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2,640 results for “Schizophrenia”
Fig. 9 in Fig. 4. A in Positive association between PTN polymorphisms and schizophrenia in Northeast Chinese Han population.
Fig. 9. Neocaridina palmata (Shen, 1948). (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 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).
Fig. 12. Neocaridina koreana Kubo, 1938 in Fig. 4. A in Positive association between PTN polymorphisms and schizophrenia in Northeast Chinese Han population.
Fig. 12. Neocaridina koreana Kubo, 1938. (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, I) male 1st pleopod. Scale bars: A = 2 mm; B–D, F = 0.5 mm; E, G–I = 0.2 mm (male, cl 4.1 mm, NCHUZOOL 14964, Basen-gawa R., Go-no-gawa system, Miyoshi City, Hiroshima Prefecture, N34°46'51", E132°54'39", coll. H. Yoshigou, 28 Feb. 2016).
Fig. 6 in Fig. 4. A in Positive association between PTN polymorphisms and schizophrenia in Northeast Chinese Han population.
Fig. 6. Neocaridina davidi (Bouvier, 1904). (A) cephalothorax and cephalic appendages, lateral view; (B) telson; (C) distal portion of telson; (D) preanal carina; (E) scaphocerite; (F, G) male 1st pleopod; (H, I) male 2nd pleopod; (J) uropodal diaeresis. Scale bars: A = 2 mm; B, D, F–J = 0.5 mm; C = 0.2 mm; E = 1 mm (A–H, J, male, cl 5.6 mm; I, male, cl 5.3 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. 4 in Fig. 4. A in Positive association between PTN polymorphisms and schizophrenia in Northeast Chinese Han population.
Fig. 4. Neocaridina denticulata (De Haan, 1844). (A) cephalothorax and cephalic appendages, lateral view; (B) telson; (C) distal portion of telson; (D) preanal carina; (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 6.5 mm, B, C, male, cl 5.2 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. 3 in Fig. 4. A in Positive association between PTN polymorphisms and schizophrenia in Northeast Chinese Han population.
Fig. 3. Bayesian inference (BI) tree for species of the genus Neocaridina from the East Asia Arc and the related taxa from East Asia, based on the cytochrome c oxidase subunit I (COI) gene. Probability values at the nodes represent support values for BI and maximum likelihood (ML). Only support values> 50% are shown on the nodes. For haplotype names, see table 1. *, sequences downloaded from GenBank.
Fig. 2. A in Fig. 4. A in Positive association between PTN polymorphisms and schizophrenia in Northeast Chinese Han population.
Fig. 2. A neighbor-joining COI tree, based on 53 haplotypes (115 specimens) of Neocaridina species from the main islands of Japan and the related taxa from East Asia. Only bootstrap values> 50% are shown on the nodes. *, species collected from Japan in this study.
Fig. 11 in Fig. 4. A in Positive association between PTN polymorphisms and schizophrenia in Northeast Chinese Han population.
Fig. 11. Neocaridina aff. fukiensis. (A) cephalothorax and cephalic appendages, lateral view; (B, C) 1st pereiopod; (D) 2nd pereiopod; (E) same, basis; (F) male 1st pleopod; (G, H) male 2nd pleopod. Scale bars: A–D = 0.5 mm; E–H = 0.2 mm (male, cl 5.7 mm, NCHUZOOL 14946, Kaya R., Ashida River system, Fukuyama City, Hiroshima Prefecture, N34°36'43", E133°15'33'', coll. H. Yoshigou, 17 Oct. 2015).
Fig. 1 in Fig. 4. A in Positive association between PTN polymorphisms and schizophrenia in Northeast Chinese Han population.
Fig. 1. Collection sites (nos. 1–18, black circles) for species of Neocaridina in the main islands of Japan (Honshu and Kyushu). For locality names and haplotypes, see table 1. Nos. 19–21 (gray circles) are the additional localities in Fuke et al. (2021).
Fig. 5 in Fig. 1 in Positive association between PTN polymorphisms and schizophrenia in Northeast Chinese Han population.
Fig. 5. Straight carapace length (SCL) was measured in 488 records, and plotted for each stranding cause. Fibropapillomatosis is abbreviated FP. Boxplot outliers begin at 1.5 times the inter-quartile distance.
Fig. 6 in Fig. 3 in Positive association between PTN polymorphisms and schizophrenia in Northeast Chinese Han population.
Fig. 6. Protection areas (PAs) overlap with highly suitable areas of the macaques, referring to different historical periods. The least-cost pathways (LCPs) migration corridors are proposed in highly suitable areas.
Fig. 5 in Fig. 3 in Positive association between PTN polymorphisms and schizophrenia in Northeast Chinese Han population.
Fig. 5. The proposed centroid shift of suitable habitat of the macaques from LIG to the 2050s while the two emission scenarios are considered.
Fig. 3 in Fig. 3 in Positive association between PTN polymorphisms and schizophrenia in Northeast Chinese Han population.
