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Figure 2. Stygothrombium garzensis Li in A new species of the genus Stygothrombium, representing a newly recorded superfamily Stygothrombioidea Mullen & Vercammen-Grandjean, 1980 (Acari: Stygothrombiae) from China
Figure 2. Stygothrombium garzensis Li & Guo, sp. nov., ♀, holotype (SC-ST-20200801). A. Dorsal view. B. Ventral view. Scale bars = 500 μm.
Figure 4. Stygothrombium garzensis Li in A new species of the genus Stygothrombium, representing a newly recorded superfamily Stygothrombioidea Mullen & Vercammen-Grandjean, 1980 (Acari: Stygothrombiae) from China
Figure 4. Stygothrombium garzensis Li & Guo, sp. nov., ♀, holotype (SC-ST-20200801). A. Anterior coxal group (Cx-I+Cx-II). B. Posterior coxal group (Cx-III+Cx-IV), genital field. Scale bar = 200 μm.
Figure 3. Stygothrombium garzensis Li in A new species of the genus Stygothrombium, representing a newly recorded superfamily Stygothrombioidea Mullen & Vercammen-Grandjean, 1980 (Acari: Stygothrombiae) from China
Figure 3. Stygothrombium garzensis Li & Guo, sp. nov., ♀, holotype (SC-ST-20200801). A. Infracapitulum, dorsal view. B. Chelicera. C. Pedipalp, one lateral view. D. Pedipalp, another lateral view. E. Prodorsal plate. Scale bar = 200 μm.
Figure 5 in A new subgenus representing a newly recorded genus from China, with a new species featured with special palps (Acari, Hydryphantoidea, Hydryphantidae, Partnunia)
Figure 5 Partnunia (Peculiaripalpus) longlingensis sp. nov., A – gnathosoma (male); B – palp (male); C – Cx-3+4 (female); D – leg I (male). Scale bars: 100 μm.
Figure 4 in A new subgenus representing a newly recorded genus from China, with a new species featured with special palps (Acari, Hydryphantoidea, Hydryphantidae, Partnunia)
Figure 4 Partnunia (Peculiaripalpus) longlingensis sp. nov., A – Cx-1+2 (male); B – Cx-1+2 (female); C – genital field (male); D – genital
Figure 2 in A new subgenus representing a newly recorded genus from China, with a new species featured with special palps (Acari, Hydryphantoidea, Hydryphantidae, Partnunia)
Figure 2 Partnunia (Peculiaripalpus) longlingensis sp. nov., male, A – idiosoma, dorsal view; B – idiosoma, ventral view; C – spatulate setae; D – palp; E – chelicera; F – leg I; G – leg II; H – leg III; I – leg IV. Scale bars: 100 μm.
Figure 2 in Indotyphlops braminus (Daudin, 1803): distribution and oldest record of collection dates in Oceania, with report of a newly established population in French Polynesia (Tahiti Island, Society Archipelago)
Figure 2. Anterior ventral area of Indotyphlops braminus MNHN-RA 2015.0057 showing the whitish gular coloration. Picture: I. Ineich.
Figure 1 in Indotyphlops braminus (Daudin, 1803): distribution and oldest record of collection dates in Oceania, with report of a newly established population in French Polynesia (Tahiti Island, Society Archipelago)
Figure 1. Two introduced specimens of Indotyphlops braminus from Tahiti Island in French Polynesia. MNHN-RA 2015.0058 above and MNHN-RA 2015.0057 below. Scale bar: 1cm. Picture: I. Ineich.
Figure 9 in Earliest known record of a hypercarnivorous dasyurid (Marsupialia), from newly discovered carbonates beyond the Riversleigh World Heritage Area, north Queensland
Figure 9. Comparison of the distribution of major cusps (in occlusal view) preserved in the Whollydooleya tomnpatrichorum holotype (QM F57892) with the RM3 of representative extinct (†) and recent hypercarnivorous dasyuromorphians. A-A', Whollydooleya tomnpatrichorum (†); B-B', Dasyurus maculatus, AR21693; C-C', Glaucodon ballaratensis, P207018 (†); D-D', Sarcophilus moornaensis, NMV P28684 (†); E-E', Sarcophilus harrisii, AR21694; F-F', Thylacinus cynocephalus, AR21695 (image reversed from the LM) (†). Abbreviations: end, entoconid 3 (orange dot); hyd, hypoconid (green dot); hyld, hypoconulid (purple dot); med, metaconid (blue dot); prd, protoconid (red dot). Not to scale.
