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319 results for “Zhejiang”
Figure 2 in Three new species of Tenthredo Linnaeus, 1758 (Hymenoptera: Tenthredinidae) from Jiangxi and Zhejiang Provinces, China
Figure 2. Tenthredo pseudoxanthopleurita sp. nov. A. Female, dorsal view; B. Male, dorsal view; C. Head of female, dorsal view; D. Head of female, anterior view; E. Antenna of female, lateral view; F. Mesopleuron and metapleuron of female; G. Ovipositor sheath, lateral view; H. Ovipositor sheath, dorsal view; I. Lancet; J. The 5th–8th serrulae; K. Head of male, dorsal view; L. Antenna of male, lateral view; M. Subgenital plate of male, ventral side; N. Gonoforceps; O. Penis valve. A, C–J. Holotype; B, K–O. Paratype. Scale bars: A–B = 2.0 mm; I, N–O = 200 µm; J = 100 µm.
Figure 1 in Three new species of Tenthredo Linnaeus, 1758 (Hymenoptera: Tenthredinidae) from Jiangxi and Zhejiang Provinces, China
Figure 1. Tenthredo carinacestanella sp. nov. A. Female, dorsal view; B. Male, dorsal view; C. Head of female, dorsal view; D. Head of female, anterior view; E. Antenna of female, lateral view; F. Mesoscutellum of female, lateral view; G. Mesopleuron and metapleuron of female; H. Ovipositor sheath, lateral view; I. Ovipositor sheath, dorsal view; J. Lancet; K. The 5th–8th serrulae; L. Head of male, dorsal view; M. Antenna of male, lateral view; N. Subgenital plate of male, ventral side; O. Penis valve; P. Gonoforceps. A, C–K. Holotype; B, L–P. Paratype. Scale bars: A–B = 2.0 mm; J, O–P = 200 µm; K = 100 µm.
Figure 3 in Three new species of Tenthredo Linnaeus, 1758 (Hymenoptera: Tenthredinidae) from Jiangxi and Zhejiang Provinces, China
Figure 3. Tenthredo yudai sp. nov., ♀, holotype. A. Female, dorsal view; B. Head of female, dorsal view; C. Head of female, anterior view; D. Antenna of female, lateral view; E. Mesopleuron and metapleuron of female; F. Ovipositor sheath, lateral view; G. Ovipositor sheath, dorsal view; H. Lancet; I. The 5th–8th serrulae. Scale bars: A = 2.0 mm; H = 200 µm; I = 100 µm.
Fig. 1 in Description of an integrated management system for invasive mosquitoes at entry-exit ports in Zhejiang, China
Fig. 1 Framework of integrated management system for invasive mosquitoes at Zhejiang ports, China. Abbreviation: HC, Hangzhou Customs
Fig. 4 in Description of an integrated management system for invasive mosquitoes at entry-exit ports in Zhejiang, China
Fig. 4 Tools for online classification and taxonomy of mosquito identification keys using Lucid on the front-page internet (http://www.livefarm.cn/ lucid/mosquito)
Fig. 5 in Description of an integrated management system for invasive mosquitoes at entry-exit ports in Zhejiang, China
Fig. 5 Related supplemental information on exotic mosquitoes obtained from the identification keys on the front-page internet
Fig. 3 in Description of an integrated management system for invasive mosquitoes at entry-exit ports in Zhejiang, China
Fig. 3 Annual trends and species abundance of captured mosquitoes from 2011 to 2017 in the Zhejiang Province, China. a Dynamic variation of captured invasive mosquitoes. b Pie chart of mosquito species composition
Fig. 2 in Description of an integrated management system for invasive mosquitoes at entry-exit ports in Zhejiang, China
Fig. 2 Geographical distribution of surveillance points in Zhejiang Province, China (obtained from the National Platform for Common Geospatial Information Services)
Figs 1-4 in New data on Xantholinini from China. XVII. Daolus niger nov.sp. from Zhejiang (Coleoptera: Staphylinidae, Xantholinini) 205° contribution to the knowledge of the Staphylinidae
Figs 1-4: Daolus niger nov.sp: (1) labrum; (2) tergite of the male genital segment; (3) sternite of the same; (4) aedeagus (scale: 0.1 mm).
Figs 23-26 in Contribution to the knowledge of the Xantholini from China. XV. New species collected by Michael Schülke in Zhejiang and Yunnan (Coleoptera, Staphylinidae)¹
Figs 23-26: Atopolinus subtropicalis n. sp.: 23 6° visible tergite; 24 male genital segment. 25 sternite of the same; 26 aedeagus (bar scale: 0,1 mm).
Figs 1-11 in Contribution to the knowledge of the Xantholini from China. XV. New species collected by Michael Schülke in Zhejiang and Yunnan (Coleoptera, Staphylinidae)¹
Figs 1-11: Mahavana gaoligonggaoligong n. sp.: 1 head (right half omitted); 2 antenna; 3 tergite of the male genital segment; 4 sternite of the same; 5 aedeagus. Mahavana daliana n. sp.: 6 head (right half omitted); 7 antenna; 8 6° visible sternite; 9 male genital segment; 10 sternite of the same; 11 aedeagus (bar scale: 0,1 mm).
Figs 19-22 in Contribution to the knowledge of the Xantholini from China. XV. New species collected by Michael Schülke in Zhejiang and Yunnan (Coleoptera, Staphylinidae)¹
Figs 19-22: Atopolinus uncinatus n. sp.: 19 sternite of male genital segment. Atopolinus inusualis n. sp.: 20 tergite of male genital segment. 21 sternite of the same; 22 aedeagus (bar scale: 0,1 mm).