Fig. 3. The modeled distribution of suitable habitat for the Macaca: 1970–2000 (a) and the 2050s (b, c).
Fig. 6 in Fig. 4 in Positive association between PTN polymorphisms and schizophrenia in Northeast Chinese Han population.
Fig. 6. Filellum liberum sp. nov.: A−G, different shapes of hydrothecae; H, broken hydrotheca showing desmocytes (arrow). Scale bars: A−G = 200 μm; H = 100 μm.
Fig. 6 in Positive association between PTN polymorphisms and schizophrenia in Northeast Chinese Han population.
Fig. 6. Radiographs showing the ventral view of the neurocrania of A, Synagrops atrumoris sp. nov., paratype, ASIZP0081728, 152.54 mm SL, B, Synagrops japonicus (Döderlein, 1883), non-type, ASIZP0081733, 147.51 mm SL, and C, Synagrops bellus (Goode and Bean, 1896), non-type, MCZ49930, 172.98 mm SL. Not to scale.
Fig. 1 in Fig. 1 in Positive association between PTN polymorphisms and schizophrenia in Northeast Chinese Han population.
Fig. 1. Stranding locations and the division into eastern (windward) and western (leeward) sides of Hawai'i island. Coastline map courtesy of United States Geological Service (USGS) and Hawai'i Statewide GIS Program.
Fig. 1 in Fig. 3 in Positive association between PTN polymorphisms and schizophrenia in Northeast Chinese Han population.
Fig. 1. Illustration of the Asian macaques' reaching southwest East Asia during the Pliocene, after migrating from Africa, and their dispersal routes in Southeast and East Asia, which are modified according to (Li et al. 2020; Zhang et al. 2022). It illustrates the entrance of the ConvergenceDivergence Center (CDC), dispersion along three major rivers in China, and migration through the landbridges along the coastal lines formed during the glaciation in the Pleistocene.
Fig. 6 in Fig. 4 in Positive association between PTN polymorphisms and schizophrenia in Northeast Chinese Han population.
Fig. 6. Parapleurocrypta duofratres sp. nov., male paratype (DZ/UFRGS #7076), SEM. A, habitus, ventral view; B, left antennule and antenna; C, right pereopod 1; D, right pereopod 7. Scale bars: A = 0.25 mm; B–D = 0.05 mm.
Fig. 3 in Fig. 4 in Positive association between PTN polymorphisms and schizophrenia in Northeast Chinese Han population.
Fig. 3. Parapleurocrypta duofratres sp. nov., female holotype and paratypes. A, habitus, dorsal view (MZUSP #44176); B, habitus, ventral view (MZUSP #44176); C, antennules, antenna (shown on right side only), and oral cone (DZ/UFRGS #7006); D, barbula (DZ/UFRGS #7076); E, right oostegite 1, inner view (DZ/UFRGS #7006); F, right oostegite 1, outer view (DZ/UFRGS #7006); G, right maxilliped, outer view (DZ/UFRGS #7010); H, left pereopod 1 (DZ/UFRGS #7006); I, right pereopod 7 (DZ/UFRGS #7006); J, pleon, ventral view, with reduced pleopods on right side, absent on left side (DZ/UFRGS #6998). Scale bars: A–B = 0.5 mm; C = 0.05 mm; D = 0.25 mm; E–G = 0.2 mm; H = 0.1 mm; I = 0.15 mm; J = 0.4 mm.
Fig. 4 in Fig. 4 in Positive association between PTN polymorphisms and schizophrenia in Northeast Chinese Han population.
Fig. 4. Parapleurocrypta duofratres sp. nov., female paratype (DZ/UFRGS #7076), SEM. A, habitus, dorsal view; B, left antennule; C, right antenna (A1) and antennule (A2); D, left pereopod 1; E, left pereopod 7; F, right maxilliped, arrow shows maxilliped palp; G, long setae of right maxilliped palp, bearing spinous scales at the base and setules along length and tip; H, right oostegite 1, inner view; I, right oostegite 1, lateral projection of folded posterior lobe; J, right oostegite 1, inner surface with scales. Scale bars: A = 0.5 mm; B, I = 0.02 mm; C, G = 0.01 mm; D = 0.05 mm; E = 0.04 mm; F = 0.1 mm; H = 0.15 mm; J = 5 μm.
Fig. 2 in Fig. 4 in Positive association between PTN polymorphisms and schizophrenia in Northeast Chinese Han population.
Fig. 2. Parapleurocrypta duofratres sp. nov., female holotype (MZUSP #44176) and male allotype (MZUSP #44177), and host Synalpheus herricki Coutière, 1909 (DZ/UFRGS #7079). A, Female parasite habitus, dorsal view; B, Female parasite habitus, ventral view (with four eggs remaining in brood chamber); C, Host shrimp lateral view, arrow shows parasite in branchial chamber; D, Male parasite habitus, dorsal view. Scale bars: A–B = 0.5 mm; C = 0.5 cm; D = 0.3 mm.
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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.