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The iron isotopic composition and the elemental ratios (Cd/Ti) in the size-fractionated aerosols collected over the East China Sea
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Supplementary material 1 from: Wu H, Qu M, Lin H, Tang W, Ding S (2020) Epinephelus tankahkeei, a new species of grouper (Teleostei, Perciformes, Epinephelidae) from the South China Sea. ZooKeys 933: 125-137. https://doi.org/10.3897/zookeys.933.46406
Table S1. Samples information
Figure 4 from: Wu H, Qu M, Lin H, Tang W, Ding S (2020) Epinephelus tankahkeei, a new species of grouper (Teleostei, Perciformes, Epinephelidae) from the South China Sea. ZooKeys 933: 125-137. https://doi.org/10.3897/zookeys.933.46406
Figure 4 A map of the collection sites of Epinephelus tankahkeei (blue squares) and E. chlorostigma (red circles) examined in this study. The blue star represents the collection site of the E. tankahkeei holotype (ZMUA-eptan06), and the red star represents the type locality of E. chlorostigma.
Figure 3 from: Wu H, Qu M, Lin H, Tang W, Ding S (2020) Epinephelus tankahkeei, a new species of grouper (Teleostei, Perciformes, Epinephelidae) from the South China Sea. ZooKeys 933: 125-137. https://doi.org/10.3897/zookeys.933.46406
Figure 3 Bayesian phylogenetic tree of Epinephelus tankahkeei and closely related fish species. Numbers above nodes are Bayesian posterior probability values (left) and ML bootstrap values above 50 (right).
Figure 1 from: Wu H, Qu M, Lin H, Tang W, Ding S (2020) Epinephelus tankahkeei, a new species of grouper (Teleostei, Perciformes, Epinephelidae) from the South China Sea. ZooKeys 933: 125-137. https://doi.org/10.3897/zookeys.933.46406
Figure 1 Epinephelus tankahkeeia holotype, ZMUA-eptan06, 244.5 mm SL, Xisha Islands from the South China Sea b preserved holotype c paratype, ZMUA-eptan02, 233.2 mm SL, purchased at the Bashi market in Xiamen, Fujian, China, 22 August 2016.
Figure 4 in Two new species of Lauratonema (Nematoda: Lauratonematidae) from the intertidal zone of the East China Sea
Figure 4. Lauratonema dongshanense sp. nov. (A) lateral view of female anterior part; (B) lateral view of female tail; (C) lateral view of spicule; (D) lateral view of male tail and spicule; (E) full view of female, showing reproductive system; (F) lateral view of male anterior part. Scale bar: 25 µm.
Figure 2 in Two new free-living nematode species of Setosabatieria (Comesomatidea) from the East China Sea and the Chukchi Sea
Figure 2. Setosabatieria longiapophysis sp. nov. (A) lateral view of male head end, showing amphidial fovea and cephalic setae; (B) lateral view of female head end; (C) lateral view of female vulva region; (D) lateral view of male head end, showing cervical setae; (E) lateral view of male spicule, gubernaculum and precloacal supplements. Scale bars: A–C = 10 µm, D, E = 50 µm.
Figure 3 in Two new nematodes, Pseudelzalia longiseta gen. nov., sp. nov. and Paramonohystera sinica sp. nov. (Monhysterida: Xyalidae), from sediment in the East China Sea
Figure 3. Pseudelzalia longiseta gen. nov., sp. nov. (A–D) and Paramonohystera sinica sp. nov. (E, F). (A, E) Anterior portion of the holotype in lateral view. (B, F) Cloacal region of the holotype in lateral view, showing the elongate spicules. (C, D) Tail region of the holotype in lateral view, showing the long caudal setae, the conico-cylindrical tail and the pointed tail-tip devoid of terminal setae. Scale bars: 15 μm.
Figure 2 in Two new nematodes, Pseudelzalia longiseta gen. nov., sp. nov. and Paramonohystera sinica sp. nov. (Monhysterida: Xyalidae), from sediment in the East China Sea
Figure 2. Paramonohystera sinica sp. nov. (A) Overall view of a female showing the ovary, eggs and vulva. (B) Lateral view of the anterior portion of the holotype (male). (C, F) Anterior and posterior detail of the female depicted in A. (D, E) Lateral view of the holotype showing the spicules, gubernaculum and tail region. Scale bars: A, 200 μm; B–F, 30 μm.
