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Fig. 6 in New records of two ulvophycean freshwater species, Lithotrichon pulchrum (Ulvales, Ulvophyceae) and Tupiella speciosa (Ulotrichales, Ulvophyceae)
Fig. 6. Molecular phylogeny of Ulotrichales. The phylogenetic trees shown were inferred using the maximum likelihood method based on the SSU and ITS rDNA data sets (2355 aligned positions of 31 taxa) using RAxML. The Bayesian posterior probability (pp), maximum likelihood (ML) bootstrap, maximum parsimony (MP), and distance values (NJ) are shown above or below the branches. The bold branches indicate strongly supported values (pp = 1.00 and ML, MP, and NJ = 100%). Scale bar indicates the number of substitutions/sites.
Fig. 5 in New records of two ulvophycean freshwater species, Lithotrichon pulchrum (Ulvales, Ulvophyceae) and Tupiella speciosa (Ulotrichales, Ulvophyceae)
Fig. 5. Molecular phylogeny of Ulvales. The phylogenetic trees shown were inferred using the maximum likelihood method based on the SSU and ITS rDNA data sets (2554 aligned positions of 29 taxa) using RAxML. The Bayesian posterior probability (pp), maximum likelihood (ML) bootstrap, maximum parsimony (MP), and distance values (NJ) are shown above or below the branches. The bold branches indicate strongly supported values (pp = 1.00 and ML, MP, and NJ = 100%). Scale bar indicates the number of substitutions/sites.
Fig. 2 in New records of two ulvophycean freshwater species, Lithotrichon pulchrum (Ulvales, Ulvophyceae) and Tupiella speciosa (Ulotrichales, Ulvophyceae)
Fig. 2. Ultrastructure of Lithotrichon pulchrum. A. Vegetative cell; B. Pyrenoid penetrated by thylakoid membrane (arrow); C. Mitochondrion; D. Golgi body; E. Flament cell with one pyrenoid; F. Flament cell with two pyrenoids. Cp, chloroplast; PCW, primary cell wall; G, Golgi body; Mt, mitochondrion; N, nucleus; Py, pyrenoid; S, starch; SCW, secondary cell wall. Scale bars: A = 1 μm, B-D = 0.5 μm, E, F = 2 μm.
Fig. 3 in New records of two ulvophycean freshwater species, Lithotrichon pulchrum (Ulvales, Ulvophyceae) and Tupiella speciosa (Ulotrichales, Ulvophyceae)
Fig. 3. Morphology of Tupiella speciosa Songchonmot180226S. A. Vegetative cell; B. Young filament; C, D. Thick cell wall-enveloped akinetes including 1-4 cells. CW, cell wall; Py, pyrenoid. Scale bars: 10 μm.
Fig. 1 in New records of two ulvophycean freshwater species, Lithotrichon pulchrum (Ulvales, Ulvophyceae) and Tupiella speciosa (Ulotrichales, Ulvophyceae)
Fig. 1. Morphology of Lithotrichon pulchrum Samcheokhang190409G. A. Vegetative cells; B. The erect system formed by a short filament cell (arrow); C. Filament cells; D. Bilaterally branched from. Py, pyrenoid. Scale bars: 10 μm.
Fig. 2 in New record of the unstalked crinoid Tropiometra macrodiscus (Crinoidea: Comatulida: Tropiometridae) from Korea
Fig. 2. Neighbor joining tree of the aligned 449 bp partial COI sequences for two Tropiometra macrodiscus and 13 crinoids obtained from GenBank. GenBank accession numbers of the species are provided. Bootstrap resampling values were supported at ≥70. Scale bar represents the genetic distance.
Fig. 1 in New record of the unstalked crinoid Tropiometra macrodiscus (Crinoidea: Comatulida: Tropiometridae) from Korea
Fig. 1. Tropiometra macrodiscus (Hara, 1895). (A) Lateral view; (B) Oral view; (C) Aboral view; (D) centrodorsal, axillaries; (E) pinnules; (F) cirrus. AX, axillaries; C, centrodorsal; CS, cirrus socket; RA, regenerated arm; GN, gonad. Scale bars = 10 mm.
Fig. 4 in New records of two ulvophycean freshwater species, Lithotrichon pulchrum (Ulvales, Ulvophyceae) and Tupiella speciosa (Ulotrichales, Ulvophyceae)
Fig. 4. Ultrastructure of Tupiella speciosa. A. Vegetative cell; B. Pyrenoid penetrated by thylakoid membrane (arrow); C. Mitochondrion; D. Golgi body; E. Akinete including two cells; F. Flament cell with one pyrenoid; G. Flament cell with four pyrenoids. Cp, chloroplast; CW, cell wall; G, Golgi body; Mt, mitochondrion; N, nucleus; Py, pyrenoid; S, starch. Scale bars: A, E-G = 2 μm, B = 1 μm, C, D = 0.5 μm.
Fig. 1 in New record of Calopteryx xanthostoma (Charpentier, 1825) in Ourense, northwest of Spain (Odonata: Calopterygidae).
Fig. 1.- Calopteryx xanthostoma (Charpentier, 1825) perched on the vegetation of the Miño River right bank.
Figs. 9-16 in New distributional records of Delphacidae (Hemiptera: Fulgoroidea) from Chile.
