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Figure 5 in Look closely and listen carefully: unexpected cicada diversity in northern Sardinia, with the description of a new species (Cicadidae: Tibicina)
Figure 5. Morphological trends in the Corso-Sardinian Tibicina OTUs CIST, CORS and LONG (part II). Individual ranks of overall alignments of hair cover of submedian sigilla on mesonotum vs. black portion shining through hairs on sternites IV to VI (see green framed body sectors; Nind = 70). Photographs visualize extreme phenotypes. Individuals were labelled with a random number and sorted twice for each character from photographs of live individuals and alignments differed only by a mean of 4.7 (sigilla) respectively 6.5 rank positions (sternites). Significances were similar and mean ranks of individuals of repeated alignments are shown here. CORS and T. c. corsica are merged for easier illustration.
Figure 2 in Look closely and listen carefully: unexpected cicada diversity in northern Sardinia, with the description of a new species (Cicadidae: Tibicina)
Figure 2. Calling song examples of the Tibicina OTUs from northern Sardinia. A, sonograms of LONG and CIST (10-s phrases). B, oscillograms (time vs. amplitude) of four different OTUs (0.5-s phrases, left and 0.1-s phrases, right) with terms marked.
Figure 1 in Look closely and listen carefully: unexpected cicada diversity in northern Sardinia, with the description of a new species (Cicadidae: Tibicina)
Figure 1. Map with investigated populations in northern Sardinia and southern Corsica. The size of the circles is relative to the number of analysed specimens (Nmax = 15, Nmin = 1).
Figure 3 in Look closely and listen carefully: unexpected cicada diversity in northern Sardinia, with the description of a new species (Cicadidae: Tibicina)
Figure 3. Calling song characters of the Tibicina OTUs from Sardinia and the known species from Corsica. Mean values per individual. A, syllable periods (SYP) vs. centre frequencies (N ind = 103). B, contribution of PP, NP and ISYD to the species-specific SYP (Nind = 103). C, two converse examples of temperature dependency of SYP (Nind = 19 resp. 23).
Figure 7 in Look closely and listen carefully: unexpected cicada diversity in northern Sardinia, with the description of a new species (Cicadidae: Tibicina)
Figure 7. Morphology of Tibicina longisyllaba and relatives. A, holotype male of Tibicina longisyllaba in dorsal view and ventral view of the abdomen from Tempio Pausania (black bar = 1 cm). B, paratype female of Tibicina longisyllaba from Tempio Pausania. C, syntype male of Tibicina cisticola from the Natural History Museum of Berlin with original labels. D, genitalia of T. longisyllaba. Timbals with alternating short and long ribs of (E) T. longisyllaba holotype in comparison to (F) T. cisticola syntype (equal magnification, almost similar body size, 24.4 resp. 24.8 mm; white perpendicular line = timbal width definition). Morphological extremes in natural habitats: G, male of T. nigronervosa; H, male of T. sp. indet.
FIGURE 1. Maximum likelihood phylogram inferred from 53 taxa from ITS and 28S in Expanding the diversity of mucoralean fungi from northern Thailand: novel Backusella species from soil
FIGURE 1. Maximum likelihood phylogram inferred from 53 taxa from ITS and 28S genetic markers. Bootstrap support (BS) from RAxML and IQ-tree, and the posterior probability from Bayesian analysis are provided near the nodes as BS/BS (IQ-tree)/ PP. Values <70% for bootstrap support and <0.80 for posterior probability are indicated by a minus sign (–). Unrecovered branching is indicated by (*) sign. The novel strain proposed in the current study is shown in bold. T, ET, LT, and NT indicate ex-type, ex-epitype, ex-lectotype and ex-neotype strains, respectively. Mucor indicus (CBS 226.29) and M. koreanus (EML-QT1) were used as outgroup taxa.
FIGURE 2. Backusella solicola MFLUCC 22-0067 in Expanding the diversity of mucoralean fungi from northern Thailand: novel Backusella species from soil
FIGURE 2. Backusella solicola MFLUCC 22-0067 (ex-type). A, B. branching pattern of sporangiophores. C. short branched sporophore with columellae. D, E, H. developmental stages of the sporangium. F. unispored sporangiola. G. sporangiospores. I–J. multispored sporangiolum. K. obverse and reverse of colony in PDA. L–Q. various shaped columellae. Bars: B, C, E, H, J, L–N, P, Q = 20 µm; D, G, O = 10 µm.
FIGURE 14 in A new species of brilliant green frog of the genus Tlalocohyla (Anura, Hylidae) hiding between two volcanoes of northern Costa Rica
FIGURE 14. Habitat where Tlalocohyla celeste sp. nov. is found. General view of the north (A) and southwest (B) sector of the wetland. The habitat is dominated by the grass Rhynchospora corymbosa (C), but other species of plants tolerant to flooded environments can be used by the frog for its reproductive activity (D).
FIGURE 13 in A new species of brilliant green frog of the genus Tlalocohyla (Anura, Hylidae) hiding between two volcanoes of northern Costa Rica
FIGURE 13. Geographic distribution of the genus Tlalocohyla in Mesoamerica. Inset, map of Costa Rica, showing the distribution of Tlalocohyla loquax (green circles) and Tlalocohyla celeste sp. nov. (red circle). Sources: (GBIF.org 2022).
