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1,346 results for “rare species”
Figure 1 from: Silva MS, Carbayo F (2020) X-ray microcomputed tomography applied to the taxonomic study of rare material: redescriptions of seven of Schirch's Brazilian species of land planarians (Geoplanidae, Platyhelminthes). ZooKeys 910: 1-42. https://doi.org/10.3897/zookeys.910.39486
Figure 1 Obama itatiayana (Schirch 1929), syntype C A dorsal view B ventral view C original drawing by Schirch (1929).
Figure 4 from: Silva MS, Carbayo F (2020) X-ray microcomputed tomography applied to the taxonomic study of rare material: redescriptions of seven of Schirch's Brazilian species of land planarians (Geoplanidae, Platyhelminthes). ZooKeys 910: 1-42. https://doi.org/10.3897/zookeys.910.39486
Figure 4 Specimen MNRJ 8906 mislabeled as O. itatiayanaA in dorsal view B virtual sagittal section of pharynx and incipient copulatory apparatus, pixel size: 10 µm.
Figure 15 from: Silva MS, Carbayo F (2020) X-ray microcomputed tomography applied to the taxonomic study of rare material: redescriptions of seven of Schirch's Brazilian species of land planarians (Geoplanidae, Platyhelminthes). ZooKeys 910: 1-42. https://doi.org/10.3897/zookeys.910.39486
Figure 15 Pasipha plana (Schirch 1929). Syntype A virtual sagittal section of copulatory apparatus, pixel size: 12 µm.
Figure 27 from: Silva MS, Carbayo F (2020) X-ray microcomputed tomography applied to the taxonomic study of rare material: redescriptions of seven of Schirch's Brazilian species of land planarians (Geoplanidae, Platyhelminthes). ZooKeys 910: 1-42. https://doi.org/10.3897/zookeys.910.39486
Figure 27 Pseudogeoplana wetzeli (Schirch 1929) A dorsal view of syntype A in 80 % ethanol after being sectioned for histological processing B set of all syntypes with original labels C original illustration of G. wetzeli by Schirch (1929)D ventral view of syntype A in 80 % ethanol on graph paper E ventral view of cephalic region of syntype A F lateral view of cephalic region of syntype A in clove oil.
Figure 7 from: Silva MS, Carbayo F (2020) X-ray microcomputed tomography applied to the taxonomic study of rare material: redescriptions of seven of Schirch's Brazilian species of land planarians (Geoplanidae, Platyhelminthes). ZooKeys 910: 1-42. https://doi.org/10.3897/zookeys.910.39486
Figure 7 Paraba bresslaui (Schirch 1929), holotype. µCT-derived images and diagrammatic reconstruction A virtual transverse section of pre-pharyngeal region, pixel size: 7.99 µm B diagrammatic reconstruction of sagittal sections of pharynx C virtual horizontal section of testicular region, pixel size: 7.99 µm D virtual horizontal section of copulatory region, showing tangential section of ventral cutaneous muscle fibers, pixel size: 4.5 µm. Asterisk indicates artifact.
Figure 18 from: Silva MS, Carbayo F (2020) X-ray microcomputed tomography applied to the taxonomic study of rare material: redescriptions of seven of Schirch's Brazilian species of land planarians (Geoplanidae, Platyhelminthes). ZooKeys 910: 1-42. https://doi.org/10.3897/zookeys.910.39486
Figure 18 Pseudogeoplana arpi (Schirch 1929) A syntype A virtual sagittal section of pharynx, pixel size: 10 µm B syntype B diagrammatic reconstruction of sagittal sections of pharynx C syntype B photomicrograph of sagittal section of incipient copulatory apparatus D syntype B reconstruction of incipient copulatory apparatus.
Figure 26 from: Silva MS, Carbayo F (2020) X-ray microcomputed tomography applied to the taxonomic study of rare material: redescriptions of seven of Schirch's Brazilian species of land planarians (Geoplanidae, Platyhelminthes). ZooKeys 910: 1-42. https://doi.org/10.3897/zookeys.910.39486
Figure 26 Pseudogeoplana schirchi (Schirch 1929). Holotype. A Photomicrograph of a sagittal section of anterior extremity B virtual sagittal section showing pharyngeal region, pixel size: 9 µm.
Figure 20 from: Silva MS, Carbayo F (2020) X-ray microcomputed tomography applied to the taxonomic study of rare material: redescriptions of seven of Schirch's Brazilian species of land planarians (Geoplanidae, Platyhelminthes). ZooKeys 910: 1-42. https://doi.org/10.3897/zookeys.910.39486
Figure 20 Dolichoplanasp. Specimen MNRJ 8922 A specimen fixed in dorsal view B volume rendering reconstruction of body from µCT data C fixed specimen with original label.
Figure 10. Acrobeles bushmanicus Heyns, 1969 in Some rare species of cephalobs (Nematoda: Rhabditida: Cephalobidae) from Southern Iberian Peninsula
Figure 10. Acrobeles bushmanicus Heyns, 1969 (SEM): (A) anterior end showing the beginning of the lateral field; (B–E) lip region in left subventral, left sublateral, frontal and ventral views, respectively (I = primary axil, II = secondary axil; arrow points at amphid); (F) oral opening (ap = adoral pedestal, tp = tubular projection); (G) lip (ls = labial sensilla, cs = cephalic sensilla); (I, J) female tail (lateral and ventral views, respectively).
