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FIGURE 3 in Description of four new species of Otacilia Thorell, 1897 (Araneae: Phrurolithidae) from southern China
FIGURE 3. Copulatory organs of Otacilia pingwu sp. nov.: A. Male left palp, prolateral view; B. same, retrolateral view; C. Same, ventral view; D. same, dorsal view; E. epigyne, ventral view; F. Same, dorsal view.
FIGURE 5 in Description of four new species of Otacilia Thorell, 1897 (Araneae: Phrurolithidae) from southern China
FIGURE 5. Copulatory organs of Otacilia pugnus sp. nov.: A. Male left palp, prolateral view; B. Same, retrolateral view; C. Same, ventral view; D. Same, dorsal view; E. Epigyne, ventral view; F. Same, dorsal view. Abbreviations: E—embolus; C— conductor; FA—femoral apophysis; PTA—prolateral tibial apophysis; RTA—retrolateral tibial apophysis; SD—sperm duct; TA—tegular apophysis; B—bursa; CO—copulatory opening; CD—copulatory duct; CT—connecting tube; FD—fertilization duct; MS—median septum; S—spermathecae.
FIGURE 11 in Description of four new species of Otacilia Thorell, 1897 (Araneae: Phrurolithidae) from southern China
FIGURE 11. Male left palp of Otacilia distorta sp. nov.: A. Prolateral view; B. Ventral view; C. Retrolateral view; D. Dorsal view. Abbreviations: E—embolus; C—conductor; DTA—dorsal tibial apophysis; FA—femoral apophysis; PA—patella apophysis; PTA—prolateral tibial apophysis; RTA—retrolateral tibial apophysis; SD—sperm duct; TA—tegular apophysis.
FIGURE 5 in Two new species of Nomuraius Hlaváč (Coleoptera: Staphylinidae: Pselaphinae) from southern China
FIGURE 5. Distribution of Nomuraius species (1‒5), and Dayao pengzhongi (6) (squares: known species; circles: new species), and morphological disparity of head and pronotum in the male. 1. N. sinicus. 2. N. vietnamicus. 3. N. piaoacus. 4. N. excavatus sp. n. 5. N. nanlingensis sp. n. 6. D. pengzhongi.
FIGURE 4 in Two new species of Nomuraius Hlaváč (Coleoptera: Staphylinidae: Pselaphinae) from southern China
FIGURE 4. Diagnostic features of Nomuraius nanlingensis sp. n. male. A. Antennal club. B. Pronotum, in dorsolateral view. C. Meso- and metaventrite, in ventrolateral view, showing metaventral processes. D. Profemur. E. Protibia. F. Protarsomeres. G. Mesotrochanter and mesofemur. H. Metatrochanter and metafemur. I. Apex of metatibia. J. Sternite IX. K–M. Aedeagus, in dorsal (K), lateral (L), and ventral (M) view. Scale bars: 0.3 mm in A‒E, G, H; 0.2 mm in K‒M; 0.1 mm in F, I; 0.05 mm in J.
FIGURE 3 in Two new species of Nomuraius Hlaváč (Coleoptera: Staphylinidae: Pselaphinae) from southern China
FIGURE 3. Nomuraius nanlingensis sp. n. male. A. Dorsal habitus. B. Forebody. Scale bars: 1 mm in A; 0.3 mm in B.
FIGURE 1 in Two new species of Nomuraius Hlaváč (Coleoptera: Staphylinidae: Pselaphinae) from southern China
FIGURE 1. Nomuraius excavatus sp. n. male. A. Dorsal habitus. B. Forebody. Scale bars: 1 mm in A; 0.3 mm in B.
FIGURE 2 in Two new species of Nomuraius Hlaváč (Coleoptera: Staphylinidae: Pselaphinae) from southern China
FIGURE 2. Diagnostic features of Nomuraius excavatus sp. n. male. A. Antennal club. B. Pronotum, in dorsolateral view. C. Meso- and metaventrite, in ventrolateral view, showing metaventral processes. D. Profemur. E. Protibia. F. Protarsomeres. G. Mesotrochanter and mesofemur. H. Metatrochanter and metafemur. I. Apex of metatibia. J. Sternite IX. K–M. Aedeagus, in dorsal (K), lateral (L), and ventral (M) view. Scale bars: 0.3 mm in A‒E, G, H; 0.2 mm in K‒M; 0.1 mm in F, I; 0.05 mm in J.
FIGURE 1 in The tenth member of stout newt (Amphibia: Salamandridae: Pachytriton): Description of a new species from Guangdong, southern China
FIGURE 1. Histogram shoWing the species count of amphibians from 2003 to 2017 (data from AmphibiaWeb 2017).
FIGURE 4 in The tenth member of stout newt (Amphibia: Salamandridae: Pachytriton): Description of a new species from Guangdong, southern China
FIGURE 4. Dorsal vieW (A), lateral vieW (B) and ventral vieW (C) of the holotype (SWFUYZY0301) of Pachytriton airobranchiatus sp. nov. in life. Red arroW indicates the prominent epibranchial bone.