Figs. 9-16.- Syndelphax dissipatus, brachypterous male. 9.- Habitus, dorsal view. 10.- Habitus, lateral view. 11.- Head, frontal view. 12.- Pygofer, caudal view. 13.- Pygofer, lateral view. 14.- Anal tube, lateral view. 15.- Right paramere, caudal view. 16.- Aedeagus, lateral view.
Figs 17-14 in New distributional records of Delphacidae (Hemiptera: Fulgoroidea) from Chile.
Figs 17-14.- Dicranotropis bipectinata, brachypterous male. 17.- Habitus, dorsal view. 18.- Habitus, lateral view. 19.- Head, frontal view. 20.- Pygofer, caudal view. 21.- Pygofer, lateral view. 22.- Anal tube and aedeagus, lateral view. 23.- Parameres, caudal view. 24.- Right paramere, latero-caudal view.
Figs. 1-8 in New distributional records of Delphacidae (Hemiptera: Fulgoroidea) from Chile.
Figs. 1-8.- Chionomus haywardi, macropterous male. 1.- Habitus, dorsal view. 2.- Habitus, lateral view. 3.- Head, frontal view. 4.- Pygofer, caudal view. 5.- Pygofer, lateral view. 6.- Anal tube, lateral view. 7.- Right paramere, caudal view. 8.- Aedeagus, lateral view.
Figs. 33-41 in New distributional records of Delphacidae (Hemiptera: Fulgoroidea) from Chile.
Figs. 33-41.- Delphacodes kuscheli, brachypterous male. 33.- Habitus, dorsal view. 34.- Habitus, lateral view. 35.- Head, frontal view. 36.- Pygofer, caudal view. 37.- Pygofer, lateral view. 38.- Anal tube, lateral view. 39.- Anal tube, caudal view. 40.- Right paramere, caudo-lateral view. 41.- Aedeagus, lateral view.
Figure 1 in The first record of Brentidae (Coleoptera) in Eocene Rovno amber with description of a new fossil species of Toxorhynchus Scudder, 1893
Figure 1. Photomicrographs of Toxorhynchus europeoeocenicus sp. nov., holotype, 6684 [MAIG], habitus: (a) fronto-lateral view; (b) left lateral view. Scale bars = 0.5 mm.
Figure 2. X in The first record of Brentidae (Coleoptera) in Eocene Rovno amber with description of a new fossil species of Toxorhynchus Scudder, 1893
Figure 2. X-ray micro-CT renderings of Toxorhynchus europeoeocenicus sp. nov., holotype, 6684 [MAIG], habitus: (a) dorsal view; (b) ventral view; (c) right lateral view. Scale bar = 0.5 mm.
Figure 5 in The first record of Brentidae (Coleoptera) in Eocene Rovno amber with description of a new fossil species of Toxorhynchus Scudder, 1893
Figure 5. Distribution of the genus Toxorhynchus with extant (shaded area) and fossil records: records from Florissant Formation, Colorado, USA (black square); records from Dominican amber (black dot); and T. europeoeocenicus sp. nov. from Rovno amber (black triangle).
Figure 4. X in The first record of Brentidae (Coleoptera) in Eocene Rovno amber with description of a new fossil species of Toxorhynchus Scudder, 1893
Figure 4. X-ray micro-CT renderings of Toxorhynchus europeoeocenicus sp. nov., holotype, 6684 [MAIG], aedeagus: (a) dorsal view; (b) lateral view; (c) ventral view. Scale bar = 0.1 mm. Abbreviations: fr – free ring; tp – tegminal plate; sg – spiculum gastrale.
Figure 3. X in The first record of Brentidae (Coleoptera) in Eocene Rovno amber with description of a new fossil species of Toxorhynchus Scudder, 1893
Figure 3. X-ray micro-CT renderings of Toxorhynchus europeoeocenicus sp. nov., holotype, 6684 [MAIG], habitus: (a) right lateral view, without legs; (b) left lateral view, without legs; (c) ventral view, without legs; (d) frontal view; (e) caudal view; (f) dorso-caudal view. Scale bar = 0.5 mm.
Fig. 3 in New records and interesting data for the Sardinian spider fauna (Arachnida: Araneae)
Fig. 3 – Civizelotes solstitialis (Levy, 1998): ♀ epigyne ventral view. Scale bar: 0.3 mm. Fig. 4 – Thaumatoncus indicator Simon, 1884: ♂ prosoma lateral view. Scale bar: 0.3 mm.
Fig. 1 in Diptera communities from Ria de Aveiro saltmarshes, with new records for Portugal
Fig. 1 – Sampling area location; sampled sites: 1, Foz do Rio Novo, dominated by Spartina maritima; 2, Salinas, dominated by Halimione portulacoides, Juncus maritimus, Sarcocornia perennis and Phragmites australis; 3, Bico, dominated by H. portucaloides and J. maritimus; 4, Reboxo, dominated by H. portucaloides, S. perennis, S. maritima and Limonium vulgare; 5, Monte Farinha, dominated by J. maritimus and H. portucaloides; 6, Cambeia, dominated by H. portucaloides, Salicornia ramosissima and Tamarix africana; 7, Cacia, dominated by J. maritimus, H. portucaloides and Aster tripolium subsp. pannonicus.
ScienceDex guides
Understand access before you commit
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.