Figure 1 in Two new nematodes, Pseudelzalia longiseta gen. nov., sp. nov. and Paramonohystera sinica sp. nov. (Monhysterida: Xyalidae), from sediment in the East China Sea
Figure 1. Pseudelzalia longiseta gen. nov., sp. nov. (male holotype, A–D) and Elzalia floresi (E, type species of Elzalia, redrawn from Gerlach 1957). (A, E) Lateral view of tail region. Note the terminal setae are lacking in the genus Pseudelzalia (A), while in Elzalia there are invariably three terminal setae (E). (B) Lateral view of anterior region showing the cylindrical and cuticularized buccal cavity and the papilliform labial sensilla. (C) Lateral view of cloacal region, showing the elongate spicules and adjacent gubernaculum. (D) Overall view, showing the testis. Scale bars: A–C, E, 20 μm; D, 100 μm.
Figure 1 in Description of a new genus and species of the subfamily Arcoscalpellinae Zevina, 1978 (Cirripedia: Thoracica: Scalpellidae) from deep waters of the South China Sea
Figure 1. Sinoscalpellum sinensis sp. nov. (A) Side view of body; (B) dorsal view of carinal latus; (C) ventral view of rostrum, inframedian latus and rostral latus; (D) soft body; (E) labrum and palp; (F) mandible; (G, H) maxilla I; (I) maxilla II; (L) caudal appendage and basal part of cirrus VI; (J) intermediate segment of cirrus IV; (K) intermediate segment of cirrus VI.
Figure 1 in Report on the Raphitomidae Bellardi, 1875 (Mollusca: Gastropoda: Conoidea) from the China Seas
Figure 1. Species of familyRaphitomidae. (A) Asperdaphne paramoretonica sp. nov. (Holotype SCS, CN L72B-39); (B) Daphnella inangulata sp. nov. (Holotype locality, SCS); (C) Daphnella interrupta Pease, 1860 (SCS, CN 63M-253); (D) Daphnella cf. suluensis Schepman, 1913 (ESC, CN V520A); (E, F) Eucyclotoma cymatodes (Hervier 1897a) (Nansha Islands, CN 93NS8-3; Xisha Islands, CN 58M-1542); (G) Eucyclotoma tricarinata (Kiener 1840) (Xisha Islands, CN 58M-1642); (H) Eucyclotoma sp. (Xisha Islands, CN 58 M–1542–1).
Figure 2 in Report on the Raphitomidae Bellardi, 1875 (Mollusca: Gastropoda: Conoidea) from the China Seas
Figure 2. (A) Asperdaphne perissa (Hedley 1909) (Bohai Gulf, CN 57–033); (B) Daphnella mitrellaformis (Nomura 1940) (ECS, CN V562B-15); (C) Eucyclotoma lactea (Reeve 1843) (Xisha Islands, CN 58 M-1514); (D) Gymnobela ioessa Sysoev, 1997 (SCS, CN V568B-3); (E) *Kuroshiodaphne supracancellata (Schepman 1913) (left: SCS, CN 171; right: holotype, provided by Dr Kilburn R. N., personal communication); (F) Tritonoturris oxyclathrus (Martens 1880) (SCS, CN L67B-8); (G) Tritonoturris scalaris (Hinds 1843) (SCS, RN MBM081112); (H, I) Tritonoturris macandrewi (E. A. Smith 1882) (SCS, CN Q283B-22 and X200b–63).
Figure 4 in Report on the Raphitomidae Bellardi, 1875 (Mollusca: Gastropoda: Conoidea) from the China Seas
Figure 4. (A) Pseudodaphnella granicostata (Reeve, 1846) (Xisha Islands, CN 75M-356-1); (B) Pseudodaphnella philippinensis (Reeve 1843) (Xisha Islands, CN 58M-1542-1); (C) Veprecula sp. (SCS, CN K146A–15).
