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417 results for “IA”
Figures 8-10 from: Engel MS, Alqarni AS, Shebl MA, Iqbal J, Hinojosa-Díaz IA (2017) A new species of the carpenter bee genus Xylocopa from the Sarawat Mountains in southwestern Saudi Arabia (Hymenoptera, Apidae). ZooKeys 716: 29-41. https://doi.org/10.3897/zookeys.716.21150
Figures 8-10 - Female of Xylocopa (Koptortosoma) sarawatica Engel, sp. n. 8 Dorsal habitus 9 Facial view 10 Lateral habitus.
Figures 11-13 from: Engel MS, Alqarni AS, Shebl MA, Iqbal J, Hinojosa-Díaz IA (2017) A new species of the carpenter bee genus Xylocopa from the Sarawat Mountains in southwestern Saudi Arabia (Hymenoptera, Apidae). ZooKeys 716: 29-41. https://doi.org/10.3897/zookeys.716.21150
Figures 11-13 - Habitat at the Thy 'Ain type locality, near Al-Baha in Al-Baha Region, Saudi Arabia (photographs by M.S. Engel, May 2012). 11 The ancient village (the 'Marble Village') and surrounding vegetation 12 General vegetation at locality 13 Vegetation alongside part of small water seep.
Figures 4-7 from: Engel MS, Alqarni AS, Shebl MA, Iqbal J, Hinojosa-Díaz IA (2017) A new species of the carpenter bee genus Xylocopa from the Sarawat Mountains in southwestern Saudi Arabia (Hymenoptera, Apidae). ZooKeys 716: 29-41. https://doi.org/10.3897/zookeys.716.21150
Figures 4-7 - Male terminalia of Xylocopa (Koptortosoma) sarawatica Engel, sp. n. 4 Metasomal sterna VII+VIII 5 Genital capsule in profile 6 Genital capsule in ventral view 7 Genital capsule in dorsal view.
Supplementary information: Motor point stimulation activates fewer Ia-sensory nerves than peripheral nerve stimulation in human soleus muscle
Open the record for dataset details and reuse information.
Figure 3 from: Canché-Estrada IA, Ortiz-Díaz JJ, Tun-Garrido J (2018) Floristic affinities of the lowland savannahs of Belize and southern Mexico. PhytoKeys 96: 47-56. https://doi.org/10.3897/phytokeys.96.20097
Figure 3 Similarity dendrograms for the nine savannahs of Belize and southern Mexico using 113 species of trees. 3A: Built using all species. 3B: Built taking out single-site species.
Figure 2 from: Canché-Estrada IA, Ortiz-Díaz JJ, Tun-Garrido J (2018) Floristic affinities of the lowland savannahs of Belize and southern Mexico. PhytoKeys 96: 47-56. https://doi.org/10.3897/phytokeys.96.20097
Figure 2 Similarity dendrograms for the nine savannahs of Belize and southern Mexico using 915 species. 2A: Built using all species. 2B: Built taking out single-site species.
Figure 1 from: Chen H, Al-Shehbaz IA, Yue J, Sun H (2018) New insights into the taxonomy of tribe Euclidieae (Brassicaceae), evidence from nrITS sequence data. PhytoKeys 100: 125-139. https://doi.org/10.3897/phytokeys.100.24756
Figure 1 Phylogenetic tree resulting from Bayesian analysis of the ITS sequences of the 88 Brassicaceae species, of which 28 genera and 82 species in Euclidieae. Posterior probabilities are indicated above branches. Bootstrap support values (>50%) are noted below branches.
Figure 4 from: Hao G, Al-Shehbaz IA, Zhang L, Guo X, Bi H, Xu S, Liu J (2018) Eutrema nanum (Brassicaceae), a new species from Chola Shan, Southwest China. PhytoKeys 109: 17-25. https://doi.org/10.3897/phytokeys.109.27049
Figure 4 The Maximum Likelihood tree based on analysis of ITS (A) and Three cpDNA regions (B). Numbers above branches are maximum likelihood bootstrap support values and maximum parsimony bootstrap support values. '-' represents <50%.
Figure 3 from: Brock JR, Mandáková T, Lysak MA, Al-Shehbaz IA (2019) Camelina neglecta (Brassicaceae, Camelineae), a new diploid species from Europe. PhytoKeys 115: 51-57. https://doi.org/10.3897/phytokeys.115.31704
Figure 3 Trichomes of lowermost part of stem in Camelinaneglecta. Greenhouse-grown plants from seeds of Besancon s.n. (USDA accession 650135). Scale bar: 400 μm.
Figure 2 from: Brock JR, Mandáková T, Lysak MA, Al-Shehbaz IA (2019) Camelina neglecta (Brassicaceae, Camelineae), a new diploid species from Europe. PhytoKeys 115: 51-57. https://doi.org/10.3897/phytokeys.115.31704
Figure 2 Mitotic chromosomes of Camelinaneglecta. Greenhouse-grown plants from seeds of Besancon s.n. (USDA accession 650135). Scale bar: 10 μm.
Figure 4 from: Brock JR, Mandáková T, Lysak MA, Al-Shehbaz IA (2019) Camelina neglecta (Brassicaceae, Camelineae), a new diploid species from Europe. PhytoKeys 115: 51-57. https://doi.org/10.3897/phytokeys.115.31704
Figure 4 SEM image of Camelinaneglecta seed. Greenhouse-grown plants from seeds of Besancon s.n. (USDA accession 650135). Scale bar: 1 mm.
