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FIGURE 2 in Integrative taxonomy of Hemimycale (Hymedesmiidae: Poecilosclerida: Demospongiae) from Southeastern Brazil, with the description of two new species
FIGURE 2. In situ photographS of Hemimycale neW SpecieS from SoutheaStern Brazil Ecoregion. (A‒B) Hemimycale oxeata sp. nov. from Guriri iSlet: (A) Paratype UERJPOR 110; (B) Surface of the Paratype UERJPOR 105 in detail; (C‒D) Hemimycale ceadensis sp. nov. from Jorge Grego ISland: (C) Holotype 21303 (D) Surface of the Paratype UERJPOR 188 in detail.
FIGURE 3 in Integrative taxonomy of Hemimycale (Hymedesmiidae: Poecilosclerida: Demospongiae) from Southeastern Brazil, with the description of two new species
FIGURE 3. Hemimycale oxeata sp. nov., fixed Specimen, Skeleton and SpiculeS; (A) Paratype UERJPOR 110; (B) CloSe up of a pore Sieve of the Paratype MNRJ 276; (C) CroSS Section of Skeleton obtained from a paraffin embedded fragment of a Specimen; (D) CroSS Section of Skeleton obtained With a diamond SaW from an epoxy reSin embedded Specimen (the arroW point to the Skeleton of a pore Sieve); (E‒H) SEM imageS of SpiculeS: (E) StrongyleS varying to SubtyloteS or SubtyloStrongyleS; (F) ExtremitieS of (Subtylo-)StrongyleS in detail; (G) OxeaS; (H) Mucronate and teleScoped endS of oxeaS in detail.
FIGURE 1 in Integrative taxonomy of Hemimycale (Hymedesmiidae: Poecilosclerida: Demospongiae) from Southeastern Brazil, with the description of two new species
FIGURE 1. DiStribution of Hemimycale Spp. in the SoutheaStern Brazil Ecoregion (A) Map of South America With SoutheaStern Brazil Ecoregion and Sampling areaS in detail; (B) Arraial do Cabo and Cabo Frio iSland; (C) Ilha Grande; (D) São SebaStião and Ilhabela; (E) AlcatrazeS Archipelago; (F) Arvoredo iSland. (*) Hemimycale oxeata sp. nov.; (•) Hemimycale ceadensis sp. nov.
FIGURE 7 in Two new species of Atlantoscia Ferrara & Taiti, 1981 (Isopoda: Oniscidea: Philosciidae) from southern Brazil described in the light of integrative taxonomy
FIGURE 7. ML tree based on COI mitochondrial sequences of Atlantoscia species. Numbers above branches represent bootstrap support. Codes next to the species names represent GenBank accession numbers of the analyzed sequences. New species are highlighted in gray.
FIGURE 8 in Two new species of Atlantoscia Ferrara & Taiti, 1981 (Isopoda: Oniscidea: Philosciidae) from southern Brazil described in the light of integrative taxonomy
FIGURE 8. Bayesian tree based on 18S rRNA nuclear sequences of Atlantoscia species. Numbers above branches represent Bayesian posterior probabilities. Codes next to the species names represent GenBank accession numbers of the analyzed sequences. New species are highlighted in gray.
FIGURE 4 in Two new species of Atlantoscia Ferrara & Taiti, 1981 (Isopoda: Oniscidea: Philosciidae) from southern Brazil described in the light of integrative taxonomy
FIGURE 4. Atlantoscia australis Campos-Filho, Cardoso & Araujo sp. nov., MZUSP 36765. Female paratype: A, habitus in dorsal view. Male paratype: B, cephalon in frontal view; C, dorsal scale-seta; D, b/c noduli laterales coordinates; E, d/c noduli laterales coordinates; F, pleonites 3–5, telson and uropod; G, antennula; H, antenna.
FIGURE 3 in Two new species of Atlantoscia Ferrara & Taiti, 1981 (Isopoda: Oniscidea: Philosciidae) from southern Brazil described in the light of integrative taxonomy
FIGURE 3. Atlantoscia antennamaculata Campos-Filho, Cardoso & Araujo sp. nov., male paratype, MZUSP 36767. A, uropod; B, pereopod 1, arrow indicating the dactylus; C, pereopod 7; D, genital papilla and pleopod 1; E, pleopod 2; F, pleopod 3 exopod; G, pleopod 4 exopod; H, pleopod 5 exopod.
