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3,507 results for “Species identification”
FIGURES 45–51 in Review of Proxima DeLong & Freytag (Hemiptera: Cicadellidae: Gyponini) with description of two new species from Brazil and identification key to species
FIGURES 45–51. Proxima meloi sp. nov., paratype female. 45, undissected terminalia, ventral view. 46, undissected terminalia, lateral view. 47–51, ovipositor: 47, first valvula and first valvifer, lateral view. 48, first valvula, detail of apical portion. 49, second vavulae, lateral view. 50, second valvulae, detail of apical portion. 51, second valvifer and gonoplac, lateral view. Scale bars in mm.
FIGURES 33–44 in Review of Proxima DeLong & Freytag (Hemiptera: Cicadellidae: Gyponini) with description of two new species from Brazil and identification key to species
FIGURES 33–44. Proxima meloi sp. nov., male holotype. 33, head and thorax, dorsal view. 34, head and thorax, lateral view. 35, head, ventral view. 36, forewing. 37–44, male terminalia: 37, sternite VIII, ventral view. 38, valve, ventral view. 39, pygofer, valve and subgenital plate, lateral view. 40, subgenital plate, ventral view. 41, style and connective, dorsal view. 42, style, lateral view. 43, aedeagus, lateral view. 44, aedeagus, posterior view. Scale bars in mm.
FIGURE 7. Culeolus likae. A in Abyssal ascidians (Chordata, Tunicata) from the Weddell Sea, Antarctica, including a new Styela species and stomach content identifications
FIGURE 7. Culeolus likae. A: individual; B: vesicles of the tunic; C: internal anatomy (without branchial sac).
FIGURE 4 in Abyssal ascidians (Chordata, Tunicata) from the Weddell Sea, Antarctica, including a new Styela species and stomach content identifications
FIGURE 4. Styela andeepensis sp. nov.. A: individual attached to the tunic of Culeolus suhmi; B: scheme showing internal anatomy (without branchial sac).
FIGURE 1 in Abyssal ascidians (Chordata, Tunicata) from the Weddell Sea, Antarctica, including a new Styela species and stomach content identifications
FIGURE 1. Study area with the locations where the samples were collected (stations 7, 9, 13, 14, 16).
FIGURE 6. Culeolus anonymus. A in Abyssal ascidians (Chordata, Tunicata) from the Weddell Sea, Antarctica, including a new Styela species and stomach content identifications
FIGURE 6. Culeolus anonymus. A: individual; B: vesicles of the tunic; C: internal anatomy (without branchial sac).
FIGURE 8. Oligotrema lyra. A in Abyssal ascidians (Chordata, Tunicata) from the Weddell Sea, Antarctica, including a new Styela species and stomach content identifications
FIGURE 8. Oligotrema lyra. A: individual; B: papillae and oral lobes, pharynx perforations and muscle bands.
FIGURE 3. Corynascidia suhmi. A in Abyssal ascidians (Chordata, Tunicata) from the Weddell Sea, Antarctica, including a new Styela species and stomach content identifications
FIGURE 3. Corynascidia suhmi. A: individual; B: pre-pharyngeal band around dorsal tubercle; C: branchial sac.
FIGURE 5. Culeolus suhmi. A in Abyssal ascidians (Chordata, Tunicata) from the Weddell Sea, Antarctica, including a new Styela species and stomach content identifications
FIGURE 5. Culeolus suhmi. A: individual showing attached ascidian epibiont; B: postero-ventral papillae and vesicles of the tunic; C: internal anatomy (without branchial sac).
FIGURE. Puccinia klugkistiana on Ligustrum obtusifolium (A–F, N, O, P) and Cleistogenes hackelii (G–N). A. Plant hedges producing spermogonia and aecia in the field. B. Spermogonia on the upper leaf surface. C. Vertical section of an aecium surrounded with peridia. D. Aecia on the lower leaf surface. E. Vertical section of a spermogonium. F. Aeciospores. G. Uredinia on the leaf surface. H. Vertical section of a uredinium. I. Urediniospores. J, K. Telia on the leaf surface. L. Teliospores. M. Urediniospore observed under SEM. N. Vertical section of an uredinium observed under SEM. O. Aecium observed under SEM. P. Aeciospores with various sizes of verrucae on the surface observed under SEM. Scale bars: C = 100 μm, E, F = 20 μm, H, I = 30 μm, M = 5 μm, P = 10 μm, H, L, O = 40 μm. in Phylogenetic approach for identification and life cycles of Puccinia (Pucciniaceae) species on Poaceae from northeastern China
FIGURE. Puccinia klugkistiana on Ligustrum obtusifolium (A–F, N, O, P) and Cleistogenes hackelii (G–N). A. Plant hedges producing spermogonia and aecia in the field. B. Spermogonia on the upper leaf surface. C. Vertical section of an aecium surrounded with peridia. D. Aecia on the lower leaf surface. E. Vertical section of a spermogonium. F. Aeciospores. G. Uredinia on the leaf surface. H. Vertical section of a uredinium. I. Urediniospores. J, K. Telia on the leaf surface. L. Teliospores. M. Urediniospore observed under SEM. N. Vertical section of an uredinium observed under SEM. O. Aecium observed under SEM. P. Aeciospores with various sizes of verrucae on the surface observed under SEM. Scale bars: C = 100 μm, E, F = 20 μm, H, I = 30 μm, M = 5 μm, P = 10 μm, H, L, O = 40 μm.