Figure 4 from: Chen H, Al-Shehbaz IA, Yue J, Sun H (2019) Sisymbrium linifolium and Sisymbriopsis schugnana (Brassicaceae), two new records from Xinjiang, China. PhytoKeys 119: 39-52. https://doi.org/10.3897/phytokeys.119.32985
Figure 4 Multiple sequence alignment (a) and molecular phylogeny (b) based on ITS sequences. Bayesian posterior probability (PP) and MP bootstrap values (BS) are showed above branches in a following of PP / BS (only shown if > 50%). The newly found Sisymbriumlinifolium were in grey.
Figure 2 from: Chen H, Al-Shehbaz IA, Yue J, Sun H (2019) Sisymbrium linifolium and Sisymbriopsis schugnana (Brassicaceae), two new records from Xinjiang, China. PhytoKeys 119: 39-52. https://doi.org/10.3897/phytokeys.119.32985
Figure 2 Sisymbriopsisschugnana Botsch. & Tzvelev. A flowering plant B flowers C immature fruits.
Figure 3 from: Chen H, Al-Shehbaz IA, Yue J, Sun H (2019) Sisymbrium linifolium and Sisymbriopsis schugnana (Brassicaceae), two new records from Xinjiang, China. PhytoKeys 119: 39-52. https://doi.org/10.3897/phytokeys.119.32985
Figure 3 Distribution of Sisymbriumlinifolium and Sisymbriopsisschugnana. Black dots: Sisymbriumlinifolium in North America (modified from Al-Shehbaz et al. 2010) and the new population in Xinjiang, China; red squares: Sisymbriopsisschugnana in Tajikistan and Xinjiang, China.
Figure 3 from: Suárez-Morales E, Castellanos-Osorio IA (2019) A new species of Monstrilla (Copepoda, Monstrilloida) from the plankton of a large coastal system of the northwestern Caribbean with a key to species. ZooKeys 876: 111-123. https://doi.org/10.3897/zookeys.876.38400
Figure 3 Monstrilla chetumalensis sp. nov., male holotype (A–E, C) A anterior part of cephalosome ventral view; arrow indicates nipple-like processes; s = sensilla B antennule segments 1–4 in dorsal view showing setal elements (sensu Grygier and Ohtsuka 1995) C fifth antennulary segment with setal elements (sensu Huys et al. 2007) D urosome lateral view E genital complex with lappets ventral view. Scale bars: 200 μm (A, B), 100 μm (C, D), 50 μm (E).
Figure 2 from: Suárez-Morales E, Castellanos-Osorio IA (2019) A new species of Monstrilla (Copepoda, Monstrilloida) from the plankton of a large coastal system of the northwestern Caribbean with a key to species. ZooKeys 876: 111-123. https://doi.org/10.3897/zookeys.876.38400
Figure 2 Monstrilla chetumalensis sp. nov., male holotype A habitus dorsal view B habitus lateral view, arrow indicates medial ventral protuberance C urosome ventral view; arrow indicates ventral globular processes on fifth pedigerous somite D urosome lateral view; arrow indicates ventral globular processes on fifth pedigerous somite E genital complex with lappets, ventral view. Scale bars: 100 μm. (A–C)
Figure 4 from: Suárez-Morales E, Castellanos-Osorio IA (2019) A new species of Monstrilla (Copepoda, Monstrilloida) from the plankton of a large coastal system of the northwestern Caribbean with a key to species. ZooKeys 876: 111-123. https://doi.org/10.3897/zookeys.876.38400
Figure 4 Monstrilla chetumalensis sp. nov., male holotype A leg 1 B leg 2 C leg 3 D leg 4. Scale bars: 100 μm.
Figure 10 from: Bhat MY, Channa A, Paray BA, Al-Sadoon MK, Rather IA (2019) Morphological study of the gastrointestinal tract of the snow trout, Schizothorax esocinus (Actinopterygii: Cypriniformes). Zoologia 36: 1-7. https://doi.org/10.3897/zoologia.36.e31791
Figure 10 Scanning electron micrograph of rectum showing irregular mucosal folds (MF1), mucous (↓) and pores (→). Scale bar: 200 µm.
Figures 6-9 from: Bhat MY, Channa A, Paray BA, Al-Sadoon MK, Rather IA (2019) Morphological study of the gastrointestinal tract of the snow trout, Schizothorax esocinus (Actinopterygii: Cypriniformes). Zoologia 36: 1-7. https://doi.org/10.3897/zoologia.36.e31791
Figures 6-9 Scanning electron micrograph of intestinal bulb showing: (6) primary or major (MF1) and secondary mucosal folds (MF2), covered with thin film of Mucin (M). The zig-zag arrangement of primary folds is clearly visible in this region (←); (7) microridges (MR); (8) primary or major mucosal folds (MF1) and the zig-zag invagination (←); (9) secondary folds (MF2). Scale bar: 6 = 500 µm, 7 = 10 µm, 8 = 100 µm, 9 = 20 µm.
Figures 1-3 from: Bhat MY, Channa A, Paray BA, Al-Sadoon MK, Rather IA (2019) Morphological study of the gastrointestinal tract of the snow trout, Schizothorax esocinus (Actinopterygii: Cypriniformes). Zoologia 36: 1-7. https://doi.org/10.3897/zoologia.36.e31791
Figures 1-3 Scanning electron micrograph of buccopharynx showing: (1) primary longitudinal (MF1) and secondary folds (MF2); (2) goblet cell (GC) and stratified epithelial cells (SEC); (3) microridges (MR). Scale bars: 1 = 200 µm, 2 = 20 µm, 3 = 10 µm.
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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.