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129 results for “journal analysis”
Figures 18-23 from: Vasiliţa C, Popovici OA, Talamas E, Johnson N, Masner L, Tortorici F, Fusu L (2021) Molecular analysis reveals Latonius planus Kononova to be a derived species of Trissolcus Ashmead. In: Lahey Z, Talamas E (Eds) Advances in the Systematics of Platygastroidea III. Journal of Hymenoptera Research 87: 267-289. https://doi.org/10.3897/jhr.87.63533
Figures 18-23 Holotype of Latonius planus (female) 18 habitus, dorsal view 19 head, frontal view 20 habitus, lateral; holotype of Ioseppinella serena (male) 21 mesosoma and metasoma, dorsal view 22 mesosoma, lateral view 23 head, frontal view.
Figures 10-17 from: Vasiliţa C, Popovici OA, Talamas E, Johnson N, Masner L, Tortorici F, Fusu L (2021) Molecular analysis reveals Latonius planus Kononova to be a derived species of Trissolcus Ashmead. In: Lahey Z, Talamas E (Eds) Advances in the Systematics of Platygastroidea III. Journal of Hymenoptera Research 87: 267-289. https://doi.org/10.3897/jhr.87.63533
Figures 10-17 Trissolcus planus (female) 10 habitus, dorsal view 11 habitus, lateral view 12 fore and hind wings 13 fore wings venation 14, 15 arolium 16 metasoma with exposed tergites, sternites and latero-tergites (composite image) 17 ovipositor assembly (composite image).
Figure 2 from: Wood TJ, Patiny S, Bossert S (2022) An unexpected new genus of panurgine bees (Hymenoptera, Andrenidae) from Europe discovered after phylogenomic analysis. Journal of Hymenoptera Research 89: 183-210. https://doi.org/10.3897/jhr.89.72083
Figure 2 Maximum Likelihood phylogeny of Panurgus, Flavipanurgus, and the newly described genus Halopanurgus gen. nov., based on 2,055 ultraconserved elements. Taxonomic names reflect the nomenclatural changes proposed in this study. Node support corresponds to 100 ultrafast bootstrap support values unless indicated otherwise.
Figures 33-38 from: Wood TJ, Patiny S, Bossert S (2022) An unexpected new genus of panurgine bees (Hymenoptera, Andrenidae) from Europe discovered after phylogenomic analysis. Journal of Hymenoptera Research 89: 183-210. https://doi.org/10.3897/jhr.89.72083
Figures 33-38 Panurgus (Panurgus s. str.) male genitalia 33Panurgus cephalotes34Panurgus dentipes35Panurgus maroccanus36Panurgus perezi37Panurgus banksianus38Panurgus pyropygus.
Figures 45-48 from: Wood TJ, Patiny S, Bossert S (2022) An unexpected new genus of panurgine bees (Hymenoptera, Andrenidae) from Europe discovered after phylogenomic analysis. Journal of Hymenoptera Research 89: 183-210. https://doi.org/10.3897/jhr.89.72083
Figures 45-48 Sternum 7 for members of the former four subgenera of Panurgus45Panurgus (Panurgus) cephalotes46Panurgus (Euryvalvus) banksianus47Panurgus (Pachycephalopanurgus) canescens48Panurgus (Micropanurgus) ovatulus.
Figures 12-19 from: Wood TJ, Patiny S, Bossert S (2022) An unexpected new genus of panurgine bees (Hymenoptera, Andrenidae) from Europe discovered after phylogenomic analysis. Journal of Hymenoptera Research 89: 183-210. https://doi.org/10.3897/jhr.89.72083
Figures 12-19 Panurgine male sternum seven 12Halopanurgus baldocki13Avpanurgus flavofasciatus14Camptopoeum (Epimethea) variegatum15Flavipanurgus flavus16Flavipanurgus kastiliensis17Panurgus (Panurgus) calcaratus18Panurgus (Panurgus) dentipes19Panurgus (Pachycephalopanurgus) farinosus.