FIGURE. Puccinia cerinthes-agropyrina on Clematis sp. A. Plants producing spermogonia and aecia on the leaves and stems in the field. B. Spermogonia and aecia on the lower leaf surface. C. Vertical section of a spermogonium. D. Aecia on the stem. E. Aeciospores. F. Aeciospore with verrucose surface observed under SEM. G. Aecium observed under SEM. H. Vertical section of an aecium. Scale bars: C = 20 μm, E, H = 30 μm, F = 5 μm, G = 100 μm. in Phylogenetic approach for identification and life cycles of Puccinia (Pucciniaceae) species on Poaceae from northeastern China
FIGURE. Puccinia cerinthes-agropyrina on Clematis sp. A. Plants producing spermogonia and aecia on the leaves and stems in the field. B. Spermogonia and aecia on the lower leaf surface. C. Vertical section of a spermogonium. D. Aecia on the stem. E. Aeciospores. F. Aeciospore with verrucose surface observed under SEM. G. Aecium observed under SEM. H. Vertical section of an aecium. Scale bars: C = 20 μm, E, H = 30 μm, F = 5 μm, G = 100 μm.
FIGURE. Puccinia phragmitis on Rumex patientia (A–E, I, K) and Phragmites australis (F–H, J). A, B Spermogonia and aecia on the lower leaf surface. C. Vertical section of a spermogonium. D. Vertical section of an aecium surrounded with peridia. E. Aeciospores. F, G. Telia on the leaf surface. H. Teliospores. I. Aecium observed under SEM. J. Vertical section of a telium. K. Aeciospores with various sizes of verrucae on the surface observed under SEM. Scale bars: C, D, E = 30 μm, H = 10 μm, I = 100 μm, J = 20 μm, K = 3 μm. in Phylogenetic approach for identification and life cycles of Puccinia (Pucciniaceae) species on Poaceae from northeastern China
FIGURE. Puccinia phragmitis on Rumex patientia (A–E, I, K) and Phragmites australis (F–H, J). A, B Spermogonia and aecia on the lower leaf surface. C. Vertical section of a spermogonium. D. Vertical section of an aecium surrounded with peridia. E. Aeciospores. F, G. Telia on the leaf surface. H. Teliospores. I. Aecium observed under SEM. J. Vertical section of a telium. K. Aeciospores with various sizes of verrucae on the surface observed under SEM. Scale bars: C, D, E = 30 μm, H = 10 μm, I = 100 μm, J = 20 μm, K = 3 μm.
FIGURE. Puccinia elymi on species of Poaceae. A, B. Telia on the leaf surface. C. Teliospores. D. Vertical section of a telium. Scale bars: C = 30 μm, D = 20 μm. in Phylogenetic approach for identification and life cycles of Puccinia (Pucciniaceae) species on Poaceae from northeastern China
FIGURE. Puccinia elymi on species of Poaceae. A, B. Telia on the leaf surface. C. Teliospores. D. Vertical section of a telium. Scale bars: C = 30 μm, D = 20 μm.
FIGURE. Puccinia miscanthi on Plantago asiatica (A–H) and Miscanthus sacchariflorus (I–Q). A. Plants producing spermogonia and aecia on the leaf surface. B. Spermogonia on the leaf surface. C. Aecia on lower leaf surface. D. Vertical section of a spermogonium. E. Aeciospores. F. Vertical section of an aecium observed under SEM. G. Aeciospores with verrucose surface observed by SEM. H. Vertical section of an aecium surrounded by peridia. I. Plants producing uredinia on the leaf surface in the field. J. Vertical section of an uredinium with paraphyses. K. Urediniospores. L. Uredinia on the leaf surface. M. Uredinium on the leaf surface observed under SEM. N. Urediniospore with echinulate surface observed under SEM. O. Telia on the leaf surface. P. Vertical section of a telium. Q. Teliospores. Scale bars: D, E, K = 20 μm, F, H, M = 100 μm, G = 5 μm, J, P, Q = 30 μm, N = 10 μm. in Phylogenetic approach for identification and life cycles of Puccinia (Pucciniaceae) species on Poaceae from northeastern China
FIGURE. Puccinia miscanthi on Plantago asiatica (A–H) and Miscanthus sacchariflorus (I–Q). A. Plants producing spermogonia and aecia on the leaf surface. B. Spermogonia on the leaf surface. C. Aecia on lower leaf surface. D. Vertical section of a spermogonium. E. Aeciospores. F. Vertical section of an aecium observed under SEM. G. Aeciospores with verrucose surface observed by SEM. H. Vertical section of an aecium surrounded by peridia. I. Plants producing uredinia on the leaf surface in the field. J. Vertical section of an uredinium with paraphyses. K. Urediniospores. L. Uredinia on the leaf surface. M. Uredinium on the leaf surface observed under SEM. N. Urediniospore with echinulate surface observed under SEM. O. Telia on the leaf surface. P. Vertical section of a telium. Q. Teliospores. Scale bars: D, E, K = 20 μm, F, H, M = 100 μm, G = 5 μm, J, P, Q = 30 μm, N = 10 μm.