Figure 5 in Earliest known record of a hypercarnivorous dasyurid (Marsupialia), from newly discovered carbonates beyond the Riversleigh World Heritage Area, north Queensland
Figure 5. Stereoviews of the holotype of Whollydooleya tomnpatrichorum n. gen. et sp. QM F57892 from a buccal oblique view. The margin at the right represents the missing flank of the trigonid.
Figure 4 in Earliest known record of a hypercarnivorous dasyurid (Marsupialia), from newly discovered carbonates beyond the Riversleigh World Heritage Area, north Queensland
Figure 4. Comparison of the holotype ofWhollydooleya tomnpatrichorum n. gen. et sp. QM F57892 with other hypercarnivorous dasyuromorphians (not to scale). A–C, W. tomnpatrichorum, QM F57892, m2 or m3. A, posterobuccal view; B-B', occlusal stereoview; C, oblique posterobuccal view. D–F, Dasyurus maculatus, AR21693, M3. D, buccal view; E-E', occlusal stereoview; F, oblique posterobuccal view. G–I, Sarcophilus harrisii, AR21694, M3. G, buccal oblique view; H-H', occlusal stereoview; I, oblique posterobuccal view. J–L, Thylacinus cynocephalus, AR21695, M talonid (reversed from the LM ). J, posterobuccal oblique view; K-K', occlusal stereoview; L, oblique posterobuccal view.
Figure 7. NMV P207018 in Earliest known record of a hypercarnivorous dasyurid (Marsupialia), from newly discovered carbonates beyond the Riversleigh World Heritage Area, north Queensland
Figure 7. NMV P207018, cast of a right dentary referred to Glaucodon ballaratensis by Gerdtz and Archbold (2003) that preserves the RC 1, P 1–2 and M 1–4. Left upper, buccal view. Left lower, lingual view. Right, occlusal view of the dentition. Scale bar = 1 cm. Photographs by Darren Bellingham.
Figure 6 in Earliest known record of a hypercarnivorous dasyurid (Marsupialia), from newly discovered carbonates beyond the Riversleigh World Heritage Area, north Queensland
Figure 6. Measurements of the holotype of Whollydooleya tomnpatrichorum n. gen. et sp. QM F57892 in occlusal stereoview. In the upper figure, the sides of the triangle link: 1, protoconid to entoconid; 2, protoconid to hypoconid; and 3, entoconid to hypoconid. The longitudinal measure is the distance between the protoconid and the apex of the hypoconulid. In the lower figure, the measures are: talonid width through the entoconid and hypoconid; talonid length from the ascending extremity of the cristid obliqua against the posterior flank of the trigonid to the posterior extremity of the crown through the hypoconulid; and maximum width of the damaged trigonid.
Figure 3 in Earliest known record of a hypercarnivorous dasyurid (Marsupialia), from newly discovered carbonates beyond the Riversleigh World Heritage Area, north Queensland
Figure 3. Photomicrographs of geological thin sections from Wholly Dooley Site later infills. A, Rhythmically banded calcite and goethite UXP; B, calcite filling void in layer 2 UXP; C, late cryptocrystalline silica (indicated by red arrow) filling fractures UXP; D, possible microbially mediated goethite precipitation (dendrites) in layer 2 PPL. WD2 numbers represent images of thin sections produced in the University of New South Wales.
