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13,397 results for “sp. nov.”
Fig. 3 in Inocybe hopeae sp. nov. and first record of Pseudosperma keralense (Inocybaceae) from Thailand
Fig. 3. Microscopic features of Inocybe hopeae Raghoonundon & Raspé sp. nov. a. Caulocystidia. b. Pleurocystidia. c. Cheilocystidia. d. Basidia. e. Pileipellis. f. Basidiospores. Scale bars: a–e = 20 µm, f = 10 µm.
Fig. 1 in Inocybe hopeae sp. nov. and first record of Pseudosperma keralense (Inocybaceae) from Thailand
Fig. 1. Maximum likelihood phylogenetic tree inferred from the three gene dataset (tef1, LSU, rpb2). Seven species of Pseudosperma Matheny & Esteve-Rav. and one species of Nothocybe Matheny & K.P.D.Latha were used as outgroup taxa. Maximum likelihood bootstrap (MLB, left) ≥70% and Bayesian posterior probabilities (BPP, right) ≥ 0.95 are shown above supported branches. The new species and new record are in bold.
Fig. 2. a in Inocybe hopeae sp. nov. and first record of Pseudosperma keralense (Inocybaceae) from Thailand
Fig. 2. a. Basidiomes of Inocybe hopeae Raghoonundon & Raspé sp. nov. (OR1665, holotype). c–d. Basidiomes of Inocybe hopeae (OR1630). b, e–f. Basidiomes of Pseudosperma keralense (K.P.D.Latha & Manim.) Matheny & Esteve-Rav. (OR1629). Scale bars: a = 10 mm, b–d = 5 mm.
FIG. 4 in The French Polynesian Atractocarpus Schltr. & K.Krause (Rubiaceae): circumscription of A. tahitensis and description of A. teamotuaitaui sp. nov., both microendemic and critically endangered species in the Society Islands
FIG. 4. — Atractocarpus teamotuaitaui Mouly & Butaud, sp. nov.: A, leafy and flowering branch of the species, under the secondary vegetation cover; B, apical stipules; C, flower at anthesis; D, stipules and detail of the leaf-base at a ramification; E, unripe fruit on a branch with the congested leaf cluster. Photos by J.-F. Butaud.
Figure 11 in A New Species of Tasmanian Mountain Shrimp, Anaspides driesseni sp. nov. (Malacostraca, Anaspidacea, Anaspidesidae)
Figure 11. Dorsal view on the antenna of male A. swaini form 1 and 2: (A) A. swaini form 1, 28 mm, tributary of Weld River, Mueller Road, 5.1 km behind west gate, ZSRO CR76, Ana329, right antenna; (B) A. swaini form 1, 23 mm, tributary of Weld River, Mueller Road, 4.4 km behind west gate, ZSRO CR75, Ana 655, right antenna; (C) A. swaini form 2, 29 mm, Lake Oenone, ZSRO CR206, Ana621, left antenna (mirrored view). Scale bars: 1 mm.
Figure 9 in A New Species of Tasmanian Mountain Shrimp, Anaspides driesseni sp. nov. (Malacostraca, Anaspidacea, Anaspidesidae)
Figure 9. Topographical map of Wellington Park with drainage and sub-drainage systems, as well as collection sites with genetically analysed individuals from this study. Subdrainage systems 1–7 drain into the Derwent River drainage system: (1) Lachlan River/Myrtle Falls Creek; (2) Glen Dhu Creek; (3) Myrtle Forest Creek/Sorell Creek; (4) Knights Creek; (5) New Town Rivulet; (6) Guy Fawkes; (7) Browns River; (8) corresponds to the Noth West Bay River drainage system; whereas subdrainage system 9–10 drain into the Huon River drainage system; (9) Mountain River; (10) Judds Creek. Base image by TASMAP© (www.tasmap.tas.gov.au). State of Tasmania.