Figures 39-44 from: Wood TJ, Patiny S, Bossert S (2022) An unexpected new genus of panurgine bees (Hymenoptera, Andrenidae) from Europe discovered after phylogenomic analysis. Journal of Hymenoptera Research 89: 183-210. https://doi.org/10.3897/jhr.89.72083
Figures 39-44 Panurgus (Pachycephalopanurgus) male genitalia 39Panurgus calceatus40Panurgus canescens41Panurgus convergens42Panurgus farinosus43Panurgus minor44Panurgus rungsii.
Figures 4-11 from: Wood TJ, Patiny S, Bossert S (2022) An unexpected new genus of panurgine bees (Hymenoptera, Andrenidae) from Europe discovered after phylogenomic analysis. Journal of Hymenoptera Research 89: 183-210. https://doi.org/10.3897/jhr.89.72083
Figures 4-11 Panurgine male genitalia 4Halopanurgus baldocki5Avpanurgus flavofasciatus6Camptopoeum (Camptopoeum) frontale7Camptopoeum (Epimethea) variegatum8Flavipanurgus flavus9Flavipanurgus venustus10Flavipanurgus kastiliensis11Panurgus (Panurgus) calcaratus.
Figure 1 from: Wood TJ, Patiny S, Bossert S (2022) An unexpected new genus of panurgine bees (Hymenoptera, Andrenidae) from Europe discovered after phylogenomic analysis. Journal of Hymenoptera Research 89: 183-210. https://doi.org/10.3897/jhr.89.72083
Figure 1 Cumulative number of valid bee genera by year of description for Europe (as defined by Rasmont et al. 2017) (yellow dots) and the wider West Palaearctic region (blue dots). The recognition of genera follows Rasmont et al. (2017) with modifications as defined in the introduction.
Figure 3 from: Wood TJ, Patiny S, Bossert S (2022) An unexpected new genus of panurgine bees (Hymenoptera, Andrenidae) from Europe discovered after phylogenomic analysis. Journal of Hymenoptera Research 89: 183-210. https://doi.org/10.3897/jhr.89.72083
Figure 3 Male genital capsule of Halopanurgus baldocki, with arrow indicating the apical part of the gonocoxa which is produced into a strong triangular point.
Figures 20-27 from: Wood TJ, Patiny S, Bossert S (2022) An unexpected new genus of panurgine bees (Hymenoptera, Andrenidae) from Europe discovered after phylogenomic analysis. Journal of Hymenoptera Research 89: 183-210. https://doi.org/10.3897/jhr.89.72083
Figures 20-27 Panurgine faces 20Halopanurgus baldocki comb. nov. male 21Avpanurgus flavofasciatus male 22Halopanurgus fuzetus comb. nov. female 23Flavipanurgus granadensis female 24Flavipanurgus kastiliensis male 25Simpanurgus phyllopodus male, including 26 male antennae and 27 male fore tarsi.
