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3,507 results for “Species identification”
Figure 2 from: San Martín G, Worsfold TM (2015) Guide and keys for the identification of Syllidae (Annelida, Phyllodocida) from the British Isles (reported and expected species). ZooKeys 488: 1-29. https://doi.org/10.3897/zookeys.488.9061
Figure 2 - Lateral view of parapodia of: A Syllis amica, dorsal cirrus moniliform and long B Nudisyllis pulligera, dorsal cirrus smooth and long C Parapionosyllis brevicirra (SF. Exogoninae), dorsal cirrus smooth and short D Epigamia labordai (SF. Autolytinae), dorsal cirrus smooth, short, without ventral cirrus E anterior end, dorsal view of Syllides fulvus (SF. Anoplosyllinae), without any pharyngeal armature F trepan, without middorsal tooth of Myrianida convoluta (SF. Autolytinae) G everted pharynx of Eusyllis assimilis (SF. Eusyllinae), showing an incomplete trepan and middorsal tooth H anterior end of Odontosyllis fulgurans (SF. Eusyllinae), with an incomplete trepan, teeth directed to posterior part of body.
Figure 1 from: San Martín G, Worsfold TM (2015) Guide and keys for the identification of Syllidae (Annelida, Phyllodocida) from the British Isles (reported and expected species). ZooKeys 488: 1-29. https://doi.org/10.3897/zookeys.488.9061
Figure 1 - Anterior end of: A Syllis amica (SF. Syllinae), body cylindrical, smooth surface, two pairs of tentacular cirri, antennae, tentacular and dorsal cirri moniliform, nuchal organs as ciliated pits, palps basally fused B Nudisyllis pulligera (SF. Eusyllinae), body cylindrical, smooth surface, two pairs of tentacular cirri, antennae, tentacular and dorsal cirri smooth, nuchal organs as ciliated pits, palps free C Trypanosyllis coeliaca (SF. Syllinae), body flattened, smooth surface, two pairs of tentacular cirri, antennae, tentacular and dorsal cirri moniliform, nuchal organs as ciliated pits, palps free (see figure D) D Same species, prostomium in ventral view E Sphaerosyllis pirifera (SF. Exogoninae), body cylindrical, papillated surface, single pair of tentacular cirri, antennae, tentacular and dorsal cirri smooth and short, nuchal organs as ciliated pits, palps totally fused F Myrianida convoluta (SF. Autolytinae), body cylindrical, smooth surface, two pairs of tentacular cirri, antennae, tentacular and dorsal cirri smooth, nuchal lappets, palps totally fused, pharynx coiled.
Figures 1-6 from: Bossert S (2015) Recognition and identification of bumblebee species in the Bombus lucorum-complex (Hymenoptera, Apidae) – A review and outlook. Deutsche Entomologische Zeitschrift 62(1): 19-28. https://doi.org/10.3897/dez.62.9000
Figures 1-6 - Shape of first collar as described in the literature. Head and parts of the mesosoma of the respective species are shown in a lateral view. 1–2. Bombus lucorum; 3–4. Bombus cryptarum; 5–6. Bombus magnus. The drawings were provided by Johann Neumayer and are based on Bertsch et al. (2004).
Figures 7-9 from: Bossert S (2015) Recognition and identification of bumblebee species in the Bombus lucorum-complex (Hymenoptera, Apidae) – A review and outlook. Deutsche Entomologische Zeitschrift 62(1): 19-28. https://doi.org/10.3897/dez.62.9000
Figures 7-9 - Labrum characters in frontal view. 7. Bombus lucorum; 8. Bombus cryptarum 9. Bombus magnus. The drawings were provided by Johann Neumayer and are based on Rasmont (1984).
Figure 2 from: Rousse P, van Noort S (2014) Afrotropical Ophioninae (Hymenoptera, Ichneumonidae): an update of Gauld and Mitchell's revision, including two new species and an interactive matrix identification key. ZooKeys 456: 59-73. https://doi.org/10.3897/zookeys.456.8140
Figure 2 - Enicospilus maxipol Holotype female. A habitus lateral view B wings C head anterio-ventral view D head dorsal view E head, mesosoma, lateral view F mesosoma, dorsal view.
Figure 4 from: Rousse P, van Noort S (2014) Afrotropical Ophioninae (Hymenoptera, Ichneumonidae): an update of Gauld and Mitchell's revision, including two new species and an interactive matrix identification key. ZooKeys 456: 59-73. https://doi.org/10.3897/zookeys.456.8140
Figure 4 - Enicospilus gauldetmitchellorum Holotype female. A habitus lateral view B wings C head anterio-ventral view D propodeum dorsal view E fore tibia, mid tibia F fore tarsal claws.
Figure 3 from: Rousse P, van Noort S (2014) Afrotropical Ophioninae (Hymenoptera, Ichneumonidae): an update of Gauld and Mitchell's revision, including two new species and an interactive matrix identification key. ZooKeys 456: 59-73. https://doi.org/10.3897/zookeys.456.8140
Figure 3 - Enicospilus maxipol Holotype female. A fore tibia B fore tibial apex with spur, first tarsal segment C fore tarsal claws D data labels.