Figure 10 in A New Species of Tasmanian Mountain Shrimp, Anaspides driesseni sp. nov. (Malacostraca, Anaspidacea, Anaspidesidae)
Figure 10. Typical habitats and colour-in-life of A. driesseni: (A) Glen Dhu Creek (B) Knights Creek at Knights Creek Track (C) small trickle fed road side ditch, next to Collins Cap Trail (D) unnamed creek, tributary of Styx River, crossing the road off Waterfall Creek Road (E) adult male, 35 mm, Ana560, unnamed creek, tributary of Styx River, crossing the road off Waterfall Creek Road. (F) adult male, 29 mm, AM P106559, unnamed creek, tributary of Styx River, crossing the road off Waterfall Creek Road.
Figure 7 in A New Species of Tasmanian Mountain Shrimp, Anaspides driesseni sp. nov. (Malacostraca, Anaspidacea, Anaspidesidae)
Figure 7. Distribution map of A. swaini and A. driesseni with important drainage divides (1) Franklin-Gordon; (2) Derwent; (3) Huon; (4) Port Davey; and (5) North West Bay River. Light brownish background colour indicates National Parks. (A) detailed view of Snowy Range, see Fig. 8; (B) detailed view of Wellington Park, see Fig. 9. Modified after the Tasmania catchments map. https://dpipwe.tas.gov. au/Documents/Tasmania-Catchment-Map.pdf
Figure 3 in A New Species of Tasmanian Mountain Shrimp, Anaspides driesseni sp. nov. (Malacostraca, Anaspidacea, Anaspidesidae)
Figure 3. Anaspides driesseni sp. nov., (A–L) male holotype, 32 mm, Myrtle Forest Creek, Wellington Range, TMAG G6403; (M–N), female, 34 mm, Mount Wellington, AM P9218. (A) right thoracopod 1 (maxilliped); (B–H) right thoracopods 2–8, respectively; (I) right pleopod 4, anterior view; (J–L) pleonites 3–5 median sternal processes, respectively; (M, N) female gonopore, right lateral and ventral views, respectively. Scale 2.0 mm.
Figure 4 in A New Species of Tasmanian Mountain Shrimp, Anaspides driesseni sp. nov. (Malacostraca, Anaspidacea, Anaspidesidae)
Figure 4. Anaspides driesseni sp. nov. selected features. (A–E) juv. male, 28 mm, Myrtle Forest, AM P106558; (F–H) juv. male, 29 mm, Myrtle Forest, AM P106558 (I–J) male, 28 mm, Mt Fenton, TMAG G6407. (A, F) anterior cephalothorax. (B) telson with uropods. (C) scaphocerite. (G, I) telson. (D) pleonal pleura. (E) right antennule with clasping spines. (H, J) left antennule with clasping spines. Scale: A–D, F, G, I = 2.0 mm, E, H, J = 1.0 mm.
Figure 5 in A New Species of Tasmanian Mountain Shrimp, Anaspides driesseni sp. nov. (Malacostraca, Anaspidacea, Anaspidesidae)
Figure 5. Dorsal view on the antenna of male A. driesseni sp. nov. (A–C) Snowy North, unnamed tributary of Styx River crossing the road off Waterfall Creek Road, ZSRO CR183; (A) 35 mm, right antenna; (B) Ana 560, 35 mm, right antenna, with 4 abnormal clasping spines, highlighted with white outlines; (C) Ana 560, 35 mm, left antenna; (D) right antenna, 29 mm, Knights Creek, Wellington Range, ZSRO CR179. Scale bars: 1 mm.
Figure 6. COI, 16S and 28S in A New Species of Tasmanian Mountain Shrimp, Anaspides driesseni sp. nov. (Malacostraca, Anaspidacea, Anaspidesidae)
Figure 6. COI, 16S and 28S median joining haplotype networks of Anaspides driesseni. Colours correspond to figure legend. The size of each haplotype corresponds to the number of individuals sharing that specific haplotype (see scale). Each dash corresponds to one mutation respectively indel.
