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13,397 results for “sp. nov.”

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FIGURE 5 in A new deep-sea sponge Fibulia occiensis sp. nov. (Poecilosclerida: Dendoricellidae) from the 25° South Oceanic Core Complex in the Central Indian Ocean Ridge

FIGURE 5. Geographical distribution of all known Fibulia species used for comparison (source: WoRMS database (=World Porifera Database, WPD)).

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FIGURE 4 in A new deep-sea sponge Fibulia occiensis sp. nov. (Poecilosclerida: Dendoricellidae) from the 25° South Oceanic Core Complex in the Central Indian Ocean Ridge

FIGURE 4. Fibulia occiensis sp. nov. holotype (NCPOR/HYD-CIR/0029). A, oxeas. B–H, arcuate isochelae.

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FIGURE 1 in A new deep-sea sponge Fibulia occiensis sp. nov. (Poecilosclerida: Dendoricellidae) from the 25° South Oceanic Core Complex in the Central Indian Ocean Ridge

FIGURE 1. Location of the collection sites of Fibulia occiensis sp. nov. in the 25° South Oceanic Core Complex (Close to Kairei hydrothermal vent field and Rodrigues Triple Junction) in the Central Indian Ocean Ridge, Indian Ocean. The blue colour block indicates the track line of the benthic sledge. The red line indicates the ridge axis.

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FIGURE 3 in A new deep-sea sponge Fibulia occiensis sp. nov. (Poecilosclerida: Dendoricellidae) from the 25° South Oceanic Core Complex in the Central Indian Ocean Ridge

FIGURE 3. Fibulia occiensis sp. nov. Holotype (NCPOR/HYD-CIR/0029). A, SEM images showing the hispid surface of the sponge body and scattered arcuate isochelae forming the ectosome among the oxeas. B, the cross-section of the intercrossing tracts.

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FIGURE 2. A in A new deep-sea sponge Fibulia occiensis sp. nov. (Poecilosclerida: Dendoricellidae) from the 25° South Oceanic Core Complex in the Central Indian Ocean Ridge

FIGURE 2. A, Fibulia occiensis sp. nov. holotype (NCPOR/HYD-CIR/0029), B, paratype (NCPOR/HYD-CIR/0030). C, section through the bundles of tracts showing many fine tracts. D, ectosomal skeleton plumose and feathery appearance of the body.

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FIGURE 1 in Rosellinia qiongensis sp. nov., R. verticillata sp. nov. and a new record of R. lamprostoma from China

FIGURE 1. Phylogram generated from Maximum Likelihood (RAxML) analyses, based on ITS-β-tubulin-α-actin matrix. ML bootstrap supports (≥ 75%) and Bayesian posterior probability (≥ 0.95) are indicated as ML/BYPP. The tree is rooted to Amphilogia gyrosa (YMJ 91123101). Type strains are in bold and newly generated strains are in red bold.

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FIGURE 4 in Rosellinia qiongensis sp. nov., R. verticillata sp. nov. and a new record of R. lamprostoma from China

FIGURE 4. Rosellinia verticillata (GMB0084, holotype) A. Host. B. Stromata on host substrate C. Close-up of stroma D. Transverse section through stroma E. Vertical section through stroma F–H. Asci I, J. Ascus apical rings in Melzer's reagent. K. Culture on PDA. L–M. Ascospores. N. Ascospores in black ink. Scale bars: B = 1 mm, C–E = 200 μm, F–L = 10 μm.

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FIGURE 3 in Rosellinia qiongensis sp. nov., R. verticillata sp. nov. and a new record of R. lamprostoma from China

FIGURE 3. Rosellinia qiongensis (GMB0082, holotype) A. Host. B. Stromata on host substrate C. Close-up of stroma D. Transverse section through stroma E. Vertical section through stroma F–H. Asci I. Ascus apical ring in Melzer's reagent. J–K.Ascospores L. Ascospores in black India ink M. Culture on PDA. Scale bars: B = 1 mm, C–E = 200 μm, F–L = 10 μm.

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FIGURE 8 in A new species of whip spider, Sarax sinensis sp. nov., from Fujian, China (Arachnida: Amblypygi: Charinidae)

FIGURE 8. Sarax sinensis sp. nov. Holotype, ECNU-IV-0004, male. A: Trichobothria on distitibia IV; B: Pedipalp tarsus and claw, dorsal view; C: Pedipalp tarsus and claw, ventral view; D: Leg I tibia and tarsus of an adult male, dorsal.

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FIGURE 9 in A new species of whip spider, Sarax sinensis sp. nov., from Fujian, China (Arachnida: Amblypygi: Charinidae)

FIGURE 9. Male gonopod of Sarax sinensis sp. nov. from Fuzhou, China. Holotype, ECNU-IV-0004, male. A: Dorsal view; B: Detail of ornamentation of LoL1 and LOL2; C: Detail of ornamentation of LoD; D: Detail of ornamentation of Fi (Details in Terminologies).

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FIGURE 7 in A new species of whip spider, Sarax sinensis sp. nov., from Fujian, China (Arachnida: Amblypygi: Charinidae)

FIGURE 7. Sarax sinensis sp. nov. Holotype, ECNU-IV-0004, male. A: Pedipalp, ventral view; B: Pedipalp, dorsal view; C: Walking-leg tarsi with arolium, ventral view; D: Pedipalp ventral apophysis, ventral view.

