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Fig. 5 in Fig. 4. A in Positive association between PTN polymorphisms and schizophrenia in Northeast Chinese Han population.
Fig. 5. Neocaridina denticulata (De Haan, 1844). (A) 1st pereiopod; (B) 2nd pereiopod; (C) 3rd pereiopod; (D) the same, dactylus; (E) 5th pereiopod; (F) the same, dactylus. Scale bars: A, B, C, E = 0.5 mm; D, F = 0.2 mm (male, cl 6.5 mm, ZRC 2023.0211, Kaya R., Ashida River system, Fukuyama City, Hiroshima Prefecture, N34°36'43", E133°15'33'', coll. H. Yoshigou, 17 Oct. 2015).
Fig. 13. Neocaridina aff. denticulata Kubo, 1938 in Fig. 4. A in Positive association between PTN polymorphisms and schizophrenia in Northeast Chinese Han population.
Fig. 13. Neocaridina aff. denticulata Kubo, 1938. (A) cephalothorax and cephalic appendages, lateral view; (B) telson; (C) distal portion of telson; (D) preanal carina; (E) scaphocerite; (F) 1st pereiopod; (G) 2nd pereiopod; (H) 3rd pereiopod; (I) the same, dactylus; (J) 5th pereiopod; (K) the same, dactylus; (L) male 1st pleopod; (M) male 2nd pleopod; (N) uropodal diaeresis. Scale bars: A, E = 2 mm; B, D, F–H, J = 0.5 mm; C, I, K, L, M, N = 0.2 mm (male, cl 5.5 mm, ZRC 2023.0222, Oura upstream way (on Oura Dam), Izuharamachi-koura, Tsushima City, Nagasaki Prefecture, N34°14'1.9'', E129°17'45.7'', coll. H. Yoshigou, 15 Dec. 2016).
Fig. 10 in Fig. 4. A in Positive association between PTN polymorphisms and schizophrenia in Northeast Chinese Han population.
Fig. 10. Neocaridina aff. palmata. (A) cephalothorax and cephalic appendages, lateral view; (B) 1st pereiopod; (C) 2nd pereiopod; (D) 3rd pereiopod; (E) the same, dactylus; (F) 5th pereiopod; (G) the same, dactylus; (H) male 1st pleopod; (I) male 2nd pleopod. Scale bars: A–D, F = 0.5 mm; E, G, H, I = 0.2 mm (male, cl 4.2 mm, NCHUZOOL 14940, Sugo R., Yumesaki River system, Himeji City, Hyogo Prefecture, N34°56'31.9", E134°38'19.0'', coll. N. Niwa, 14 Aug. 2015).
Fig. 5 in Fig. 4 in Positive association between PTN polymorphisms and schizophrenia in Northeast Chinese Han population.
Fig. 5. Parapleurocrypta duofratres sp. nov., male allotype and paratype. A, habitus, dorsal view (MZUSP #44177); B, habitus, ventral view (MZUSP #44177); C, left antennule and antenna (DZ/UFRGS #6986); D, right pereopod 1 (DZ/UFRGS #6986); E, left pereopod 7 (DZ/UFRGS #6986). Scale bars: A = 0.25 mm; B = 0.3 mm; C–E = 0.05 mm.
Fig. 8 in Fig. 4. A in Positive association between PTN polymorphisms and schizophrenia in Northeast Chinese Han population.
Fig. 8. Neocaridina palmata (Shen, 1948). (A) cephalothorax and cephalic appendages, lateral view; (B) telson; (C) distal portion of telson; (D) scaphocerite; (E) male 1st pleopod; (F) male 2nd pleopod; (G) uropodal diaeresis. Scale bars: A = 2 mm; B, D, E, F = 0.5 mm; C, G = 0.2 mm (A, D–G, male, cl 4.6 mm, NCHUZOOL 14940, Sugo R., Yumesaki River system, Himeji City, Hyogo Prefecture, N34°56'31.9", E134°38'19.0'', coll. N. Niwa, 14 Aug. 2015; B, C, male, cl 4.3 mm, ZRC 2023.0215, Sugo R., Yumesaki River system, Himeji City, Hyogo Prefecture, N34°56'31.9", E134°38'19.0'', coll. N. Niwa, 14 Aug. 2015).