Figure 6 in Some rare species of cephalobs (Nematoda: Rhabditida: Cephalobidae) from Southern Iberian Peninsula
Figure 6. Paracrobeles psammophilus Navarro and Lluch, 1999 (LM): (A) neck region; (B) lip region (I = primary axil, II = secondary axil, black arrows point at labial processes, white arrows point at guarding processes); (C) female posterior end; (D) male posterior end; (E) female reproductive system; (F) lateral field. Nothacrobeles nanocorpus De Ley, De Ley, Baldwin, Mundo-Ocampo and Nadler, 1999 (LM): (G) neck region; (H, I) female posterior end; (J) male posterior end; (K) lateral field.
Figure 3 in Some rare species of cephalobs (Nematoda: Rhabditida: Cephalobidae) from Southern Iberian Peninsula
Figure 3. Heterocephalobellus magnificus (Andrássy, 1987) De Ley et al. 1993b (SEM, juvenile): (A, F, I) lateral at anterior end, pharyngeal corpus level and middle body length; (B–E, G) lip region in dorsal, left lateral, subfrontal, dorsal and frontal, respectively; (H) cheilostom; (J, K) tail in ventral and left lateral views, respectively.
Figure 8. Acrobeles bushmanicus Heyns, 1969 in Some rare species of cephalobs (Nematoda: Rhabditida: Cephalobidae) from Southern Iberian Peninsula
Figure 8. Acrobeles bushmanicus Heyns, 1969: (A) neck; (B) female genital system; (C) lip region; (D, E) female tail; (F) entire female; (G) entire male; (H) male posterior end; (I) lateral field.
Figure 1 in Some rare species of cephalobs (Nematoda: Rhabditida: Cephalobidae) from Southern Iberian Peninsula
Figure 1. Pseudacrobeles (Pseudacrobeles) laevis (Thorne, 1937) De Ley et al. 1993a (female): (A) neck region; (B) anterior region; (C) reproductive system; (D) lateral field; (E) entire female; (F) posterior end. Heterocephalobellus magnificus (Andrássy, 1987) De Ley et al. 1993b (juvenile): (G) neck region; (H) anterior region; (I) posterior end.
Figure 7 in Some rare species of cephalobs (Nematoda: Rhabditida: Cephalobidae) from Southern Iberian Peninsula
Figure 7. Nothacrobeles nanocorpus De Ley, De Ley, Baldwin, Mundo-Ocampo and Nadler, 1999 (SEM, female): (A, F) neck region (arrow points at excretory pore); (B, C) lip region at primary and secondary axils, respectively; (D) lateral field and vulva in lateral view; (E) vulva in ventral view; (G, H) posterior end in ventral and lateral views, respectively (arrow points at phasmid in H).
Figure 4 in Some rare species of cephalobs (Nematoda: Rhabditida: Cephalobidae) from Southern Iberian Peninsula
Figure 4. Stegelleta ophioglossa Andrássy, 1967b (female): (A) neck region; (B) anterior region; (C) lateral field; (D) reproductive system; (E) posterior end. Nothacrobeles nanocorpus De Ley, De Ley, Baldwin, Mundo-Ocampo and Nadler, 1999: (F) lip region; (G) neck region; (H) female reproductive system; (I) lateral field; (J) female posterior end; (K) male posterior end.
Figure 4 from: Guevara Andino JE, Fernandez-Fernandez D (2020) A new rare and endemic species of Sloanea (Elaeocarpaceae) from the Chocó region of Ecuador. PhytoKeys 160: 131-139. https://doi.org/10.3897/phytokeys.160.54993
Figure 4 Sloanea cayapensisA detail of ovary and sepals B dorsal view of stamen C ventral view of stamen (A–C from J. Jaramillo 24200QCA).
Figure 1 from: Guevara Andino JE, Fernandez-Fernandez D (2020) A new rare and endemic species of Sloanea (Elaeocarpaceae) from the Chocó region of Ecuador. PhytoKeys 160: 131-139. https://doi.org/10.3897/phytokeys.160.54993
Figure 1 Map of the geographic distribution of Sloanea cayapensis J. Jaramillo ex J.E. Guevara, sp. nov. (red squares), Sloanea fragrans Rusby (black circles) and Sloanea grandiflora Sm. (grey inverted triangles).
Figure 8 from: Timokhov AV, Belokobylskij SA (2020) Review of the rare genus Vanhornia Crawford, 1909 (Hymenoptera, Proctotrupoidea, Vanhorniidae) with description of a new species from the Russian Far East. Journal of Hymenoptera Research 79: 57-76. https://doi.org/10.3897/jhr.79.56481
Figure 8 Map of distribution of Vanhornia in Eurasia. Green spot – V. yurii sp. nov., blue spots – V. leileri, yellow spots – V. quizhouensis, red spot – specimen from South Korea determined as V. eucnemidarum (Choi & Lee, 2012).
Figure 7 from: Timokhov AV, Belokobylskij SA (2020) Review of the rare genus Vanhornia Crawford, 1909 (Hymenoptera, Proctotrupoidea, Vanhorniidae) with description of a new species from the Russian Far East. Journal of Hymenoptera Research 79: 57-76. https://doi.org/10.3897/jhr.79.56481
Figure 7 Vanhornia leileri Hedqvist, 1976 (A, B female C–F male, specimens from Russian Far East) A, C metasoma, ventral view B, D metasomal tergite 6, posterior view E metasoma, dorsal view F metasoma, lateral view.
Figure 2 from: Timokhov AV, Belokobylskij SA (2020) Review of the rare genus Vanhornia Crawford, 1909 (Hymenoptera, Proctotrupoidea, Vanhorniidae) with description of a new species from the Russian Far East. Journal of Hymenoptera Research 79: 57-76. https://doi.org/10.3897/jhr.79.56481
Figure 2 Vanhornia yurii sp. nov. (female, holotype) A wings B metasomal tergite 6, posterior view C metasoma, dorsal view D metasoma, ventral view E metasoma, lateral view.
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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.