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FIGURE 6 in A new species of whip spider, Sarax sinensis sp. nov., from Fujian, China (Arachnida: Amblypygi: Charinidae)

FIGURE 6. Sarax sinensis sp. nov. Holotype, ECNU-IV-0004, male. A: Sternum, ventral view; B: Chelicera, mesal view; C: Chelicera, ectal view.

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FIGURE 4 in A new species of whip spider, Sarax sinensis sp. nov., from Fujian, China (Arachnida: Amblypygi: Charinidae)

FIGURE 4. Sarax sinensis sp. nov. from Fujian, China. Holotype, ECNU-IV-0004, male. A: Dorsal; B: Ventral.

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FIGURE 5 in A new species of whip spider, Sarax sinensis sp. nov., from Fujian, China (Arachnida: Amblypygi: Charinidae)

FIGURE 5. Sarax sinensis sp. nov. A: Frontal process of holotype, ECNU-IV-0004; B: Ventral sac of paratype ECNU-IV- 0006.

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FIGURE 3 in A new species of whip spider, Sarax sinensis sp. nov., from Fujian, China (Arachnida: Amblypygi: Charinidae)

FIGURE 3. Phylogenetic relationships of charinid whip spiders highlighting the phylogenetic position of Sarax sinensis sp. nov. (boldfaced). Phylogenetic analysis inferred under maximum likelihood (A) and Bayesian inference (B) based on the molecular dataset of Miranda et al. (2021) and Zhu et al. (2021). Support values are based on 1,000 bootstrap replicates (A) and posterior probabilities (B; 1 million generations and 10% post-burnin). Branch lengths in substitutions per site (see scale under trees). Only relationships between species of Charinidae are shown. Other Amblypygi analyzed as outgroups but not shown in the figure are Damon diadema Simon 1876, Phrynus longipes Pocock 1894, Baalrog sbordonii Brignoli 1973, and Mastigoproctus giganteus Lucas 1835. Blue represents Weygoldtia; Green represents Charinus; Grey represents Sarax of the West Asia Clade; Pink represents Sarax of the East Asia Clade.

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FIGURE 1 in A new species of whip spider, Sarax sinensis sp. nov., from Fujian, China (Arachnida: Amblypygi: Charinidae)

FIGURE 1. Dorsal habitus of Sarax sinensis sp. nov. from Fujian, China. A: Immature of unknown sex (photographed in the field); B: Adult female carrying an egg sac.

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FIGURE 6 in A new fairy shrimp, Branchinecta piurae sp. nov. (Branchiopoda: Anostraca), from Peru

FIGURE 6. Bayesian Inference phylograms based on partial sequences of mitochondrial COI and 16S genes and nuclear 18S gene. Node support provided for Bayesian Inference and Maximum Likelihood for both COI and 18S, while for 16S all branches are clearly significant but values not provided for a better clarity of the figure. Countries of origin in bold indicate sequences from this study (see Table 1 for a list of sampling sites of the different species sequenced). Only nodes with statistical support ≥50% are labelled, with the except for subdivisions within species, for which labels are not shown.

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FIGURE 2 in A new fairy shrimp, Branchinecta piurae sp. nov. (Branchiopoda: Anostraca), from Peru

FIGURE 2. Branchinecta piurae sp. nov. Male from Huancabamba Province, Departamento de Piura, Peru. A, first thoracopod. B, fifth thoracopod. C, eleventh thoracopod. D (I–XI), arrangement of setae on endites of first-eleventh thoracic limbs. PE= praepipodite. EP = epipodite. EX= exopodite. EN = endopodite. 1–5 = endites. Scale bars: A–C = 1 mm; D = 0.5 mm.

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FIGURE 1 in A new fairy shrimp, Branchinecta piurae sp. nov. (Branchiopoda: Anostraca), from Peru

FIGURE 1. Branchinecta piurae sp. nov. Male from Huancabamba Province, Departamento de Piura, Peru. A, head, anterior view. B, tip of first antenna. C, right second antenna, anterior view. D, detail of denticles in proximal antennomere showing sensillae. E, right second antenna, posterior view. F, rasp-like posteriolateral surface in the apex of distal antennomere of second antenna. G, labrum, lateral view. H, labrum, posterior view. Scale bars: A, E = 2 mm; B, D = 0.1 mm; F = 0.5 mm; C, G, H = 1 mm.

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FIGURE 5 in A new fairy shrimp, Branchinecta piurae sp. nov. (Branchiopoda: Anostraca), from Peru

FIGURE 5. Branchinecta piurae sp. nov. Female from Huancabamba Province, Departamento de Piura, Peru. A, first thoracopod. B, detail of setae in endopodite apex of first thoracopod. C, fifth thoracopod. D, detail of setae in endopodite apex of fifth thoracopod. E, eleventh thoracopod. F, detail of setae in endopodite apex of eleventh thoracopod. PE= praepipodite. EP = epipodite. EX= exopodite. EN = endopodite. 1–5 = endites. Scale bars: B, D, F = 0.2 mm; A, C, E = 1mm.

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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.

allen-brain-atlas
neuroscienceopenDocumentation, web resources, and API references are available online.
Last verified 2026-04-30Open record

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.

abode-home-cage
behavioral-neuroscienceopenThe DataShare record exposes download links for annotations, documentation, license text, and the zipped per-snippet data directory.
Last verified 2026-04-30Open record

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.

dandi-nwb
electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
Last verified 2026-04-30Open record

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.

ibl
behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
Last verified 2026-04-29Open record

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.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record