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41,236 results for “Review of reviews”
Fig. 5 in The tribe Anthocorini in Japan (Hemiptera: Anthocoridae): descriptions of new species, review of distribution and bionomics
Fig. 5. Scanning electron micrographs of diagnostic characters of Japanese anthocorids. A–C – Acompocoris brevirostris Kerzhner, 1979, female (A) and male (B–C); D–F – Tetraphleps aterrima (J. Sahlberg, 1878), male. A, D – ostiolar peritreme and evaporatorium, left lateroventral view; B, E – pygophore with paramere, dorsal view; C, F – paramere, dorsal views. Abbreviations: eva ‒ evaporatorium; mf ‒ median furrow; op ‒ ostiolar peritreme; prm ‒ paramere; pyg ‒ pygophore.
Fig. 1 in The tribe Anthocorini in Japan (Hemiptera: Anthocoridae): descriptions of new species, review of distribution and bionomics
Fig. 1. Habitus, dorsal (A, C, E) and lateral (B, D, F) views. A–B – Temnostethus distans Kerzhner, 1973, female; C–D – T. mirificus sp. nov., holotype, male; E–F – Elatophilus nipponensis Hiura, 1966, male. Scale bars: 1.0 mm.
Fig. 5 in A review of the digger wasps (Insecta: Hymenoptera: Scoliidae) of Hong Kong, with description of one new species and a key to known species
Fig. 5 (previous page). Scoliidae Latreille, 1802, measurements and morphological terms. For measurements refer to definitions in Material and methods section, body morphological terms follow Gupta & Jonathan (2003) and the wing terminology follows Goulet & Huber (1993). A. Scolia clypeata pseudovollenhoveni Betrem, 1933, ♀, dorsal view of head, mesosoma, T1 and T2. B. Sc. pakshaoensis sp. nov., paratype, ♂ (CBC), lateral view of head and mesosoma. C. Liacos erythrosoma (Burmeister, 1854), ♀, face fontal view. D. L. erythrosoma, ♀, vertex dorsal view. E. Fore wing cells and venation of Megacampsomeris prismatica (Smith, 1855), ♂. F. Fore wing of L. erythrosoma, ♂. Abbreviations: An. Oc. = Anterior ocellus; Cly. = Clypeus; Cr. fu. = Cross-furrow of mesopleuron; Cr. fu. = Frontal cross-furrow; dl. Ar.Prop. = dorso-lateral area of Propodeum; dm.Ar. Prop. = dorso-median area of Propodeum; Epi. sc. = Episternal scrobe; Fr. Ar. = Frontal area; Fr. Fis. = Frontal fissure; Fr. La. = Frontal lamina; Fr. pi. = Frontal pit; Fr. Spa. = Frontal spatium; Ho. Ar. = Horizontal area of mesopleuron; La. ca. = Lateral carina; La. su. = Lateral Surface; Lo. pl. mes. = Lower plate of mesopleuron; Lo. pl. met. = Lower plate of metapleuron; Mand. = Mandible; Mes. cr. = Mesopleural crest; Mes. sc. = Mesoscutum; Met. = Metanotum; Oc. Sin. = Ocular sinus; Par. fur. = Parapsidial furrow; Po. Oc. = Posterior ocellus; Pro. = Pronotum; Prop. Spi. = Propodeal spiracle; Sca. = Scapula; Scu. = Scutellum; T1 = Tergum 1; T2 = Tergum 2; Teg. = Tegula; Up. pl. mes. = Upper plate of mesopleuron; Up. pl. met. = Upper plate of metapleuron; Ver. = Vertex. Wing cells names: 1M = First medial (1st discal cell); 1m-cu = 1st recurrent vein; 1R1 = 1st submarginal cell; 1Rs = First radial sector (2nd submarginal); 2M = Second medial (2nd discal); 2m-cu = 2nd recurrent vein; 2Rs = Second radial sector (3rd submarginal cell).
