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Figs. 70-75 in New species and interesting new records of spiders from Seychelles (Arachnida, Araneaea)
Figs. 70-75. Epocilla calcarata (Karsch, 1880). - 70: Male dorsally. - 71: Female dorsally. - 72: Right leg I ofmale laterally. - 73: Right male palp laterally.- 74: Right male palp ventrally. - 75: Epigyne ventrally - Scale bars: 70-72 =1.0,73- 75 = 0.2 mm. Orig.
Figs. 11-15. Creugasgulosus Thorell, 1878. - 11 in New species and interesting new records of spiders from Seychelles (Arachnida, Araneaea)
Figs. 11-15. Creugasgulosus Thorell, 1878. - 11: Right malepalp ventrally. - 12: Epigyne ventrally. - 13: Carapace frontally. - 14: Ocular area and chelicerae dorsally. - 15: Right chelicer from behind. - Scale bars = 0.5 mm. Orig.
Figs. 39-40. Ero comoremis Emerit, 1996 in New species and interesting new records of spiders from Seychelles (Arachnida, Araneaea)
Figs. 39-40. Ero comoremis Emerit, 1996: - 39: Abdomen of female dextrolaterally. - 40: Epigyne ventrally. - Scale bars: 39 = 1.0,40 = 0.2 mm. Orig.
Figs. 28-30 in New species and interesting new records of spiders from Seychelles (Arachnida, Araneaea)
Figs. 28-30. Agyneta pogonophora (Locket, 1968). - 28: Right male palp laterally. - 29: cymbium and tibia dorsally. - 30: Epigyne ventrally. - Scale=0.2 mm. Orig.
Figs. 33-38. Orthobula impressa Simon, 1896. - 33 in New species and interesting new records of spiders from Seychelles (Arachnida, Araneaea)
Figs. 33-38. Orthobula impressa Simon, 1896. - 33: Epigyne ventrally. - 34: Carapace and abdomen dorsally. - 35: Bulbus of male palp. - 36: Sternum. - 37: First leg. - 38: Right male palp without bulbus laterally. - Scale = 0.2 mm. Orig.
Figs. 47-49 in New species and interesting new records of spiders from Seychelles (Arachnida, Araneaea)
Figs. 47-49. Nesticella sechellana (Simon, 1873). - 47: Female sinistrolaterally. - 48: Carapace and abdomen dorsally. - 49: Epigyne ventrally. - Scale bars: 47,46 = 1.0,48 = 0.2 mm. Orig.
Figs. 61-63. Prodida Stella n in New species and interesting new records of spiders from Seychelles (Arachnida, Araneaea)
Figs. 61-63. Prodida Stella n. sp.-61: Female dorsally. - 62: Epigyne ventrally. - 63: Right palp laterally. - Scale bars = 0.2 mm. Orig.
Figs. 41-46. Palicanus caudatus Thorell, 1897.41 in New species and interesting new records of spiders from Seychelles (Arachnida, Araneaea)
Figs. 41-46. Palicanus caudatus Thorell, 1897.41: - Right male palp laterally. - 42: Right male palp mesially. - 43: Epigyne ventrally. - 44: Apex of left chelicer from behind. - 45: Left chelicer laterally, - 46: Carapace and abdomen dorsally. - Scale bars = 0.2 mm. Orig.
Figs. 84-86 in New species and interesting new records of spiders from Seychelles (Arachnida, Araneaea)
Figs. 84-86. Loxosceles rufescens (Dufour, 1820). - 84: Right male palp laterally. - 85: Carapace and abdomen dorsally. - 86: Male dextrolateraliy with out palp. - Scale bars: 84 = 0.2, 85,86 = 2.0 mm. Orig.
Figs. 31-32. Metalepthyphantes praecipuus Locket, 1968 - 31 in New species and interesting new records of spiders from Seychelles (Arachnida, Araneaea)
Figs. 31-32. Metalepthyphantes praecipuus Locket, 1968 - 31: Right male palp laterally.- 32: Epigyne ventrally. - Scale bars = 0.2 mm. Orig.
Figs. 79-83. Ariadna ustulata Simon, 1898. - 79 in New species and interesting new records of spiders from Seychelles (Arachnida, Araneaea)
Figs. 79-83. Ariadna ustulata Simon, 1898. - 79: Carapace and chelicerae dorsally. - 80: Carapace and chelicerae frontally. -81: Cololus. - 82: Right leg I mesially. - 83: Right leg I laterally. - Scale bars: 79-81 = 0.2, 82, 83 = 2.0 mm. Orig.
Figs. 76-78. Pseudicius seychellemis Wanless, 1984. - 76 in New species and interesting new records of spiders from Seychelles (Arachnida, Araneaea)
Figs. 76-78. Pseudicius seychellemis Wanless, 1984. - 76: Male dorsally. - 77: Carapace sinistrolaterally. - 78: Right male palp ventrally. - Scale bars: 76,77 = 1.0, 78 = 0.2 mm. Orig.
Figs. 25-27 in New species and interesting new records of spiders from Seychelles (Arachnida, Araneaea)
Figs. 25-27. Odontodrassus aphanes (Thorell, 1897). - 25: Left male palp ventrally. - 26: Epigyne ventrally, - 27: Ocular area. - Scale bars - 0.2 mm. Orig.
Figs. 64-69. Cosmophasis squamata Kulczynski, 1910. - 64 in New species and interesting new records of spiders from Seychelles (Arachnida, Araneaea)
Figs. 64-69. Cosmophasis squamata Kulczynski, 1910. - 64: Male dorsally. - 65: Female dorsally. - 66: Right leg I ofmale laterally. - 67: Right male palp ventrally. - 68: Right male palp laterally. - 69: Epigyne ventrally. - Scale bars: 64-66 = 1.0,67-69 = 0.2 mm. Orig.