FIGURE. Puccinia triticina on species of Poaceae. A. Vertical section of an uredinium. Scale bars: A = 30 μm. in Phylogenetic approach for identification and life cycles of Puccinia (Pucciniaceae) species on Poaceae from northeastern China
FIGURE. Puccinia triticina on species of Poaceae. A. Vertical section of an uredinium. Scale bars: A = 30 μm.
FIGURE 0 in Phylogenetic approach for identification and life cycles of Puccinia (Pucciniaceae) species on Poaceae from northeastern China
FIGURE 0. Puccinia elymi-albispora on Elymus ciliaris. A, B. Uredinia on the leaf surface. C. Urediniospores. D. Vertical section of an uredinium. Scale bars: C = 20 μm, D = 30 μm.
FIGURE. Puccinia poae-nemoralis on Poa sp. A. Uredinia and telia on the leaf surface. B. Vertical section of an uredinium with paraphyses. C. Immature teliospores. D. Teliospores. Scale bars: B, C, D = 20 μm. in Phylogenetic approach for identification and life cycles of Puccinia (Pucciniaceae) species on Poaceae from northeastern China
FIGURE. Puccinia poae-nemoralis on Poa sp. A. Uredinia and telia on the leaf surface. B. Vertical section of an uredinium with paraphyses. C. Immature teliospores. D. Teliospores. Scale bars: B, C, D = 20 μm.
FIGURE. Puccinia achnatheri-sibirici on Berberis amurensis (A–H) and Stipa baicalensis (I–M). A. Plants producing spermogonia and aecia on leaf surface in the field. B. Aecia on the lower leaf surface. C. Vertical section of a spermogonium. D. Spermogonia on the upper leaf surface. E. Vertical section of an aecium surrounded with peridia. F. Aeciospores. G. Aecium observed under SEM. H. Aeciospore with verrucose surface observed under SEM. I, J. Telia on the leaf surface. K. Urediniospores. L. Teliospores. M. Vertical section of a telium. Scale bars: C, F, L, M = 20 μm, E = 50 μm, G = 100 μm, H = 5 μm. in Phylogenetic approach for identification and life cycles of Puccinia (Pucciniaceae) species on Poaceae from northeastern China
FIGURE. Puccinia achnatheri-sibirici on Berberis amurensis (A–H) and Stipa baicalensis (I–M). A. Plants producing spermogonia and aecia on leaf surface in the field. B. Aecia on the lower leaf surface. C. Vertical section of a spermogonium. D. Spermogonia on the upper leaf surface. E. Vertical section of an aecium surrounded with peridia. F. Aeciospores. G. Aecium observed under SEM. H. Aeciospore with verrucose surface observed under SEM. I, J. Telia on the leaf surface. K. Urediniospores. L. Teliospores. M. Vertical section of a telium. Scale bars: C, F, L, M = 20 μm, E = 50 μm, G = 100 μm, H = 5 μm.
FIGURE. Puccinia pygmaea on Deyeuxia purpurea. A, F. Uredinia and telia on the leaf surface. B. Urediniospores. C. Vertical section of an uredinium with paraphyses. D. Teliospores. E. Vertical section of a telium. Scale bars: B = 30 μm, C = 50 μm, D, E = 20 μm. in Phylogenetic approach for identification and life cycles of Puccinia (Pucciniaceae) species on Poaceae from northeastern China
FIGURE. Puccinia pygmaea on Deyeuxia purpurea. A, F. Uredinia and telia on the leaf surface. B. Urediniospores. C. Vertical section of an uredinium with paraphyses. D. Teliospores. E. Vertical section of a telium. Scale bars: B = 30 μm, C = 50 μm, D, E = 20 μm.
FIGURE. Puccinia coronati-hordei on Elymus dahuricus A. Uredinia and telia on the leaf surface. B. Urediniospores. C. Vertical section of an uredinium with paraphyses. D. Vertical section of a telium. E. Teliospores. Scale bars: B, C, D, E = 20 μm. in Phylogenetic approach for identification and life cycles of Puccinia (Pucciniaceae) species on Poaceae from northeastern China
FIGURE. Puccinia coronati-hordei on Elymus dahuricus A. Uredinia and telia on the leaf surface. B. Urediniospores. C. Vertical section of an uredinium with paraphyses. D. Vertical section of a telium. E. Teliospores. Scale bars: B, C, D, E = 20 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.