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FIGURE 4 in A new species of the genus Paramesotriton (Caudata: Salamandridae) from Guangxi Zhuang Autonomous Region, southern China
FIGURE 4. Radiograph of P. ermizhaoi (CIB 88141, holotype: 3). Arrow points to the 13th trunk vertebrae.
FIGURE 2 in A new species of the genus Paramesotriton (Caudata: Salamandridae) from Guangxi Zhuang Autonomous Region, southern China
FIGURE 2. Maximum-likelihood tree based on ND2 sequences. Bayesian inference produced a consistent topology. Numbers on branches: boostrap support from ML analysis; bootstrap support from MP analysis; Bayesian posterior probability. Tree is rooted with Pachytriton brevipes and P. labiatus.
FIGURE 3. A in A new species of the genus Paramesotriton (Caudata: Salamandridae) from Guangxi Zhuang Autonomous Region, southern China
FIGURE 3. A: Dorsal view of living P. ermizhaoi (CIB 95998, paratype: Ƥ); B: Ventral view of living P. ermizhaoi (CIB 88141, holotype: 3). C: habitat of P. ermizhaoi in Mt. Dayao, Jinxiu Yao Autonomous County, Guangxi Zhuang Autonomous Region, China.
FIGURE 1 in A new species of the genus Paramesotriton (Caudata: Salamandridae) from Guangxi Zhuang Autonomous Region, southern China
FIGURE 1. Sample localities used in this study. Except for Paramesotriton fuzhongensis, all species were collected from their respective type localities. 1: P. chinensis; 2: P. caudopunctatus; 3: P. fuzhongensis; 4: P. hongkongensis; 5: P. guangxiensis; 6: P. deloustali; 7: P. laoensis. Shaded areas represent the two disjunct distributions of P. ch i n e n s i s. Asterisk denotes the type locality of P. e r m i z h a o i.
FIGURES 32–37. Ventral tube chaetotaxy. 32 in Six new species of Thalassaphorura (Collembola, Onychiuridae) from southern China, with a key to world species of the genus
FIGURES 32–37. Ventral tube chaetotaxy. 32, Thalassaphorura bapen sp. nov.; 33, Thalassaphorura grandis sp. nov.; 34, Thalassaphorura pomorskii sp. nov.; 35, Thalassaphorura reducta sp. nov.; 36, Thalassaphorura tiani sp. nov.; 37, Thalassaphorura tibiotarsalis sp. nov. Scales: 0.01 mm.
FIGURES 26–31 in Six new species of Thalassaphorura (Collembola, Onychiuridae) from southern China, with a key to world species of the genus
FIGURES 26–31. Tibiotarsus and claw. (A: leg I, B–F: leg III). 26, Thalassaphorura bapen sp. nov.; 27, Thalassaphorura grandis sp. nov.; 28, Thalassaphorura pomorskii sp. nov.; 29, Thalassaphorura reducta sp. nov.; 30, Thalassaphorura tiani sp. nov.; 31, Thalassaphorura tibiotarsalis sp. nov. Scales: 0.01 mm.
FIGURES 20–25 in Six new species of Thalassaphorura (Collembola, Onychiuridae) from southern China, with a key to world species of the genus
FIGURES 20–25. Tergites of Abd. V–VI. 20, Thalassaphorura bapen sp. nov.; 21, Thalassaphorura grandis sp. nov.; 22, Thalassaphorura pomorskii sp. nov.; 23, Thalassaphorura reducta sp. nov.; 24, Thalassaphorura tiani sp. nov.; 25, Thalassaphorura tibiotarsalis sp. nov. Scales: 0.01 mm.
FIGURES 14–19 in Six new species of Thalassaphorura (Collembola, Onychiuridae) from southern China, with a key to world species of the genus
FIGURES 14–19. Sensilla and pso on the dorsal side. 14, Thalassaphorura bapen sp. nov.; 15, Thalassaphorura grandis sp. nov.; 16, Thalassaphorura pomorskii n. sp.; 17, Thalassaphorura reducta n. sp.; 18, Thalassaphorura tiani n. sp.; 19, Thalassaphorura tibiotarsalis n. sp. Scales: 0.1 mm.