FIGURE 1 in Two new species of Atlantoscia Ferrara & Taiti, 1981 (Isopoda: Oniscidea: Philosciidae) from southern Brazil described in the light of integrative taxonomy
FIGURE 1. Atlantoscia antennamaculata Campos-Filho, Cardoso & Araujo sp. nov., MZUSP 36767. Female paratype: A, habitus in dorsal view. Male paratype: B, dorsal scale-seta; C, b/c noduli laterales coordinates; D, d/c noduli laterales coordinates; E, pereonite 4, arrow indicating the nodulus lateralis; F, telson; G, antennula; H, antenna.
FIGURE 6 in Two new species of Atlantoscia Ferrara & Taiti, 1981 (Isopoda: Oniscidea: Philosciidae) from southern Brazil described in the light of integrative taxonomy
FIGURE 6. Atlantoscia australis Campos-Filho, Cardoso & Araujo sp. nov., male paratype, MZUSP 36767. A, pereopod 1, arrow indicating the dactylus; B, pereopod 7; C, genital papilla; D, pleopod 1; E, pleopod 2; F, pleopod 3 exopod; G, pleopod 4 exopod; H, pleopod 5 exopod.
FIGURE 5 in Two new species of Atlantoscia Ferrara & Taiti, 1981 (Isopoda: Oniscidea: Philosciidae) from southern Brazil described in the light of integrative taxonomy
FIGURE 5. Atlantoscia australis Campos-Filho, Cardoso & Araujo sp. nov., male paratype, MZUSP 36765. A, left mandible; B, right mandible; C, maxillula; D, maxilla; E, maxilliped.
FIGURE 2 in Two new species of Atlantoscia Ferrara & Taiti, 1981 (Isopoda: Oniscidea: Philosciidae) from southern Brazil described in the light of integrative taxonomy
FIGURE 2. Atlantoscia antennamaculata Campos-Filho, Cardoso & Araujo sp. nov., male paratype, MZUSP 36767. A, left mandible; B, right mandible; C, maxillula; D, maxilla; E, maxilliped.
FIGURE 1 in Integrative taxonomy identifies Macrobiotus papei, a new tardigrade species of the Macrobiotus hufelandi complex (Eutardigrada: Macrobiotidae) from the Udzungwa Mountains National Park (Tanzania)
FIGURE 1. Macrobiotus papei sp. nov.—habitus: A—dorso-ventral projection (holotype, Hoyer's medium, PCM); B–C— cuticular pores seen in PCM on the dorsal (B) and ventral (C) part of the body (paratype); D–E—cuticular pores seen in SEM on the dorsal (D) and ventral (E) part of the body (paratype). Scale bars in µm.
FIGURE 5 in Integrative taxonomy identifies Macrobiotus papei, a new tardigrade species of the Macrobiotus hufelandi complex (Eutardigrada: Macrobiotidae) from the Udzungwa Mountains National Park (Tanzania)
FIGURE 5. Macrobiotus papei sp. nov.—claws (paratypes): A–B—claws II and IV seen in PCM, with smooth and slightly dentate lunules, respectively; C–D—claws I and IV seen in SEM, with smooth and slightly dentate lunules, respectively. Figs A and B assembled from several photos. Scale bars in µm.
FIGURE 4 in Integrative taxonomy identifies Macrobiotus papei, a new tardigrade species of the Macrobiotus hufelandi complex (Eutardigrada: Macrobiotidae) from the Udzungwa Mountains National Park (Tanzania)
FIGURE 4. Macrobiotus papei sp. nov.—mouth opening and the oral cavity armature seen in SEM (paratype): A– mouth opening with six peribuccal sensory lobes and ten lamellae surrounded by large pores; B–C—the oral cavity armature of a single paratype seen in SEM from different angles. Arrows indicate pores in the irregular ring of pores surrounding the peribuccal lobes, filled arrowheads indicate teeth of the first band, empty arrowheads indicate teeth of the second band, the peaks in the dorsal ridge of the third band that correspond with teeth of the third band, in species with better developed oral cavity armatures are marked with "Ld" and "Md" (the dorso-median tooth comprises several small peaks visible as thickenings in PCM), whereas the teeth of the ventral portion are marked with "Mv" (medio-ventral tooth) and "Lv" (lateral teeth). Scale bars in µm.