Dataset: Interleukin (IL)-1 blocking agents for the treatment of COVID-19 A living systematic review
<p>This dataset is used in the analyses reported in the review entitled "Interleukin (IL)-1 blocking agents for the treatment of COVID-19 A living systematic review"</p> <p>IL-1 blockers are beneficial in inflammation-associated pathologies, such as rheumatoid arthritis (Mertens 2009) and possibly also in the subgroup of patients with severe sepsis where the inflammasome pathway is involved (Shakoory 2016). Similar benefits were reported in children with secondary macrophage activation syndrome, including cases triggered by viral infections (Mehta 2020b).</p> <p>In this review we aimed to assess the effectiveness of IL-1 blocking agents compared to placebo, standard of care or no treatment on outcomes in patients with COVID-19.</p> <p>This review is part of a larger project: the COVID-NMA project. We set-up a platform (<a href="https://covid-nma.com/">https://covid-nma.com</a>) where all our results are made available and updated bi-weekly. </p>
Datasets for "Effects of the COVID-19 Pandemic on Authors and Reviewers of American Geophysical Union Journals"
<p>These files include summary data on demographics of people submitting journal articles and reviewing manuscripts submitted to American Geophysical Union (AGU) journals. The date range is January 2018 through February 2021, divided by two years before the pandemic and during the pandemic ("year grouping"): March 2018- February 2019; March 2019- February 2020, and March 2020- February 2021 ("year of the COVID-19 pandemic"). Author-related files only include demographics of the submitting, or "corresponding" author. These datasets supplement the under-review manuscript and pre-print submission to ESSOAr (Earth and Space Science Open Archive) "Effects of the COVID-19 Pandemic on Authors and Reviewers of American Geophysical Union Journals."</p> <p> </p>
Selected articles from the scoping review on the study designs for clinical trials applied to personalised medicine
<p>The dataset provides the data extracted for the scoping review of the literature on the study designs for clinical trials applied to personalised medicine, as part of the EU project on “Personalised Medicine Trials” (PERMIT).</p> <p>The dataset reports the references for all articles selected as part of the scoping review, as well as information on the general study characteristics and definition, methodology, statistical considerations, and examples of each study design referred to in each included paper.</p>
Figs 18–26 in Review of the genus Dermestocyphon (Coleoptera: Scirtidae: Scirtinae)
Figs 18–26. Mouthparts of Dermestocyphon (males); 18, 21, 24 – mandible; 19, 22, 25 – maxilla; 20, 23, 26 – labium: 18–20 – D. drianti (Pic, 1918); 21–23 – D. optatus (Klausnitzer, 1980); 24–26 – D. niisatoi sp. nov.
Figs 7–17 in Review of the genus Dermestocyphon (Coleoptera: Scirtidae: Scirtinae)
Figs 7–17. Habitus of Dermestocyphon (Oreocyphon) (7–13) and Dermestocyphon (Himacyphon subgen. nov.) (14-17): 7 – D. brancuccii sp. nov., holotype; 8 – D. honorus (Klausnitzer, 1980), male; 9 – ditto, female; 10 – ditto, apex of elytra; 11 – D. niisatoi sp. nov., paratype; 12 – D. thailandicus sp. nov., holotype, male; 13 – D. umbratilis, (Klausnitzer, 1976), female; 14 – D. optatus (Klausnitzer, 1980), male; 15 – ditto, female; 16 – D. sp., female; 17 – ditto, frontal view. Scale bars = 1.0 mm (7–9, 11–16).
Figs 22–27. Heads. 22–23 in A review of the Saharo-Sindian species of the genus Zonitoschema (Coleoptera: Meloidae), with description of new species from Tunisia, Yemen and Socotra Island
Figs 22–27. Heads. 22–23 – Zonitoschema iranica Kaszab, 1959 from Oman: 22 – male; 23 – female. 24 – Z. oculatissima Peyerimhoff, 1929 from Chad. 25 – Z. cf. gibdoana (Kaszab, 1956) from Dhiyan (Saudi Arabia). 26–27 – Z. chourriba sp. nov.: 26 – male paratype; 27 – female paratype. Not on the same scale.
Fig. 4 in Review of the Panorpa wormaldi group (Mecoptera: Panorpidae), with descriptions of two new species
Fig. 4. Habitus of the Panorpa wormaldi group. A–B. P. gressitti Byers, 1970, ♂, dorsal and left-lateral views, respectively. C–D. P. zhuohengi sp. nov., holotype, ♂ (DALU) dorsal and left-lateral views, respectively.
Fig. 2. Panorpa implicata Cheng, 1957. A, C–F in Review of the Panorpa wormaldi group (Mecoptera: Panorpidae), with descriptions of two new species
Fig. 2. Panorpa implicata Cheng, 1957. A, C–F. ♂ (DALU). B, G–H. ♀ (DALU). A–B. Habitus, dorsal view. C. Abdomen, left-lateral view. D–E. Genital bulb, ventral and dorsal views, respectively. F. Aedeagal complex, ventral view. G. Subgenital plate, ventral view. H. Medigynium, ventral view.