FIGURE 10 in A new species of brilliant green frog of the genus Tlalocohyla (Anura, Hylidae) hiding between two volcanoes of northern Costa Rica
FIGURE 10. Oviposition process of Tlalocohyla celeste sp. nov. (A) A pair in axillary amplexus with egg deposition. (B-D) Oviposition at the end of different leaves. (E) 5 days of development. (F) 9 days of development.
FIGURE 9 in A new species of brilliant green frog of the genus Tlalocohyla (Anura, Hylidae) hiding between two volcanoes of northern Costa Rica
FIGURE 9. Call repertoire of Tlalocohyla celeste sp. nov. Call type III: (A) oscillogram and (B) spectrogram of a call series: call type I following call type III; (C) oscillogram and (D) power spectrum of notes in call type III. Dotted red line indicates the dominant frequency. (E) Oscillogram of call groups in Tlalocohyla celeste sp. nov. Showing a combination of the three call types (type I in orange, type II in green and type III in red) emitted by different males during the chorus.
FIGURE 8 in A new species of brilliant green frog of the genus Tlalocohyla (Anura, Hylidae) hiding between two volcanoes of northern Costa Rica
FIGURE 8. Calls repertory of Tlalocohyla celeste sp. nov. Call type I: (A) oscillogram of a call series type I, first growing in amplitude and the second and third with similar amplitude notes; (B) oscillogram and (C) spectrogram of a call type I with 13 notes; (D) power spectrum and (E) oscillogram of a single note. Call type II: (F) oscillogram and (G) spectrogram of a call group: call type I following call type II; (H) oscillogram and (I) power spectrum of the single squeak-like note in call Type II. Dotted red line indicates the dominant frequency.
FIGURE 11 in A new species of brilliant green frog of the genus Tlalocohyla (Anura, Hylidae) hiding between two volcanoes of northern Costa Rica
FIGURE 11. Metamorphosis of Tlalocohyla celeste sp. nov. (A) Tadpole at stage 35. (B) Metamorph of 11 mm of SVL. (C) Recently metamorphosed juvenile of 7 mm. (D) Juvenile.
FIGURE 7 in A new species of brilliant green frog of the genus Tlalocohyla (Anura, Hylidae) hiding between two volcanoes of northern Costa Rica
FIGURE 7. Vocal sac of uncollected males of Tlalocohyla celeste sp. nov. (A) Ventral view and vocal sac deflated. (B–D). Calling males perched on vegetation in different positions, note the vocal sac extension.
FIGURE 12 in A new species of brilliant green frog of the genus Tlalocohyla (Anura, Hylidae) hiding between two volcanoes of northern Costa Rica
FIGURE 12. Tlalocohyla celeste sp. nov. tadpole at stage 34 (35) according to Gosner (1960). (A) Lateral view, (B) dorsal view, (C) ventral view, (D) oral disc.
FIGURE 1 in A new species of brilliant green frog of the genus Tlalocohyla (Anura, Hylidae) hiding between two volcanoes of northern Costa Rica
FIGURE 1. Bayesian phylogenetic tree within the Hylidae family based on 12S and 16S mitochondrial DNA genes. Posterior probabilities in nodes, asterisks represent support of>95. Branches are collapsed to illustrate genus-level relationships, see expanded branches on Suppl. material. 2. The scale bar refers to the estimated substitutions per site.
FIGURE 2 in A new species of Tmesiphorus LeConte from northern Myanmar (Coleoptera: Staphylinidae: Pselaphinae)
FIGURE 2. Tmesiphorus shihongliangi sp. nov., male. A. Meso- and metaventrite. B. Protrochanter. C. Tergites 1 (IV) and 2 (V). D. Sternites 2 (IV) and 3 (V). E. Sternite 7 (IX). F–H Aedeagus, dorsal (F), lateral (G), and ventral (H). I. Left paramere. Scale bars: 0.2 mm in A, C–H; 0.1 mm in B; 0.05 mm in I.
FIGURE 3 in A new species of brilliant green frog of the genus Tlalocohyla (Anura, Hylidae) hiding between two volcanoes of northern Costa Rica
FIGURE 3. Holotype of Tlalocohyla celeste sp. nov. (UCR 23700) (A) Dorsal view of head in living specimen. (B) Lateral view of head in preserved specimen. (C) Lateral view in preserved specimen, note the tympanum. Scale bar = 2 mm. (D) Right hand in ventral view. (E) Right foot in ventral view.
FIGURE 6 in A new species of brilliant green frog of the genus Tlalocohyla (Anura, Hylidae) hiding between two volcanoes of northern Costa Rica
FIGURE 6. Ventral view Tlalocohyla celeste sp. nov. (A) Ventrals skin texture, and cloacal view. (B) Liver of recently preserved specimen (ECB-Anf-f50-08-01,01.). (C) Nuptial pads of the left hand in Tlalocohyla celeste sp. nov. male holotype (UCR 23700), in life, and preserved.
FIGURE 1 in A new species of Tmesiphorus LeConte from northern Myanmar (Coleoptera: Staphylinidae: Pselaphinae)
FIGURE 1. Tmesiphorus shihongliangi sp. nov., male. A. Dorsal habitus. B. Head dorsum and pronotum. C. Right maxillary palpus, ventral. D. Left antennal club, ventral. E Right elytron. Scale bars: 0.5 mm in A; 0.2 mm in B, D, E; 0.1 mm in C.
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.