Figure 2 in A New Species of Tasmanian Mountain Shrimp, Anaspides driesseni sp. nov. (Malacostraca, Anaspidacea, Anaspidesidae)
Figure 2. Anaspides driesseni sp. nov., male holotype, 32 mm, Myrtle Forest Creek, Wellington Range, TMAG G9228. (A) anterior cephalothorax, dorsal view; (B) pleonite 6, telson and right uropod; (C) pleonite 6 and telson; (D–F) pleonites 4–6 pleura, right lateral view; (G) right antennule; (H) right antenna; (I) labrum, anterior view; (J) right mandible; (K) right mandible incisor process; (L) left mandible incisor process; (M) paragnaths, anterior view; (N) right maxillule; (O) right maxilla; (P) pleopods 1–2, in-situ, ventral view; (Q–R) right pleopod 1 endopod, lateral view and dorsal view, respectively; (S) right pleopod 2 endopod, lateral view. Scale: A, B, D–H, P–S = 2.0 mm, C, I–O = 1.0 mm.
Figure 4 in Litoria aplini sp. nov., a New Species of Treefrog (Pelodryadidae) from Papua New Guinea
Figure 4. Maximum likelihood (ML) phylogram of relationships between mitochondrial ND4 nucleotide sequences of Litoria. Numbers at nodes are: left—Bayesian posterior probabilities, right—ML bootstrap proportions.
Figure 1 in Litoria aplini sp. nov., a New Species of Treefrog (Pelodryadidae) from Papua New Guinea
Figure 1. Views of Litoria aplini holotype (SAMA R71463) in preservative. (A) dorsal; (B) ventral (scale bar = 10 mm); (C) palmar; and (D) plantar surfaces (scale bar = 5 mm).
Figure 1 in A New Species of Tasmanian Mountain Shrimp, Anaspides driesseni sp. nov. (Malacostraca, Anaspidacea, Anaspidesidae)
Figure 1. Anaspides driesseni sp. nov., male holotype, 32 mm, Myrtle Forest Creek, Wellington Range, TMAG G9228. Habitus, right lateral view. Scale = 2.0 mm.
Figure 3 in Litoria aplini sp. nov., a New Species of Treefrog (Pelodryadidae) from Papua New Guinea
Figure 3. Closely related species that could be confused with Litoria aplini: (A) Litoria iris (SAMA R71615), adult male in life (Hindenburg Range, Western Province); (B) Litoria iris showing bright colours on hidden surfaces of the hind legs (unvouchered animal, Hela Province); (C) Litoria majikthise (SAMA R65042), in life, Muller Range, Western Province); (D, E) Litoria majikthise (SAMA R65042), showing colour ventrally and on hidden surfaces of hind limbs; and (F) Litoria ollauro, Milne Bay Province, photo courtesy of Fred Kraus.
Figure 2 in Litoria aplini sp. nov., a New Species of Treefrog (Pelodryadidae) from Papua New Guinea
Figure 2. Type series of Litoria aplini in life: (A) SAMA R71463; (B) SAMA R71465; (C) SAMA R71464; (D) SJR12834 (PNGNM); (E) SAMA R71463, in ventral view; and (F) SAMA R71463, ventral surfaces of hind limb.
Figure 7 in Litoria aplini sp. nov., a New Species of Treefrog (Pelodryadidae) from Papua New Guinea
Figure 7. Habitat of Litoria aplini: (A) forest interior at the type locality; and (B) males were calling from trees over small pools (arrow) in the bed of a steep, narrow limestone gully.
Figure 2 in Rhyacophila siparantum sp. nov. (Trichoptera: Rhyacophilidae), a new species of the R. philopotamoides species group from the Republic of Kosovo with molecular and ecological notes
Figure 2. Picture of the type locality of Rhyacophila siparantum sp. nov.: Bogë Stream, Rugovë Mountain, Kosovo.
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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)
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.