FIGURE 7 in Integrative taxonomy identifies Macrobiotus papei, a new tardigrade species of the Macrobiotus hufelandi complex (Eutardigrada: Macrobiotidae) from the Udzungwa Mountains National Park (Tanzania)
FIGURE 7. Macrobiotus papei sp. nov.—egg chorion morphology seen in SEM: A—entire egg with clearly visible flexible filaments on the egg processes; B–C—processes with filaments of variable length and the surface between processes; D— detail of the egg surface; E–F—details of the terminal disc and its flexible filaments. Scale bars in µm.
FIGURE 6 in Integrative taxonomy identifies Macrobiotus papei, a new tardigrade species of the Macrobiotus hufelandi complex (Eutardigrada: Macrobiotidae) from the Udzungwa Mountains National Park (Tanzania)
FIGURE 6. Macrobiotus papei sp. nov.—egg seen in PCM: A—midsection; B—surface; C–D—magnification on surface; E—magnification on midsection; F—surface of terminal discs of egg processes. Filled arrowheads indicate thin flexible filaments at the edges of terminal discs on the midsections. A, B and D show the details of a single egg whereas other photos are taken from more than one egg. Scale bars in µm.
FIGURE 3 in Integrative taxonomy identifies Macrobiotus papei, a new tardigrade species of the Macrobiotus hufelandi complex (Eutardigrada: Macrobiotidae) from the Udzungwa Mountains National Park (Tanzania)
FIGURE 3. Macrobiotus papei sp. nov.—buccal apparatus and the oral cavity armature (OCA) seen in PCM (all paratypes): A—dorso-ventral projection of the entire buccal apparatus; B–C oral cavity armature detected in the majority of specimens, i.e. OCA of the patagonicus type (i.e. the second and third band of teeth visible), dorsal (B) and ventral (C) view, respectively; D–E oral cavity armature detected in small specimens, i.e. OCA of the maculatus type (i.e. only the third band of teeth visible), dorsal (D) and ventral (E) view, respectively; F–G—placoid morphology. The arrow indicates pores surrounding mouth opening, flat empty arrowheads indicate the second band of teeth in the oral cavity, filled indented arrowheads indicate the third band of teeth in the oral cavity whereas filled arrowheads indicate faint constrictions in macroplacoids. Scale bars in µm.
FIGURE 2 in Integrative taxonomy identifies Macrobiotus papei, a new tardigrade species of the Macrobiotus hufelandi complex (Eutardigrada: Macrobiotidae) from the Udzungwa Mountains National Park (Tanzania)
FIGURE 2. Macrobiotus papei sp. nov.—cuticular structures on legs: A–B—external granulation on leg II seen in PCM (A) and SEM (B) (paratypes); C–D—a cuticular bulge resembling a pulvinus, faint cuticular fold on the internal surface of leg II with visible muscle attachment seen in PCM (C) and SEM (D) (paratypes); E—two patches of granulation on leg IV (PCM, paratype); F—distal patch of granulation on leg IV (SEM, paratype). Filled, flat arrowheads indicate the cuticular bulge, empty, flat arrowheads indicate the faint cuticular fold under the claws, arrows indicate muscle attachments, whereas filled and empty indented arrowheads indicate proximal and distal patch of granulation on the leg IV respectively. Scale bars in µm.
FIGURE 15 in The bee Ruizanthedella mutabilis Spinola (Hymenoptera: Halictidae): a very common but poorly known species studied using integrative taxonomy
FIGURE 15. Neighbor-joining tree for specimens of R. mutabilis and phylogenetically close species, distances calculated using the Kimura 2-parameter model. The scale represents the number of substitutions per site.
FIGURES 11‒14. 11–12 in The bee Ruizanthedella mutabilis Spinola (Hymenoptera: Halictidae): a very common but poorly known species studied using integrative taxonomy
FIGURES 11‒14. 11–12, Genital capsule, 11, ventral view, 12, dorsal view. 13, S4. 14, S7 and S8 fused, ventral view. Abbreviations: bd, basal depression of the gonocoxite, gs, gonostylus, rl, retrorse lobe of the gonocoxite, s, row of short setae. Scale lines: 200 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)
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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.