Fig. 7 in Fig. 1 in Positive association between PTN polymorphisms and schizophrenia in Northeast Chinese Han population.
Fig. 7. Comparison of growth curves obtained between length frequency analysis and age-at-size data.
Fig. 3 in Positive association between PTN polymorphisms and schizophrenia in Northeast Chinese Han population.
Fig. 3. Synagrops atrumoris sp. nov., A–D, paratypes, fresh, A, ASIZP0081728, 159.0 mm SL; B, ASIZP0081728, 130.3 mm SL; C, ASIZP0081728, 176.8 mm SL; D, ASIZP0081728, 137.6 mm SL. Synagrops japonicus (Döderlein, 1883), E–F, non-types, fresh, E, ASIZP0081733, 168.6 mm SL; F, ASIZP0081733, 156.5 mm SL. Synagrops bellus (Goode and Bean, 1896) G–H, non-types, preserved, G, MCZ49930 172 mm SL; H, MCZ49930 213 mm SL. Scale bar = 10 mm.
Fig. 4. A multinomial regression fit using natural splines with 3 in Fig. 1 in Positive association between PTN polymorphisms and schizophrenia in Northeast Chinese Han population.
Fig. 4. A multinomial regression fit using natural splines with 3 degrees of freedom. 95% confidence bands are constructed by bootstrapping. Records from years with asterisks (*) are excluded from the model. The dotted white lines correspond to a model with no dependence on year.
Fig. 2 in Positive association between PTN polymorphisms and schizophrenia in Northeast Chinese Han population.
Fig. 2. Synagrops atrumoris sp. nov. A, ASIZP0081729, holotype, 173.60 mm SL, fresh and B, radiograph. Scale bar = 10 mm.
Fig. 1 in Fig. 4 in Positive association between PTN polymorphisms and schizophrenia in Northeast Chinese Han population.
Fig. 1. Map of Fernando de Noronha archipelago, showing the six SCUBA diving locations where specimens of Synalpheus sp. parasitized by Parapleurocrypta duofratres sp. nov. were collected.
Fig. 8 in Positive association between PTN polymorphisms and schizophrenia in Northeast Chinese Han population.
Fig. 8. Otoliths (right sagitta) of Synagrops from Taiwan. A–E, Synagrops atrumoris sp. nov., paratypes; A, CHLOL24862, 178.76 mm SL; B, CHLOL24863, 136.34.11 mm SL, C, CHLOL24864, 186.12 mm SL, D, CHLOL24865, 119.29 mm SL, E, holotype, CHLOL24861, 173.60 mm SL, F–G, Synagrops japonicus (Döderlein, 1883), non-types, F, CHLOL24866, 152.54 mm SL, G, CHLOL24867, 114.35 mm SL, 1, ventral views, 2, dorsal views. Scale bar = 1 mm.
Fig. 7 in Fig. 4. A in Positive association between PTN polymorphisms and schizophrenia in Northeast Chinese Han population.
Fig. 7. Neocaridina davidi (Bouvier, 1904). (A) 1st pereiopod; (B) 2nd pereiopod; (C) 3rd pereiopod; (D) the same, dactylus; (E) 5th pereiopod; (F) the same, dactylus. Scale bars: A, B, C, E = 0.5 mm; D, F = 0.2 mm (male, cl 5.6 mm, ZRC 2023.0214, Sugo R., Yumesaki River system, Himeji City, Hyogo Prefecture, N34°56'31.9", E134°38'19.0'', coll. N. Niwa, 14 Aug. 2015).