Figs. 21-24 in New species and interesting new records of spiders from Seychelles (Arachnida, Araneaea)
Figs. 21-24. Camillina cordifera (Tullgren, 1910) (Figs. 21, 23) and C. aldabrae (Strand, 1907) (Figs. 22,24). - 21 and 22: Left male palp ventally. - 23 and 24: Epigyne ventrally. - Scale bars = 0.2 mm. Orig.
Dataset and additional info for "Serious adverse events of special interest following mRNA vaccination in randomized trials" (Fraiman et al. 2022)
<p>Dataset for:</p> <p>Fraiman J, Erviti J, Jones M, Greenland S, Whelan P, Kaplan RM, Doshi P. Serious adverse events of special interest following mRNA COVID-19 vaccination in randomized trials in adults. Vaccine. 2022 Aug 30;40(40):5798–805. doi: 10.1016/j.vaccine.2022.08.036. Epub ahead of print. PMID: 36055877; PMCID: PMC9428332. <a href="https://doi.org/10.1016/j.vaccine.2022.08.036">https://doi.org/10.1016/j.vaccine.2022.08.036</a> </p>
Data from: The interest of inflammatory biomarkers in the diagnostic approach
<p><span>Background</span><span>: </span><span>The role of inflammatory biomarkers in the etiological orientation is increasingly under study, and their potential significance is recognized. </span></p> <p><span>Methods:</span><span> Procalcitonin (PCT), neutrophil-lymphocyte ratio (NLR), C-reactive-protein (CRP), fibrinogen, ferritinaemia and lactate were measured on admission in all patients. The optimal cut-off values for the sensitivities and specificities to the infectious diseases were determined using the receiver operating curve(ROC) analysis and Youden's index. The diagnostic accuracy of biomarkers and their combinations for predicting infectious etiologies was calculated by area under the curve(AUC).</span></p> <p><span>Results:</span> <span>A total of 164 patients were included in the study.</span><span> The mean age was 50.7 ± 18 years [18 – 92 years]. Fifty-three patients (32.3%) were over 65 years old. Patients were split into four groups: 53 patients (32.3%) with infectious diseases of which 45 patients (84.9%) presented bacterial infections, 62 patients (37.8%) with inflammatory diseases, 14 patients (8.5%) with neoplasms and 35 patients (21.3%) with other diagnosis.</span><span> The high mean levels of Leukocytes (12047 cells/mm3, Neutrophils (9015 cells/mm<sup>3</sup>), Neutrophils to lymphocytes ratio (NLR) (9.7), C reactive protein (CRP) (152.5 mg/L), Procalcitonin (PCT)(3.28 ng/ml)and fibrinogen (5.37g/L) were </span><span>associated to infectious etiologies with statistically significant difference</span><span>s. Thus, we identified cut-offs of NLR(6.1), CRP (</span><span>123 mg/L),</span><span>PCT(0</span><span>.24 ng/mL)</span><span> and fibrinogen (4.9 g/L) to discriminate infectious etiologies in our population. </span><span>For diagnosing infectious diseases, the CRP showed higher AUC( Area under the curve) </span><span>(Sp: 89.7%, Se: 64.3%, AUC=0.9, CI: 0.83-0.96, p<10<sup>-3</sup>) t</span><span>han PCT (Sp: 86.1%,Se: 62.3%, AUC=0,87, CI:0.80-0.93, p<10-3), NLR (</span><span>Sp: 87.1%, Se: 61%, AUC=0.81, CI: 0.731- 0.902, p <10<sup>-3</sup></span><span>)</span><span> and Fibrinogen (Sp: 84.7%, Se:68.3%, AUC=0.77, CI: 0.65 – 0.98, p<10<sup>-3</sup>).</span><span>The combination of CRP and NLR levels improved the diagnostic accuracy (AUC 0.93, 95% CI 0.84–0.96; p< 10<sup>-3</sup>) for distinguishing between infectious and non-infectious diseases.</span></p> <p><span>Conclusions:</span> <span>Our study is characterized by the variety of included disease categories. It</span><span> showed the usefulness of inflammatory biomarkers, particularly the NLR and its combination with CRP, which are low cost and easy to assess, in promoting the diagnostic accuracy to distinguish infections among inflammatory, neoplasia and other diagnoses.</span></p>
PLATE 1 in New and interesting Peritelini of the Western Mediterranean fauna. XX. A novel Meira (Jacquelin du Val, 1852) species from the Ligurian Alps
PLATE 1. Meira diottii sp. n.: 1. Habitus; 2. surface of the pronotum (SEM); 3. detail of elytral surface (SEM).
PLATE 2 in New and interesting Peritelini of the Western Mediterranean fauna. XX. A novel Meira (Jacquelin du Val, 1852) species from the Ligurian Alps
PLATE 2. Meira diottii sp. n.: 4. Penis, lateral view; 5. Apex of the penis, dorsal view; 6. genital armature of the internal sac, typical of the genus; 7. Supplementary genital armature of the internal sac; 8a, 8b. sensilla of the penis (SEM).
Figure 14 in Comparative morphology of the finlet spines of the extant Polypteridae (Osteichthyes; Cladistia). Systematic interest
Figure 14. – Right lateral view of the articular face of the finlet spine. 7th spine, except Polypterus bichir bichir 1st, P. b. lapradei 16th, P. polli 3th and P. senegalus 6th. Scale bars = 1 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.