Figure 3 from: Rubio GD, Argañaraz CI, Gleiser RM (2015) A new species of jumping spider Neonella Gertsch, with notes on the genus and male identification key (Araneae, Salticidae). ZooKeys 532: 1-14. https://doi.org/10.3897/zookeys.532.6078
Figure 3 - Neonella montana Galiano, 1988; A–E male (IBSI-Ara 00243); A, B habitus in dorsal (A) and lateral (B) view C, D male palp in ventral (C) and prolateral (D) view E detail of EB in dorsal view. (EB = embolus base; DS = dorsal scutum; E = embolus; PA = patellar apophysis; LE = lamella of embolus; PSPL = prolateral spermophore loop; RSPL = retrolateral spermophore loop; TL = tegular lobe). Scale bars: 0.5 mm (A, B); 0.09 mm (C, D).
Figure 2 from: Rubio GD, Argañaraz CI, Gleiser RM (2015) A new species of jumping spider Neonella Gertsch, with notes on the genus and male identification key (Araneae, Salticidae). ZooKeys 532: 1-14. https://doi.org/10.3897/zookeys.532.6078
Figure 2 - Neonella acostae sp. n.; A–C male (holotype) A dorsal habitus B, C male palp in ventral (B) and retrolateral (C) view D, E female (IBSI-Ara 00242) epigynum in ventral (D) and dorsal (E) view. (EB = embolus base; CD = copulatory duct; CO = copulatory opening; DS = dorsal scutum; E = embolus; FD = fertilization duct; PA = patellar apophysis; S = spermatheca; RSPL = retrolateral spermophore loop; SP = spermophore; TL = tegular lobe). Scale bars: 0.5 mm (A); 0.1 mm (B, C); 0.05 mm (D, E).
Figure 4 from: Rubio GD, Argañaraz CI, Gleiser RM (2015) A new species of jumping spider Neonella Gertsch, with notes on the genus and male identification key (Araneae, Salticidae). ZooKeys 532: 1-14. https://doi.org/10.3897/zookeys.532.6078
Figure 4 - Schematic identification for species of Neonella Gertsch, 1936; A–L drawings modified from the original papers and descriptions (sources in method section). (CO = copulatory opening; E = embolus; MS = median septum; PA = patellar apophysis; LE = lamella of embolus; W = window of epigynum).
Figure 1 from: Rubio GD, Argañaraz CI, Gleiser RM (2015) A new species of jumping spider Neonella Gertsch, with notes on the genus and male identification key (Araneae, Salticidae). ZooKeys 532: 1-14. https://doi.org/10.3897/zookeys.532.6078
Figure 1 - A Sampling location, positives sites for Neonella species and their distribution. Key: black circle = negative sites (further localities that were sampled but that did not yield Neonella spp.); white circle = Neonella montana; white triangle = Neonella acostae; white circle with a cross = Neonella acostae and Neonella montana; white circle with a X = Neonella montana and Neonella minuta; white squares = Neonella acostae, Neonella minuta, and Neonella montana B Typical location/habitat for Neonella acostae C Typical location/habitat for Neonella montana.
Figure 3 from: Rozo-Lopez P, Mengual X (2015) Mosquito species (Diptera, Culicidae) in three ecosystems from the Colombian Andes: identification through DNA barcoding and adult morphology. ZooKeys 513: 39-64. https://doi.org/10.3897/zookeys.513.9561
Figure 3 - Maximum likelihood tree of the barcoding sequences of mosquito species listed for the Neotropics. Terminal branches have been collapsed in order to save space (see original tree in Suppl. material 7 and 8). Branches in colors indicate non-monophyletic genera. Red clusters represent groups with problems to discriminate species. Names with green asterisk indicate non-monophyletic species. Bootstrap values above 60 (1,000 replicates) are given at the nodes.
Figure 1 from: Rozo-Lopez P, Mengual X (2015) Mosquito species (Diptera, Culicidae) in three ecosystems from the Colombian Andes: identification through DNA barcoding and adult morphology. ZooKeys 513: 39-64. https://doi.org/10.3897/zookeys.513.9561
Figure 1 - Map of Colombia indicating the sampling sites of mosquitoes collected in this study: Belmira, Antioquia, paramo, 3,200 masl (red circle); Rio Sucio, Caldas, cloud forest, 1,960 masl (green circle); La Pintada, Antioquia, tropical dry forest, 660 masl (blue circle); Supia, Caldas, rural area, 1,150 masl (pink circle). Modified from Instituo Geográfico Agustín Codazzi (www.igac.gov.co) and Wikimedia Commons (by Addicted04).
Figure 2 from: Rozo-Lopez P, Mengual X (2015) Mosquito species (Diptera, Culicidae) in three ecosystems from the Colombian Andes: identification through DNA barcoding and adult morphology. ZooKeys 513: 39-64. https://doi.org/10.3897/zookeys.513.9561
Figure 2 - Neighbour-Joining tree of the barcoding sequences of mosquito species listed for Neotropics, based on Tamura-Nei genetic distances. Terminal branches have been collapsed in order to save space (see original tree in Suppl. material 5 and 6). Branches in colors indicate non-monophyletic genera. Red clusters represent groups with problems to discriminate species. Names with green asterisk indicate non- monophyletic species. Bootstrap values above 60 (1,000 replicates) are given at the nodes.