Fig. 5 in Positive association between PTN polymorphisms and schizophrenia in Northeast Chinese Han population.
Fig. 5. Neurocrania of A–B, Synagrops atrumoris sp. nov., non-type, CHLP2000314, 178.9 mm SL, and C–D, Synagrops japonicus (Döderlein, 1883), non-type, CHLP2000309, 184.1 mm SL showing ventral (A and C), and lateral views (B and D) emphasizing the prootic, exoccipital, basioccipital, 1st vertebra, and 2nd vertebra. The actual images are presented in figure S1. Scale bar = 10 mm.
Fig. 3. Acryptolaria minuta Watson, 2003 in Fig. 4 in Positive association between PTN polymorphisms and schizophrenia in Northeast Chinese Han population.
Fig. 3. Acryptolaria minuta Watson, 2003: A, hydrothecae. Acryptolaria operculata Stepanjants, 1979; B, distal part of hydrotheca. Acryptolaria seamountensis sp. nov.: C−F, hydrothecae and hydrothecal disposition; G, putative macrobasic mastigophore (arrow). Acryptolaria sp.: H, hydrothecae and hydrothecal disposition. Scale bars: A−F, H = 200 μm; G = 10 μm.
Fig. 9 in Positive association between PTN polymorphisms and schizophrenia in Northeast Chinese Han population.
Fig. 9. Neighbor-joining tree based on the cytochrome oxidase subunit I (COI) gene showing the relationships of Synagrops atrumoris sp. nov., Synagrops japonicus (Döderlein, 1883), and Synagrops bellus (Goode and Bean, 1896). Haplotype names (AH, S. atrumoris sp. nov., JH, S. japonicus, BH, S. bellus, and AJH, haplotype of S. atrumoris sp. nov. and S. japonicus) are presented in table 2. Support values> 70 are presented.
Fig. 2 in Fig. 4 in Positive association between PTN polymorphisms and schizophrenia in Northeast Chinese Han population.
Fig. 2. Types of hydrothecae found in the collection studied and their main morphological characters. Abbreviations: aad, adnate adcauline wall; ab, abcauline wall; ad, adcauline wall; aint, ahydrothecate intermediate internode; c, cusp; d, diaphragm; des, desmocytes; fad, free adcauline wall; ht, hydrotheca; int, internode; lnt, lateral nematotheca; mnt, medial infrahydrothecal nematotheca; n, node; nt, nematotheca; ped, pedicel; pr, perisarc ridge; r, rim; ren, renovation; stn, stolon.
Fig. 4 in Fig. 1 in Positive association between PTN polymorphisms and schizophrenia in Northeast Chinese Han population.
Fig. 4. Von Bertalanffy growth model of U. duvaucelii as derived through ELEFAN I (L = 29.58 cm and K = 0.82 year-1).
Fig. 3 in Fig. 1 in Positive association between PTN polymorphisms and schizophrenia in Northeast Chinese Han population.
Fig. 3. Ground statolith of U. duvaucelii (A) and an enlarged view depicted by a rectangle revealing growth rings in the lateral dome area (B).
Fig. 1 in Fig. 1 in Positive association between PTN polymorphisms and schizophrenia in Northeast Chinese Han population.
Fig. 1. Location of trawl operations encircled in blue around Baliguian Island, Concepcion, Iloilo, Philippines.
Fig. 2 in Fig. 1 in Positive association between PTN polymorphisms and schizophrenia in Northeast Chinese Han population.
Fig. 2. Diagnostic features of U. duvaucelii based on morphology described in the FAO identification guide for cephalopods (Carpenter and Niem 1998; Jereb and Roper 2010). The species is identified by its short and stout mantle with a rhombic and shortfin shape (A), short and sharp teeth on its tentacular club sucker ring (B), and small, broad, and plate-squared tip teeth of relatively equal size in arm III (C).
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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.