FIGURES 2–13 in Six new species of Thalassaphorura (Collembola, Onychiuridae) from southern China, with a key to world species of the genus
FIGURES 2–13. Thalassaphorura pomorskii sp. nov. 2, dorsal chaetotaxy; 3, antenna, showing ms and AIIIO; 4, labrum; 5, maxillary palp; 6, labial palp; 7, ventral side of head; 8, PAO and anterior cephalic pso; 9, ventral side of Th. III; 10, central part of abdominal sternum IV; 11, female genital plate; 12, anal valves; 13, ventral side of Abd. II–IV. Scales: 0.1 mm (2, 7 & 13), 0.01mm (3–6 & 8–12).
FIGURES 10–23 in A new pleurostomatid ciliate, Amphileptus salignus n. sp. (Protozoa, Ciliophora), from mangrove wetlands in southern China
FIGURES 10–23. Photomicrographs showing the morphology of Amphileptus salignus n. sp. from living cells (10–11, 16–22) and after protargol impregnation (12–15, 23). (10) Right view of a typical individual, arrows mark the extrusomes, arrowheads mark the contractile vacuoles. (11) Left view, arrowheads mark the longitudinal ridges. (12) To show the oral structure, arrowheads mark perioral kinety 1, arrow marks perioral kinety 2. (13) To show the nematodesmata (arrowheads). (14) Left view of anterior portion, arrows show the dorsal brush. (15) The distribution of macronuclear nodules (arrows) and long extrusomes (arrowheads). (16, 17) Two kinds of extrusomes, arrowheads show the shorter ones, arrows show the longer ones. (18) Cortical granules (arrowhead). (19) To show the contractile vacuoles, arrowhead marks the one positioned near the dorsal side. (20) To show dorsal cilia (arrowheads) and dorsal brush (arrow). (21) Anterior region of cell, arrowheads point to the shorter extrusomes. (22) Mid-region of cell, arrowheads indicate the shorter extrusomes. (23) To show the longer extrusomes. Scale bars in (10, 11)—100 µm, in (16, 17)—20 µm.
FIGURES 1–9. Amphileptus salignus n in A new pleurostomatid ciliate, Amphileptus salignus n. sp. (Protozoa, Ciliophora), from mangrove wetlands in southern China
FIGURES 1–9. Amphileptus salignus n. sp. from living cells (1–5) and after protargol impregnation (6–9). (1) Right view of a typical specimen with pointed posterior end. (2) Two kinds of extrusomes. (3) Cortical granules distributed between ciliary rows. (4) Left views, to show variations in body shape and in the number and distribution of contractile vacuoles. (5) Left view, note the dorsal brush. (6) Left-ventral view showing the detailed structure around the cytostome including the well-developed nematodesmata. (7–8) Infraciliature of right (7) and left (8) sides of the same specimen, arrows in Fig. 7 mark the suture. (9) Macronuclear nodules and distribution of the longer extrusomes, the shorter kind of extrusomes were not observed after protargol impregnation. CV: contractile vacuole, DB: dorsal brush, Ex: extrusome, Ma: macronuclear nodules, PK1–2: perioral kineties 1 and 2. Scale bars in (1, 4)—100 µm, in (2) – 10 µm, in (7, 8)—80 µm.
FIGURE 4. Bayesian posterior probability tree was reconstructed from 16S in A new species of Kaloula (Amphibia: Anura: Microhylidae) from southern Guangxi, China
FIGURE 4. Bayesian posterior probability tree was reconstructed from 16S ribosomal RNA mitochondrial gene sequences with Metaphrynella pollicaris, Metaphrynella sundana and Phrynella pulchra as outgroups. Maximum-likelihood tree produced near-identical topology. Two reliability indices are given on nodes: the Bayesian posterior probabilities/the maximum likelihood bootstrap percentages. Symbol (*) indicates nodes with good bootstrap supports for ML (>80%) inferences and Bayesian posterior probabilities (BPP> 95%), and symbol (-) represents that node values are less than 60%.