Figure 1 from: Fatihah-Syafiq M, Badli-Sham BH, Fahmi-Ahmad M, Aqmal-Naser M, Rizal SA, Azmi MSA, Grismer LL, Ahmad AB (2020) Checklist of herpetofauna in the severely degraded ecosystem of Bidong Island, Peninsular Malaysia, South China Sea. ZooKeys 985: 143-162. https://doi.org/10.3897/zookeys.985.54737
Figure 1 Map of Peninsular Malaysia (left) showing the location of Bidong Island, off the Terengganu coast, indicated by the red square. Map of Bidong Island (right) with the study locations indicated by red circles.
Figure 7 from: Wang W, Sui J, Li X, Hutchings P, Nogueira JMM (2020) A new species of the genus Amphicteis Grube, 1850 (Annelida, Ampharetidae) from the Yellow Sea, China, together with a redescription of A. dalmatica Hutchings & Rainer, 1979. ZooKeys 988: 1-15. https://doi.org/10.3897/zookeys.988.49934
Figure 7 Amphicteis dalmatica (paratype, AM W.8230) A, B paleae C detail of notochaetae, segment 7 D chaetae from longest row of notochaetae, segment 14 E notochaetae, segment 14 F uncini, segment 14, arrow points to subrostal process G, H abdominal uncini.
Figure 4 from: Wang W, Sui J, Li X, Hutchings P, Nogueira JMM (2020) A new species of the genus Amphicteis Grube, 1850 (Annelida, Ampharetidae) from the Yellow Sea, China, together with a redescription of A. dalmatica Hutchings & Rainer, 1979. ZooKeys 988: 1-15. https://doi.org/10.3897/zookeys.988.49934
Figure 4 Amphicteis hwanghaiensis sp. nov. (paratype) A anterior end, dorsal view B anterior end C thoracic parapodia. Numbers refer to segments; bII–V = branchiae, segments II–V, respectively; P = prostomium; * = middle lobe of prostomium; Pe = peristomium.
Figure 3 from: Wang W, Sui J, Li X, Hutchings P, Nogueira JMM (2020) A new species of the genus Amphicteis Grube, 1850 (Annelida, Ampharetidae) from the Yellow Sea, China, together with a redescription of A. dalmatica Hutchings & Rainer, 1979. ZooKeys 988: 1-15. https://doi.org/10.3897/zookeys.988.49934
Figure 3 Amphicteis hwanghaiensis sp. nov. (holotype) A limbate capillary notochaeta B notochaetae C paleae D thoracic uncini, arrows point to subrostal process E abdominal uncini, arrows point to subrostal process.
Figure 6 from: Wang W, Sui J, Li X, Hutchings P, Nogueira JMM (2020) A new species of the genus Amphicteis Grube, 1850 (Annelida, Ampharetidae) from the Yellow Sea, China, together with a redescription of A. dalmatica Hutchings & Rainer, 1979. ZooKeys 988: 1-15. https://doi.org/10.3897/zookeys.988.49934
Figure 6 Amphicteis dalmatica (paratype, AM W.8230) A anterior body, dorsal view B anterior body, left lateral view C closer view of the anterior body, dorsal view D notopodium, segment 6 E peristomium and anteriormost segments, ventrolateral view F anteriormost segments, lateral view, arrows point to notopodial cirri G notochaetae, segment 6 H transition between thorax and abdomen, small arrows point to dorsal neuropodial cirri, large arrows point to notopodial cirri I abdominal neuropodium J abdominal notopodial cirrus K uncini, segment 8 L abdominal uncini. Numbers refer to segments; bII–V = branchiae, segments II–V, respectively; bt = buccal tentacles; ll = lower lip; P = prostomium; * = middle lobe of prostomium; Pe = peristomium; ul = upper lip.
Figure 2 from: Wang W, Sui J, Li X, Hutchings P, Nogueira JMM (2020) A new species of the genus Amphicteis Grube, 1850 (Annelida, Ampharetidae) from the Yellow Sea, China, together with a redescription of A. dalmatica Hutchings & Rainer, 1979. ZooKeys 988: 1-15. https://doi.org/10.3897/zookeys.988.49934
Figure 2 Amphicteis hwanghaiensis sp. nov. (holotype) A prostomium, dorsal view B position of branchiae, dorsal view C paleae D thoracic parapodium E limbate capillary notochaeta F abdominal parapodium G thoracic uncinus H abdominal uncinus. Scale bars: 500 µm (A, B, D, F); 250 µm (C); 100 µm (E); 10 µm (G, H).
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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.