Fig. 1 in Review of the Panorpa wormaldi group (Mecoptera: Panorpidae), with descriptions of two new species
Fig. 1. Habitus of the Panorpa wormaldi group, males. A. Panorpa wormaldi MacLachlan, 1875. B. P. striata Miyaké, 1908. C. P. multifasciaria Miyaké, 1910. D. P. kiusiuensis Issiki, 1929. E. P. tsunekatanis Issiki, 1929. F. P. gressitti Byers, 1970. G. P. amamiensis Miyamoto & Makihara, 1984. H. P. okinawaensis Nakamura, 2009. I. P. tokunoshimaensis Nakamura, 2009. ©Ji-Shen Wang (F) and Tomoya Suzuki (A–E, G–I).
Fig. 3 in Review of the Panorpa wormaldi group (Mecoptera: Panorpidae), with descriptions of two new species
Fig. 3. Panorpa fengyanga sp. nov. A, C–G. Holotype, ♂ (DALU). B, H–I. Paratype, ♀ (DALU). A–B. Habitus, dorsal view. C. Abdomen, left-lateral view. D–E. Genital bulb, ventral and dorsal views, respectively. F. Aedeagal complex, ventral view. G. Right paramere, right-lateral view. H. Subgenital plate, ventral view. I. Medigynium, ventral view.
Beyond depression and anxiety; a systematic review about the role of corticotropin-releasing hormone antagonists in diseases of the pelvic and abdominal organs-Worksheets
<p>This file has several worksheets corresponding to the data used for the review with the same table as indicated in the file</p>
Local communities' perceptions of wild edible plant and mushroom change: A systematic review
<p>These datasets are the basis of publication "Local communities’ perceptions of wild edible plant and mushroom change: A systematic review", DOI: https://doi.org/10.1016/j.gfs.2021.100601<br> File GFS_paperIDs.csv lists the articles that are included in the systematic review with their identification numbers.<br> File GFS_data_papers.csv contains data related to the articles reporting on changes of wild edible plants.<br> File GFS_data_plants.csv contains data related to the plant species that are affected by the changes.<br> File GFS_variable_desriptions.txt informs about the variables in files GFS_data_papers.csv and GFS_data_plants.csv.</p>
Fig. 31 in Taxonomic review of Kokeshia Miyamoto, 1960 from China, with description of ten new species (Hemiptera: Heteroptera: Schizopteridae)
Fig. 31. Pregenital abdomen and genitalia of Kokeshia zhengi Rédei, Ren & Bu, 2012, holotype, ♂ (NKUM), dorsal view. Abbreviations: see Material and methods.
Fig. 29 in Taxonomic review of Kokeshia Miyamoto, 1960 from China, with description of ten new species (Hemiptera: Heteroptera: Schizopteridae)
Fig. 29. Pregenital abdomen and genitalia of Kokeshia spp., dorsal views. A. K. drepanoides sp. nov., paratype, ♂ (SYSBM). B. K. hilli sp. nov., paratype, ♂ (SYSBM). C. K. hsiaoi Ren & Zheng, 1992, ♂ (SYSBM). D. K. pengae sp. nov., paratype, ♂ (SYSBM). Abbreviations: see Material and methods.
Fig. 28 in Taxonomic review of Kokeshia Miyamoto, 1960 from China, with description of ten new species (Hemiptera: Heteroptera: Schizopteridae)
Fig. 28. Pregenital abdomen and genitalia of Kokeshia spp., dorsal views. A. K. acutiformis sp. nov., paratype, ♂ (SYSBM). B. K. baii sp. nov., paratype, ♂ (SYSBM). C. K. bui sp. nov., paratype, ♂ (SYSBM). D. K. caii sp. nov., paratype, ♂ (SYSBM). Abbreviations: see Material and methods.
Fig. 27 in Taxonomic review of Kokeshia Miyamoto, 1960 from China, with description of ten new species (Hemiptera: Heteroptera: Schizopteridae)
Fig. 27. Forewings of Kokeshia spp., dorsal view. A. K. redeii sp. nov., paratype, ♂ (SYSBM). B. K. renae sp. nov., paratype, ♂ (SYSBM). C. K. weirauchae sp. nov., paratype, ♂ (SYSBM). D. K. xiei Rédei, Ren & Bu, 2012. ♂ (SYSBM).
Fig. 25 in Taxonomic review of Kokeshia Miyamoto, 1960 from China, with description of ten new species (Hemiptera: Heteroptera: Schizopteridae)
Fig. 25. Kokeshia zhengi Rédei, Ren & Bu, 2012. A‒D. Holotype, ♂ (NKUM). A. Dorsal view. B. Lateral view. C. Pregenital abdomen and genitalia, dorsal view. D. Labels.
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.