Figure 1 in Earliest known record of a hypercarnivorous dasyurid (Marsupialia), from newly discovered carbonates beyond the Riversleigh World Heritage Area, north Queensland
Figure 1. Wholly Dooley Site, Wholly Dooley Hill, northwestern Queensland. The grey limestone massifs to the left are unfossiliferous Cambrian limestone and probably represent part of the western and southern walls of the original cave chamber. Fossiliferous Wholly Dooley matrix has been obtained from the excavated depression in the centre. About 7.2 km NE from this point is the approximate centre of the Riversleigh World Heritage Area; about 1.2 km NWN from this point is the southwestern boundary of the RWHA. Photo M. Archer.
Figure 2 in Earliest known record of a hypercarnivorous dasyurid (Marsupialia), from newly discovered carbonates beyond the Riversleigh World Heritage Area, north Queensland
Figure 2. Photomicrographs of geological thin sections from Wholly Dooley Site. A, Detrital quartz grains within the host micrite UXP; B, calcite raft fragment within host micrite UXP; C, erosional contact between host micrite (left) and overlying layer 1 (right) showing abundant aeolian-derived quartz within layer 1 UXP; D, Fe-oxide pelloids and detrital quartz grains within layer 1 PPL. WD2 numbers refer to thin section images produced in the School of Biological, Earth & Environmental Sciences.
Figure 8. NMV P28684 in Earliest known record of a hypercarnivorous dasyurid (Marsupialia), from newly discovered carbonates beyond the Riversleigh World Heritage Area, north Queensland
Figure 8. NMV P28684, right dentary of the holotype of Sarcophilus moornaensis preserving damaged M. A, Buccal view; B, buccal oblique 1–4 view; C, lingual view; D, occlusal view of M . Photographs by Erich Fitzgerald.
Figure 2. Trimerocaecilius popovi Meinander, 1978 in Little known and newly recorded species of Psocoptera in Bulgaria
Figure 2. Trimerocaecilius popovi Meinander, 1978 (the area of Sinemorets village, type locality): 1 – male, 2-4 – female (photographed in ethanol), 5 – two specimens in their habitat on an oak bark.
Figure 1 in Little known and newly recorded species of Psocoptera in Bulgaria
Figure 1. Collection localities of: 1 – Liposcelis bostrychophila, Psocus bipunctatus, 2 – Liposcelis formicaria, 3 – Liposcelis rufa, 4 – Liposcelis bostrychophila, 5 – Liposcelis bostrychophila, Lepinotus inquilinus, 6 – Liposcelis bostrychophila, 7 – Bertkauia lucifuga, 8 – Liposcelis bostrychophila, Lepinotus inquilinus, 9 – Liposcelis bostrychophila, 10 – Amphigerontia contaminata, Blaste conspurcata, 11 – Ectopsocus briggsi, 12 – Cerobasis guestfalica, Ectopsocus briggsi, Ectopsocus meridionalis, Psococerastis gibbosa, Peripsocus didymus, Trimerocaecilius popovi, Stenopsocus immaculatus, Trichadenotecnum majus, Trichadenotecnum innuptum, 13 – Cerobasis guestfalica, Trichopsocus dalii, 14 – Liposcelis bostrychophila, Cerobasis guestfalica, Ectopsocus briggsi, Ectopsocus meridionalis, Trichopsocus dalii, 15 – Liposcelis bostrychophila, 16 – Metylophorus nebulosus, 17 – Cerobasis guestfalica, Ectopsocus briggsi.
Fig. 1. Henricia sanguinolenta. A in A newly recorded sea star of genus Henricia (Asteroidea: Spinulosida: Echinasteridae) from the East Sea, Korea
Fig. 1. Henricia sanguinolenta. A. abactinal side; B. actinal side; C. abactinal paxillae; D. actinal spines: inferomarginal spines (Is), ventrolateral spines (Vs), adambulacral spines (As); E. oral part; F. madreporite with spines; G. madreporite without spines; H. abactinal skeleton; I. actinal skeleton: superomarginal plates (S), intermarginal plates (In), inferomarginal plates (I), ventrolateral plates (V), adambulacral plates (A); J. abactinal spines; K. adambulacral spines. Scale bars: A, B = 2 cm, C-I = 1 mm, J = 100 μm, K = 50 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.