chinese chestnut in China. MycoKeys 62: 1-25. https://doi.org/10.3897/mycokeys.62.47425
Figure 8 Cytospora xinglongensis on Castanea mollissima (BJFC-S1706). A Habit of conidiomata on branches B longitudinal section through conidiomata C transverse section of conidiomata D peridium E conidiogenous cells attached with conidia F, G conidia. Scale bars: 500 μm (B, C), 10 μm (E–G).
Figure 6 from: Jiang N, Yang Q, Fan X-L, Tian C-M (2020) Identification of six Cytospora species on Chinese chestnut in China. MycoKeys 62: 1-25. https://doi.org/10.3897/mycokeys.62.47425
Figure 6 Cytospora myrtagena on Castanea mollissima (BJFC-S1704). A, B Habit of conidiomata on branches C, E transverse section of conidiomata D longitudinal section through conidiomata F, G conidiogenous cells attached with conidia H conidia. Scale bars: 500 μm (B–D), 5 μm (E, G), 10 μm (H).
Figure 5 from: Jiang N, Yang Q, Fan X-L, Tian C-M (2020) Identification of six Cytospora species on Chinese chestnut in China. MycoKeys 62: 1-25. https://doi.org/10.3897/mycokeys.62.47425
Figure 5 Cytospora leucostoma on Castanea mollissima (BJFC-S1697). A, B Habit of conidiomata on branches C transverse section of conidiomata D longitudinal section through conidiomata E conidiogenous cells attached with conidia F conidia. Scale bars: 500 μm (B–D), 10 μm (E, F).
Fig. 6 in A novel species of Heterophoxus Shoemaker, 1925 (Crustacea, Amphipoda, Phoxocephalidae) from southeast and southern Brazil, with an identification key to world species of the genus
Fig. 6. Heterophoxus shoemakeri sp. nov. A–F. Paratype, ♂ (UERJ 434). A. Head. B. Antenna 1. C. Antenna 2. D. Gnathopod 1. E. Gnathopod 2. F. Uropod 3. G. Paratype, subadult ♂ (UERJ 435). Antenna 2. Scale bars: A = 0.5 mm; B–F = 0.2 mm; G = 0.1 mm.
Fig. 5 in A novel species of Heterophoxus Shoemaker, 1925 (Crustacea, Amphipoda, Phoxocephalidae) from southeast and southern Brazil, with an identification key to world species of the genus
Fig. 5. Heterophoxus shoemakeri sp. nov., holotype, ♀ (UERJ 433). A. Epimeral plate 1. B. Epimeral plate 2. C. Epimeral plate 3. D. Uropod 1 E. Uropod 2. F. Uropod 3. G. Telson. Scale bars: A–E, G = 0.2 mm; F = 0.1 mm.
Fig. 4 in A novel species of Heterophoxus Shoemaker, 1925 (Crustacea, Amphipoda, Phoxocephalidae) from southeast and southern Brazil, with an identification key to world species of the genus
Fig. 4. Heterophoxus shoemakeri sp. nov., holotype, ♀ (UERJ 433). A. Pereopod 5. B. Pereopod 6. C. Pereopod 7. Scale bars = 0.2 mm.
Figures 4- 5 from: Takano T, Kimura S, Kano Y (2020) Host identification for the deep-sea snail genus Haliella with description of a new species (Caenogastropoda, Eulimidae). ZooKeys 908: 19-30. https://doi.org/10.3897/zookeys.908.46613
Figures 4- 5 Paratypes of Haliella seisuimaruae sp. nov., apertural and lateral views. 4 Paratype 1 (MPM Coll. No. 21596) 5 paratype 2 (AORI YK1520). Scale bar: 2 mm.
Figures 1-3 from: Takano T, Kimura S, Kano Y (2020) Host identification for the deep-sea snail genus Haliella with description of a new species (Caenogastropoda, Eulimidae). ZooKeys 908: 19-30. https://doi.org/10.3897/zookeys.908.46613
Figures 1-3 Holotype of Haliella seisuimaruae sp. nov. and its host sea urchin Brissopsis sp. cf. luzonica (both NSMT-Mo 79088). 1 Photograph of living holotype, attaching to latero-dorsal surface of sea urchin test 2 dorsal or aboral view of same host specimen 3 holotype, apertural and lateral views. Scale bars: 10 mm (2); 2 mm (3).
Figure 6 from: Takano T, Kimura S, Kano Y (2020) Host identification for the deep-sea snail genus Haliella with description of a new species (Caenogastropoda, Eulimidae). ZooKeys 908: 19-30. https://doi.org/10.3897/zookeys.908.46613
Figure 6 Maximum likelihood tree for host sea urchin (Brissopsis sp. cf. luzonica_TT2; NSMT-Mo 79088) and its relatives inferred from partial COI-gene sequences (655 bp). Numbers above branches denote bootstrap percentages (1000 replicates; values below 50% are not shown). DDBJ/EMBL/GenBank accession numbers are given for published sequences.
Figs 18–21 in Three new Cryptochetum Rondani, 1875 (Diptera: Cryptochetidae) from Yunnan Province, China and an identification key to Chinese species
Figs 18–21. Cryptochetum longilingum sp. nov., holotype, ♂ (CR154). 18. Dorsal view. 19. Lateral view. 20. Dorsal view. 21. Lateral view. Scale bars: 18–19 = 0.1 mm; 20–21 = 0.05 mm.
Figs 30–36 in Three new Cryptochetum Rondani, 1875 (Diptera: Cryptochetidae) from Yunnan Province, China and an identification key to Chinese species
Figs 30–36. Wings of seven species of Cryptochetum. 30. C. shaanxiense Xi & Yang, 2015. 31. C. yunnanum Xi & Yang, 2015. 32. C. nonagintaseptem Yang & Yang, 1998. 33. C. medianum Yang & Yang, 1998. 34. C. sinicum Yang & Yang, 1996. 35. C. acuticornutum Yang & Yang, 1998. 36. C. beijingense Yang & Yang, 1996. Scale bars = 0.1 mm.
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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.