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446 results for “taxonomic position”
Taxonomic position of Betula obscura and Betula pendula var. carelica – analyses of molecular markers and leaves morphology
<p>The file includes 526 AFLP loci of 76 individuals belonging to five species and one variety of <em>Betula</em> genus.</p>
Figure 1 from: Li G, Lwin YH, Yang B, Qin T, Phothisath P, Maung K-W, Quan R-C, Li S (2020) Taxonomic revision and phylogenetic position of the flying squirrel genus Biswamoyopterus (Mammalia, Rodentia, Sciuridae, Pteromyini) on the northern Indo-China peninsula. ZooKeys 939: 65-85. https://doi.org/10.3897/zookeys.939.31764
Figure 1 Phylogeny of Pteromyini genera. Cited from Mercer and Roth (2003).
Figure 3 from: Naseka AM, Renaud CB (2020) Morphology-based taxonomic re-assessment of the Arctic lamprey, Lethenteron camtschaticum (Tilesius, 1811) and taxonomic position of other members of the genus. ZooKeys 991: 1-67. https://doi.org/10.3897/zookeys.991.54938
Figure 3 Syntype of Petromyzon kessleri, TGU 3 [no. 3699 in Ioganzen (1935b: table 3)], 182 mm TL.
Figure 4 from: Naseka AM, Renaud CB (2020) Morphology-based taxonomic re-assessment of the Arctic lamprey, Lethenteron camtschaticum (Tilesius, 1811) and taxonomic position of other members of the genus. ZooKeys 991: 1-67. https://doi.org/10.3897/zookeys.991.54938
Figure 4 Syntypes of Lampetra mitsukurii, ZMB 20638, 138.3 (a) and 140.1 (b) mm TL.
New taxonomic position and neotype designation for the conoidean gastropod Pleurotoma patagonica d'Orbigny, 1841
<p>Neotype of <em>Bela patagonica </em>(d'Orbigny, 1841) (MACN-In43983) collected alive at Las Grutas, San Antonio Oeste, Río Negro Province, Argentina, in 8 m depth.</p>
Figure 2 from: Ezzine IK, Pfarrer B, Dimassi N, Said K, Neubert E (2017) At home at least: the taxonomic position of some north African Xerocrassa species (Pulmonata, Geomitridae). ZooKeys 712: 1-27. https://doi.org/10.3897/zookeys.712.13066
Figure 2 - Distribution of Xerocrassa latastei, Xerocrassa latasteopsis and Xerocrassa lacertara.
Figure 9 [Continued] from: Ezzine IK, Pfarrer B, Dimassi N, Said K, Neubert E (2017) At home at least: the taxonomic position of some north African Xerocrassa species (Pulmonata, Geomitridae). ZooKeys 712: 1-27. https://doi.org/10.3897/zookeys.712.13066
Figure 9 [Continued] -
Figure 2 from: Kaboli M, Farashi A, Rezaei H, Naghavi M, Coad B (2014) Reassessment of the taxonomic position of Iranocypris typhlops Bruun & Kaiser, 1944 (Actinopterygii, Cyprinidae). ZooKeys 374: 69-77. https://doi.org/10.3897/zookeys.374.6617
Figure 2 - Location of Iranocypris typhlops habitat in Bagh-e Levan.
Figure 1 from: Moon S, Youn S, Soh H (2014) Description of Parvocalanus leei sp. n. (Copepoda, Calanoida, Paracalanidae) in Western Korea, with comments on the taxonomic position of Paracalanus arabiensis Kesarkar & Anil, 2010. ZooKeys 456: 29-47. https://doi.org/10.3897/zookeys.456.7741
Figure 1 - Map of sampling stations in the shallow waters of Mokpo, southern Korea.
FIGURES 7–8. Issidae, forewing. 7 in On the taxonomic position of the genera Krundia, Breukoscelis, and Uphodato (Hemiptera, Auchenorrhyncha, Fulgoroidea) described from the Insect Limestone of the Isle of Wight
FIGURES 7–8. Issidae, forewing. 7. Kovacsiana abyssinica Synave (after Gnezdilov, 2017, modified); 8. Waorania jaguarina Gnezdilov et Bartlett (after Gnezdilov & Bartlett, 2018).
FIGURES 1–4. Eucarpiini, forewing. 1 in On the taxonomic position of the genera Krundia, Breukoscelis, and Uphodato (Hemiptera, Auchenorrhyncha, Fulgoroidea) described from the Insect Limestone of the Isle of Wight
FIGURES 1–4. Eucarpiini, forewing. 1. Uphodato garwoterus Szwedo; 2. U. vadimgratshevi (Szwedo); 3. U. phrikkosus (Szwedo); 4. Dilacreon orpheus (Fennah). 1–3 after Szwedo et al. (2019), modified, 4 after Fennah (1956).