Trends in authorship demographics for manuscripts published in Endocrine journals: A 70-year analysis
<p><em><span>Background</span> </em></p> <p><span>Over the previous few decades, demographics, gender, and the amount of papers published have all changed considerably. One of the fields of medicine that has yet to be extensively investigated is endocrinology.</span> </p> <p><em><span>Material and Methods</span> </em></p> <p><span>Journal of Endocrinology and General & Comparative Endocrinology are two landmark journals that publish articles from around the world. We examined each decade during the 70-year period from 1961 to 2021. Funding source, first author – last author gender, their demographics and proportion of papers with at least one female author were the parameters considered while studying each publication. We predicted that the number of female authors per paper would increase with time, as would the range of degrees held by the authors, demographical variations in authorship, and the funding source. Our goal was also to determine the distribution of female first authors and senior authors in endocrinology journals over a 70-year period, as well as to check the gender combinations using the Punnett square. </span> </p> <p><em><span>Results</span> </em></p> <p><span>Female initial authors rose from 7% to 29.6% (p<0.0006) between 1961 and 2021, whereas female senior authors rose from 15.6% to 22.2%. Despite women's small contributions to first and senior authors, female participation rose from 17.48% (25/143) to 70% (170/250) between 1961 and 2021. Male-Female and Female-Male combinations rose with Chi-Square = 124.6, (p<0.0001). Europe and the Americas had the most female academic medical contributors (p<0.0001) Regardless of author status, female participation rose from 17.48% in 1961 to 68% in 2021.</span> </p> <p><em><span>Conclusion </span> </em></p> <p><span>In papers published in endocrinology journals, there was a rising trend in female contributions to academic medicine. Even with the large growth of female endocrinologists, there is still a disparity in why the increase in female authors is comparably fewer.</span> </p>
The Caucasus Economic and Social Analysis Journal of Southern Caucasus
<p>The Caucasus Economic and Social Analysis Journal of Southern Caucasus </p>
Dataset for "A Clustering Analysis of Lebanese Adaptive Driving Behaviors in Response to Road Complexity" By Kobeissy et al. Submitted to The Open Transportation Journal
Open the record for dataset details and reuse information.
THE CAUCASUS ECONOMIC & SOCIAL ANALYSIS JOURNAL OF SOUTHERN CAUCASUS
<p>THE CAUCASUS ECONOMIC & SOCIAL ANALYSIS JOURNAL OF SOUTHERN CAUCASUS</p>
The Caucasus-Economic and Social Analysis Journal of Southern Caucasus
<p><strong>The Caucasus-Economic and Social Analysis Journal of Southern Caucasus</strong></p>
Fig 5 from: Tan MK, Tumbrinck J, Baroga-Barbecho JB, Yap SA (2019) A new species and morphometric analysis of Cladonotella (Tetrigidae: Cladonotinae). Journal of Orthoptera Research 28(2): 129-135. https://doi.org/10.3897/jor.28.32464
Fig 5 Over-limestone forest in Siargao Island, the habitat of Cladonotella spinulosasp. nov. The blue arrow indicates the location where the specimen was collected.
Fig 2 from: Tan MK, Tumbrinck J, Baroga-Barbecho JB, Yap SA (2019) A new species and morphometric analysis of Cladonotella (Tetrigidae: Cladonotinae). Journal of Orthoptera Research 28(2): 129-135. https://doi.org/10.3897/jor.28.32464
Fig 2 A neighbor-joining tree of Cladonotella based on seven measurements (see Tumbrinck 2014) and four categorical characters. The value indicates nodal support based on 10,000 standard bootstrap replications. Images by J. Tumbrinck (except for Cladonotella spinulosasp. nov.).
Fig 4 from: Tan MK, Tumbrinck J, Baroga-Barbecho JB, Yap SA (2019) A new species and morphometric analysis of Cladonotella (Tetrigidae: Cladonotinae). Journal of Orthoptera Research 28(2): 129-135. https://doi.org/10.3897/jor.28.32464
Fig 4 Cladonotella spinulosasp. nov. holotype: A. Face and anterior part of pronotum in frontal view; B. Head in dorsal view; C. Mouthparts in ventro-frontal view; D. Anterior and E. Middle femora in lateral views. Posterior femur in F. Lateral (posterior part) and G. Dorsal views; H. Posterior tibia and tarsus in lateral view; I. Abdominal apex in lateral view; J. Subgenital plate in ventral view. Scale bars: 1 mm.
Fig 1 from: Tan MK, Tumbrinck J, Baroga-Barbecho JB, Yap SA (2019) A new species and morphometric analysis of Cladonotella (Tetrigidae: Cladonotinae). Journal of Orthoptera Research 28(2): 129-135. https://doi.org/10.3897/jor.28.32464
Fig 1 Map of Southeast Asia. Colored regions indicate the current known distribution of Cladonotella. Images by J. Tumbrinck (except for Cladonotella spinulosasp. nov.).
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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.