FIGURE 3 in A new species of Kaloula (Amphibia: Anura: Microhylidae) from southern Guangxi, China
FIGURE 3. (A) Ventral view of left hand, (B) ventral view of left foot, and (C) dorsal view of the third finger of left hand in K. nonggangensis sp. nov.. (D) dorsal view of the third finger of left hand in K. borealis (CIB63788). (E) dorsal view of the third finger of left hand in K. verrucosa (CIB64314). (F) dorsal view of the third finger of left hand in K. rugifera (CIB64116).
FIGURE 2 in A new species of Kaloula (Amphibia: Anura: Microhylidae) from southern Guangxi, China
FIGURE 2. (A) Dorsal, (B) dorsolateral, and (C) ventral view of the holotype (NHMG1106036) of K. nonggangensis sp. nov. in life. Photo: Yunming Mo. (D) K. borealis from Nanjing, Jiangsu Province, Photo.: Xia Tianmi. (E) K. rugifera from Chengdu, Sichuan Province, Photo.: Liang Fei. (F) K. verrucosa from Kunming, Yunnan Province, Photo.: Liang Fei. (G) Lateral view, and (H) dorsal view of K. nonggangensis sp. nov. tadpole. Photo.: Yunming Mo.
FIGURE 1 in A new species of Kaloula (Amphibia: Anura: Microhylidae) from southern Guangxi, China
FIGURE 1. (A) Sample information of Kaloula verrucosa group coming from China. Green represents K. borealis; gray is K. rugifera; blue is K. verrucosa; red is K. nonggangensis sp. nov.. Black circles represent sampling sites (details see Table 1). (B) Habitat of K. nonggangensis sp. nov..
FIGURES 11–12 in Pelagodes cancriformis, a new emerald moth species from the north of Thailand, Laos and southern China (Lepidoptera, Geometridae: Geometrinae)
FIGURES 11–12. Female genitalia of Pelagodes clarifimbria and Pelagodes cancriformis sp. nov. 11, P. clarifimbria, from Borneo, BMNH slide no. 10706; 12, P. cancriformis sp. nov., from Laos.
FIGURE 6 in A new species of the genus Oligodon Fitzinger, 1826 (Squamata: Colubridae) from northern Vietnam, southern China and central Laos
FIGURE 6. Distribution of Oligodon nagao sp. nov.: (1) Huu Lien Nature Reserve in Lang Son Province and (2) Ha Lang forest in Cao Bang Province, Vietnam; (3) Nonggang National Nature Reserve in Guangxi Autonomous Region, China; and (4) Ban Nathan in Khammouane Province, Laos.
FIGURE 3 in A new species of the genus Oligodon Fitzinger, 1826 (Squamata: Colubridae) from northern Vietnam, southern China and central Laos
FIGURE 3. Oligodon nagao sp. nov., in life (IEBR A.2012.6, adult male, Vietnam). Photograph by Truong Quang Nguyen.
FIGURES 6–10. Male genitalia and segment 8 in Pelagodes cancriformis, a new emerald moth species from the north of Thailand, Laos and southern China (Lepidoptera, Geometridae: Geometrinae)
FIGURES 6–10. Male genitalia and segment 8 of Pelagodes clarifimbria Prout and P. cancriformis, sp. nov. 6–8, P. clarifimbria Prout. 6, male genitatalia with left valva; 7, sternite A8, from Borneo, 8, sternite A8, from Thailand; 9–10, male genitalia, aedeagus and segment 8 of P. cancriformis, sp. nov., paratype, from Laos. 9, male genitalia and aedeagus; 10, segment 8.
FIGURE 2 in A new species of the genus Oligodon Fitzinger, 1826 (Squamata: Colubridae) from northern Vietnam, southern China and central Laos
FIGURE 2. Holotype of Oligodon nagao sp. nov. (VNMN A.2012.1, adult male), views of the head: A. Dorsal side. B. Ventral side. C. Left side. D. Right side. Photographs by Truong Quang Nguyen.
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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.