FIGURE 3 in The tenth member of stout newt (Amphibia: Salamandridae: Pachytriton): Description of a new species from Guangdong, southern China
FIGURE 3. Bayesian phylogram of Pachytriton inferred from the concatenated mitochondrial data set gene (nd2 and cytb). Asterisk denotes high support by Bayesian posterior probabilities (BPP> 95%), and bootstrap support values (BS> 70%). Long dash represents loW support values.
FIGURE 2 in The tenth member of stout newt (Amphibia: Salamandridae: Pachytriton): Description of a new species from Guangdong, southern China
FIGURE 2. Type locality (Mt. Lianhua, red dot) of Pachytriton airobranchiatus sp. nov. in southern China.
FIGURE 6 in The tenth member of stout newt (Amphibia: Salamandridae: Pachytriton): Description of a new species from Guangdong, southern China
FIGURE 6. Dorsal (A) vieW and ventral (B) vieW of the holotype (SWFUYZY0301) of Pachytriton airobranchiatus sp. nov. in preservative.
FIGURE 5 in The tenth member of stout newt (Amphibia: Salamandridae: Pachytriton): Description of a new species from Guangdong, southern China
FIGURE 5. Dorsal (A) and ventral (B) vieWs of the hand, and dorsal (C) and ventral (D) vieWs of the foot of the holotype (SWFUYZY0301) of Pachytriton airobranchiatus sp. nov. in life.
FIGURE 8 in The tenth member of stout newt (Amphibia: Salamandridae: Pachytriton): Description of a new species from Guangdong, southern China
FIGURE 8. Habitat at the type locality of Pachytriton airobranchiatus sp. nov. in Mt. Lianhua, Huidong, Guangdong, China.
FIGURE 7 in The tenth member of stout newt (Amphibia: Salamandridae: Pachytriton): Description of a new species from Guangdong, southern China
FIGURE 7. Dorsal (A) vieW and ventral (B) vieW of paratype SWFUYZY0215 of Pachytriton airobranchiatus sp. nov. in life. Dorsal (C) vieW and ventral (D) vieW of paratype SWFUYZY0218 of P. airobranchiatus sp. nov. in life. Red arroW indicates the prominent epibranchial bone.
FIGURES 37–39. Plesiocleidochasma clandestina n in Sixteen new generic records of Korean Bryozoa from southern coastal waters and Jeju Island, East China Sea: evidence of tropical affinities
FIGURES 37–39. Plesiocleidochasma clandestina n. sp., holotype, Munseom Island. 37, part of colony showing ovicellate (asterisks) and non-ovicellate orifices; 38, two-, three- and four-spined orifices at colony margin; 39, ovicellate orifice with frontal ooecial foramen. Scale bars: 37, 500 µm; 38, 200 µm; 39, 100 µm.
FIGURES 33, 34. Stephanollona boreopacifica n in Sixteen new generic records of Korean Bryozoa from southern coastal waters and Jeju Island, East China Sea: evidence of tropical affinities
FIGURES 33, 34. Stephanollona boreopacifica n. sp., holotype, Munseom Island. 33, ovicellate orifice; 34, five-spined orifice. FIGURES 35, 36. Pleuromucrum granulatum (Liu in Liu, Yin & Ma, 2001), Munseom Island. 35, zooids, mostly ovicellate, near colony margin; 36, ooecia and avicularia. Scale bars: 33, 36, 100 µm; 34, 50 µm; 35, 500 µm.
FIGURES 23–25. Jodoella koreensis n in Sixteen new generic records of Korean Bryozoa from southern coastal waters and Jeju Island, East China Sea: evidence of tropical affinities
FIGURES 23–25. Jodoella koreensis n. gen. et sp., holotype, Jodo Island. 23, reproductive part of colony showing clustered large ooecia, dimorphic orifices and a rare avicularium; 24, autozooidal orifice; 25, a rare avicularium. FIGURES 26, 27. Calloporina hayamiae Arakawa, 1995, Hajo Island. 26, zooids, several ovicellate, near colony margin, with various stages of ooecial calcification; 27, six-spined and five-spined autozooidal orifices. Scale bars: 23, 26, 300 µm; 24, 25, 50 µm; 27, 200 µm.
FIGURES 14, 15. Schizosmittina mabik n in Sixteen new generic records of Korean Bryozoa from southern coastal waters and Jeju Island, East China Sea: evidence of tropical affinities
FIGURES 14, 15. Schizosmittina mabik n. sp., holotype, Munseom Island. 14, autozooids at colony margin; 15, ovicellate zooids. FIGURES 16, 17. Stephanotheca fenestricella Dick & Grischenko, 2017, Munseom Island. 16, ooecium, ovicellate and autozooidal orifices, and suboral avicularia; 17, autozooidal orifice, condyle and suboral avicularium. Scale bars: 14, 15, 300 µm; 16, 100 µm; 17, 50 µm.
ScienceDex guides
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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.