Figs 27-31 in Contribution to the knowledge of the Xantholini from China. XV. New species collected by Michael Schülke in Zhejiang and Yunnan (Coleoptera, Staphylinidae)¹
Figs 27-31: Atopolinus schuelkeischuelkei n. sp.: 27 6° visible tergite; 28 6° visible sternite; 29 male
Figs 12-18 in Contribution to the knowledge of the Xantholini from China. XV. New species collected by Michael Schülke in Zhejiang and Yunnan (Coleoptera, Staphylinidae)¹
Figs 12-18: Yunna fungicolafungicola n. sp.: 12 male genital segment; 13 sternite of the same; 14 aedeagus. Atopolinus uncinatusuncinatus n. sp.: 15 6° visible tergite; 16 6° visible sternite; 17 male genital segment; 18 aedeagus (bar scale: 0,1 mm).
Data for: Evaluation of antibody kinetics and durability in health individuals vaccinated with inactivated COVID-19 vaccine (CoronaVac): a cross-sectional and cohort study in Zhejiang, China
<p><strong>Background</strong>: Although inactivated COVID-19 vaccines are proven to be safe and effective in the general population, the dynamic response and duration of antibodies after vaccination in the real world should be further assessed.</p> <p><strong>Methods</strong>: We enrolled 1067 volunteers who had been vaccinated with one or two doses of CoronaVac in Zhejiang Province, China. Another 90 healthy adults without previous vaccinations were recruited and vaccinated with three doses of CoronaVac, 28 days and 6 months apart. Serum samples were collected from multiple timepoints and analyzed for specific IgM/IgG and neutralizing antibodies (NAbs) for immunogenicity evaluation. Antibody responses to the Delta and Omicron variants were measured by pseudovirus-based neutralization tests.</p> <p><strong>Results</strong>: Our results revealed that binding antibody IgM peaked 14–28 days after one dose of CoronaVac, while IgG and NAbs peaked approximately 1 month after the second dose and then declined slightly over time. Antibody responses had waned by month 6 after vaccination and became undetectable in the majority of individuals at 12 months. Levels of NAbs to live SARS-CoV-2 were correlated with anti-SARS-CoV-2 IgG and NAbs to pseudovirus, but not IgM. Homologous booster around 6 months after primary vaccination activated anamnestic immunity and raised NAbs 25.5-fold. The neutralized fraction subsequently rose to 36.0% for Delta (p=0.03) and 4.3% for Omicron (p=0.004), and the response rate for Omicron rose from 7.9% (7/89) to 17.8% (16/90).</p> <p><strong>Conclusions</strong>: Two doses of CoronaVac vaccine resulted in limited protection over a short duration. The inactivated vaccine booster can reverse the decrease of antibody levels to prime strain, but it does not elicit potent neutralization against Omicron; therefore, the optimization of booster procedures is vital.</p>
Data for: Evaluation of antibody kinetics and durability in health individuals vaccinated with inactivated COVID-19 vaccine (CoronaVac): a cross-sectional and cohort study in Zhejiang, China
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FIGURES 114–119. 114 in The genus Dianous in Zhejiang, East China (Coleoptera, Staphylinidae)
FIGURES 114–119. 114 Habitate of Dianous rufidulus & D. rugosipennis (Photo by Dr. Liang Tang from Longwangshan at 3.X.2003) 115 The aggregate of D. banghaasi banghaasi and D. freyi (Photo by Dr. Jia-Yao Hu from West Tianmushan at 19.VIII.2003) 116 A living D. rugosipennis (Photo by Dr. Liang Tang from Fengyangshan at 9.V.2019) 117 Two living D. aequalis (Photo by Dr. Liang Tang from West Tianmushan at 25.IV.2019) 118 A living D. banghaasi banghaasi (Photo by Dr. Liang Tang from West Tianmushan at 25.IV.2019) 119 A living D. freyi (Photo by Dr. Liang Tang from Fengyangshan at 10.V.2019).
FIGURES 13–18 in The genus Dianous in Zhejiang, East China (Coleoptera, Staphylinidae)
FIGURES 13–18. Adult habitus of Dianous. 13, 14 D. banghaasi banghaasi 15, 16 D. dubiosus 17, 18 D. sp. 1. Scale=1mm.
FIGURES 106–113. Dianous zhejiangensis 106 male sternite VIII 107 female sternite VIII 107 male tergites IX and X 109 female tergites IX and X 110, 111 aedeagus 112 male sternite IX 113 in The genus Dianous in Zhejiang, East China (Coleoptera, Staphylinidae)
FIGURES 106–113. Dianous zhejiangensis 106 male sternite VIII 107 female sternite VIII 107 male tergites IX and X 109 female tergites IX and X 110, 111 aedeagus 112 male sternite IX 113 valvifer. Scale bars = 0.25 mm.
FIGURES 7–12 in The genus Dianous in Zhejiang, East China (Coleoptera, Staphylinidae)
FIGURES 7–12. Adult habitus of Dianous. 7, 8 D. rugosipennis 9, 10 D. luteostigmaticus 11, 12 D. aequalis. Scale=1mm.
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Allen Brain Atlas
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DANDI Archive for NWB datasets
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International Brain Laboratory public data
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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.