Figure 27 from: Hita Garcia F, Fisher BL (2015) Taxonomy of the hyper-diverse ant genus Tetramorium Mayr in the Malagasy region (Hymenoptera, Formicidae, Myrmicinae) – first record of the T. setigerum species group and additions to the Malagasy species groups with an updated illustrated identification key. ZooKeys 512: 121-153. https://doi.org/10.3897/zookeys.512.9860
Figure 27 - Petiole and postpetiole in profile. A Tetramorium aherni (CASENT0045755) B Tetramorium voasary (CASENT0247162) C Tetramorium ambanizana (CASENT0189238) D Tetramorium avaratra (CASENT0445167) E Tetramorium steinheili (CASENT0101258) F Tetramorium yammer (CASENT0042832) G Tetramorium alperti (CASENT0042547) H Tetramorium dysalum (CASENT0037931).
Figure 4 from: Hita Garcia F, Fisher BL (2015) Taxonomy of the hyper-diverse ant genus Tetramorium Mayr in the Malagasy region (Hymenoptera, Formicidae, Myrmicinae) – first record of the T. setigerum species group and additions to the Malagasy species groups with an updated illustrated identification key. ZooKeys 512: 121-153. https://doi.org/10.3897/zookeys.512.9860
Figure 4 - Anterior head in dorsal view (anterior clypeal margin within black ellipses). A Tetramorium bicarinatum (CASENT0060334) B Tetramorium mahafaly (CASENT0448984) C Tetramorium simillimum (CASENT0135001).
Figure 26 from: Hita Garcia F, Fisher BL (2015) Taxonomy of the hyper-diverse ant genus Tetramorium Mayr in the Malagasy region (Hymenoptera, Formicidae, Myrmicinae) – first record of the T. setigerum species group and additions to the Malagasy species groups with an updated illustrated identification key. ZooKeys 512: 121-153. https://doi.org/10.3897/zookeys.512.9860
Figure 26 - Body in profile (black arrows indicate eyes; wait segments within black ellipses). A Tetramorium ambatovy (CASENT0124721) B Tetramorium fhg-mogw (CASENT0056452) C Tetramorium zenatum (CASENT0344941).
Figure 23 from: Hita Garcia F, Fisher BL (2015) Taxonomy of the hyper-diverse ant genus Tetramorium Mayr in the Malagasy region (Hymenoptera, Formicidae, Myrmicinae) – first record of the T. setigerum species group and additions to the Malagasy species groups with an updated illustrated identification key. ZooKeys 512: 121-153. https://doi.org/10.3897/zookeys.512.9860
Figure 23 - Petiole and postpetiole in profile. A Tetramorium sada (CASENT0443274) B Tetramorium nosybe (CASENT0422207) C Tetramorium olana (CASENT0044485) D Tetramorium mackae (CASENT0189093) E Tetramorium aherni (CASENT0045755) F Tetramorium alperti (CASENT0042547) G Tetramorium ambatovy (CASENT0124721) H Tetramorium avaratra (CASENT0445167).
Figure 22 from: Hita Garcia F, Fisher BL (2015) Taxonomy of the hyper-diverse ant genus Tetramorium Mayr in the Malagasy region (Hymenoptera, Formicidae, Myrmicinae) – first record of the T. setigerum species group and additions to the Malagasy species groups with an updated illustrated identification key. ZooKeys 512: 121-153. https://doi.org/10.3897/zookeys.512.9860
Figure 22 - Mesosoma in dorsal view. A Tetramorium norvigi (CASENT0489037) B Tetramorium shamshir (CASENT0467696) C Tetramorium nosybe (CASENT0422207) D Tetramorium ranarum (CASENT0102392) E Tetramorium alperti (CASENT0042547) F Tetramorium isectum (CASENT0172829).
Figure 17 from: Hita Garcia F, Fisher BL (2015) Taxonomy of the hyper-diverse ant genus Tetramorium Mayr in the Malagasy region (Hymenoptera, Formicidae, Myrmicinae) – first record of the T. setigerum species group and additions to the Malagasy species groups with an updated illustrated identification key. ZooKeys 512: 121-153. https://doi.org/10.3897/zookeys.512.9860
Figure 17 - Head (without mandibles) in profile (antennal scrobe area within black ellipses); mesosoma in dorsal view; body and waist segments in profile. A, B Tetramorium plesiarum (CASENT0172831) C Tetramorium mars (CASENT0474279) D Tetramorium silvicola (CASENT0042828) E Tetramorium nassonowii (CASENT0195504) F Tetramorium adamsi (CASENT0247296) G Tetramorium dysalum (CASENT0102348) H, J, K Tetramorium zenatum (CASENT0102355; CASENT0344941) I Tetramorium fhg-vazi (CASENT0422522).
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Allen Brain Atlas
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International Brain Laboratory public data
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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.