FIGURES 5–6. Bucini, forewing. 5 in On the taxonomic position of the genera Krundia, Breukoscelis, and Uphodato (Hemiptera, Auchenorrhyncha, Fulgoroidea) described from the Insect Limestone of the Isle of Wight
FIGURES 5–6. Bucini, forewing. 5. Krundia korba Szwedo (after Szwedo et al. (2019), modified); 6. Buca truncoptera Gnezdilov, Bartlett et Bourgoin (after Gnezdilov et al. (2018), modified).
FIGURE 10 in Redescriptions of Stenocypris major major (Baird, 1859) and Stenocypris major sketi Petkovski & Meisch, 1996 (Ostracoda: Crustacea), with discussion on their taxonomic position
FIGURE 10 Distribution map of Stenocypris major (Baird, 1859) (black circle) and Stenocypris sketi Petkovski & Meisch, 1996 (white circle) in the Eastern part of Thailand. Numbers refer to the localities in Table 1.
FIGURE 9 in Redescriptions of Stenocypris major major (Baird, 1859) and Stenocypris major sketi Petkovski & Meisch, 1996 (Ostracoda: Crustacea), with discussion on their taxonomic position
FIGURE 9 Valves (internal view) of Stenocypris major (Baird, 1859) (A–D) and Stenocypris sketi Petkovski & Meisch, 1996 (E–H). A. LV (MSU-ZOC.280). B. RV (ditto). C. LV (MSU-ZOC.284). D. RV (ditto). E. LV (MSU-ZOC.288). F. RV (ditto). G. LV (MSU-ZOC.289). H. RV (ditto). Scale bars: 200 μm.
FIGURE 8 in Redescriptions of Stenocypris major major (Baird, 1859) and Stenocypris major sketi Petkovski & Meisch, 1996 (Ostracoda: Crustacea), with discussion on their taxonomic position
FIGURE 8. Stenocypris sketi Petkovski & Meisch, 1996, female (MSU-ZOC.288). A. right CR. B. Left CR. C. CR attachment. Scale bars: 200 μm.
FIGURE 5 in Redescriptions of Stenocypris major major (Baird, 1859) and Stenocypris major sketi Petkovski & Meisch, 1996 (Ostracoda: Crustacea), with discussion on their taxonomic position
FIGURE 5. Stenocypris sketi Petkovski & Meisch, 1996, female (MSU-ZOC.288). A. LV, interior view. B. anterior part of LV, interior view. C. posterior part of LV, interior view. D. RV, interior view. E. anterior part of RV, interior view. F. posterior part of RV, interior view. G. posterior-dorsal expansion on LV. H. posterior-dorsal expansion on RV. I. muscle scars of LV. Scale bars: 200 μm for A, D, 100 μm for B–C, E–H, 50 μm for I.
FIGURE 3 in Redescriptions of Stenocypris major major (Baird, 1859) and Stenocypris major sketi Petkovski & Meisch, 1996 (Ostracoda: Crustacea), with discussion on their taxonomic position
FIGURE 3. Stenocypris major (Baird, 1859), female (MSU-ZOC.279). A. Mx1. B. T1. C. Endopodite of T1. D. T2. E. T3. Scale bars: 100 μm for A–C, 115 μm for D, 140 μm for E.
FIGURE 4 in Redescriptions of Stenocypris major major (Baird, 1859) and Stenocypris major sketi Petkovski & Meisch, 1996 (Ostracoda: Crustacea), with discussion on their taxonomic position
FIGURE 4. Stenocypris major (Baird, 1859), female (MSU-ZOC.279). A. right CR. B. Left CR. C. CR attachment. Scale bars: 200 μm.
FIGURE 6 in Redescriptions of Stenocypris major major (Baird, 1859) and Stenocypris major sketi Petkovski & Meisch, 1996 (Ostracoda: Crustacea), with discussion on their taxonomic position
FIGURE 6. Stenocypris sketi Petkovski & Meisch, 1996, female (MSU-ZOC.288). A. A1. B. A2. C. Terminal part of A2. D. Md-coxa. E. Md-palp. Scale bars: 100 μm for A–D, 50 μm for E.
FIGURE 7 in Redescriptions of Stenocypris major major (Baird, 1859) and Stenocypris major sketi Petkovski & Meisch, 1996 (Ostracoda: Crustacea), with discussion on their taxonomic position
FIGURE 7. Stenocypris sketi Petkovski & Meisch, 1996, female (MSU-ZOC.288). A. Mx1. B. T1. C. T2. D. T3. E. Terminal part of T3. Scale bars: 100 μm for A–B, E, 200 μm for C–D.
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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.