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150 results for “100 years”
Fig. 1 in A short history of Florida Entomologist in recognition of 100 years of publication
Fig. 1. Florida Entomologist originated as The Florida Buggist, an interesting but unusual name. The name and content soon changed to reflect a more professional image and scientific content.
BRAIN Journal-Electrophysiological Neuroimaging using sLORETA Comparing 100 Schizophrenia Patients to 48 Patients with Major Depression -Figure 4. Histogram age distributions of the 100 Schizophrenia patients illustrating clusters of patients at 20, 30, 40, and 50 years old.
<p>The figure below is a histogram distribution of the ages of one hundred Schizophrenia<br> patients in this study. There appears to be a cyclical peak every ten-years cycles at 20, 30, 40, and<br> 50-year-old patients. This may suggest a recent finding that CD8 T cells, which play a pivotal role<br> in mediating long-term immunity to Toxoplasma, are down-regulated in schizophrenia patients<br> (Bhadra et al., 2013). Based on the aforementioned statements, a vaccine for Toxoplasmosis may be<br> difficult to achieve, but the treatment and screening possibilities in patients with psychosis are<br> available today.</p>
Text-fig. 5. Reconstruction of aeduellids from the Bohemian Massif. 1 – Spinarichthys dispersus (FRITSCH, 1895) (after Štamberg 1986). 2 – Neslovicella elongata ŠTAMBERG, 2010 (after Štamberg 2010). 3 – Neslovicella rzehaki ŠTAMBERG, 2007 (after Štamberg 2007). 4 – Bourbonnella hirsuta ŠTAMBERG, 2007 (after Štamberg, 2007). Scale bar represents 20 mm. in Knowledge Of The Carboniferous And Permian Actinopterygian Fishes Of The Bohemian Massif - 100 Years After Antonín Frič
Text-fig. 5. Reconstruction of aeduellids from the Bohemian Massif. 1 – Spinarichthys dispersus (FRITSCH, 1895) (after Štamberg 1986). 2 – Neslovicella elongata ŠTAMBERG, 2010 (after Štamberg 2010). 3 – Neslovicella rzehaki ŠTAMBERG, 2007 (after Štamberg 2007). 4 – Bourbonnella hirsuta ŠTAMBERG, 2007 (after Štamberg, 2007). Scale bar represents 20 mm.
Text-fig. 2. Reconstruction of some Westphalian and Stephanian actinopterygians. Figs 1 – 5 after Štamberg (1991), Fig. 6 after Westoll (1944). Scale bars represent 20 mm. 1 – Acrolepis gigas (FRIČ, 1877), 2 – "Elonichthys" krejcii (FRITSCH, 1895), figured after the original holotype of Acrolepis sphaerosideritarum FRITSCH, 1895, 3 – "Elonichthys" krejcii (FRITSCH, 1895), figured after the original holotype of Acrolepis krejcii FRITSCH, 1895, 4 – Sphaerolepis kounoviensis FRIČ, 1877, 5 – Sceletophorus biserialis FRITSCH, 1894, 6 – Pyritocephalus sculptus (FRIČ, 1875). in Knowledge Of The Carboniferous And Permian Actinopterygian Fishes Of The Bohemian Massif - 100 Years After Antonín Frič
Text-fig. 2. Reconstruction of some Westphalian and Stephanian actinopterygians. Figs 1 – 5 after Štamberg (1991), Fig. 6 after Westoll (1944). Scale bars represent 20 mm. 1 – Acrolepis gigas (FRIČ, 1877), 2 – "Elonichthys" krejcii (FRITSCH, 1895), figured after the original holotype of Acrolepis sphaerosideritarum FRITSCH, 1895, 3 – "Elonichthys" krejcii (FRITSCH, 1895), figured after the original holotype of Acrolepis krejcii FRITSCH, 1895, 4 – Sphaerolepis kounoviensis FRIČ, 1877, 5 – Sceletophorus biserialis FRITSCH, 1894, 6 – Pyritocephalus sculptus (FRIČ, 1875).
Text-fig. 3. Progyrolepis speciosus (FRIČ, 1875). Reconstruction of the dermal skull in lateral view, x 0.7. After Štamberg (1991). Ang – angular; cl – cleithrum; Dent – dentalosplenial; Epi – epipreoperculum; Fr – frontal; Gul – gular lateral; La – lacrimal; Mx – maxilla; Na – nasal; Op – operculum; Pop - preoperculum; Pt – posttemporal; Ptr – postrostral; Rbr – branchiostegal rays; Rpm – rostropremaxillar; Sbo – suborbital; Scl – supracleithrum; Sop – suboperculum. in Knowledge Of The Carboniferous And Permian Actinopterygian Fishes Of The Bohemian Massif - 100 Years After Antonín Frič
Text-fig. 3. Progyrolepis speciosus (FRIČ, 1875). Reconstruction of the dermal skull in lateral view, x 0.7. After Štamberg (1991). Ang – angular; cl – cleithrum; Dent – dentalosplenial; Epi – epipreoperculum; Fr – frontal; Gul – gular lateral; La – lacrimal; Mx – maxilla; Na – nasal; Op – operculum; Pop - preoperculum; Pt – posttemporal; Ptr – postrostral; Rbr – branchiostegal rays; Rpm – rostropremaxillar; Sbo – suborbital; Scl – supracleithrum; Sop – suboperculum.
Text-fig. 1. Letovichthys tuberculatus ŠTAMBERG, 2007. Reconstruction of the dermal skull in lateral view, x 3. After Štamberg (2007). Dent – dentalosplenial; Dhy – dermohyal; dlac – dorso-lateral-anterior sensory canal; Dpt – dermopterotic; Dsph – dermosphenotic; Ext.l – extrascapular lateral; Ext.m – extrascapular medial; Fr – frontal; Gu.l – gular lateral; ifc – infraorbital canal; Io.s – infraorbital superior; mdc – mandibular canal; Na – nasal; Op – operculum; Pa – parietal; Pmx – premaxillar; Pop - preoperculum; Pscs – postspiracular; Pt – posttemporal; Ptr – postrostral; Rbr – branchiostegal rays; Sbo – suborbital; Scl – supracleithrum; Sop – suboperculum; stc – supratemporal commisural sensory canal. in Knowledge Of The Carboniferous And Permian Actinopterygian Fishes Of The Bohemian Massif - 100 Years After Antonín Frič
Text-fig. 1. Letovichthys tuberculatus ŠTAMBERG, 2007. Reconstruction of the dermal skull in lateral view, x 3. After Štamberg (2007). Dent – dentalosplenial; Dhy – dermohyal; dlac – dorso-lateral-anterior sensory canal; Dpt – dermopterotic; Dsph – dermosphenotic; Ext.l – extrascapular lateral; Ext.m – extrascapular medial; Fr – frontal; Gu.l – gular lateral; ifc – infraorbital canal; Io.s – infraorbital superior; mdc – mandibular canal; Na – nasal; Op – operculum; Pa – parietal; Pmx – premaxillar; Pop - preoperculum; Pscs – postspiracular; Pt – posttemporal; Ptr – postrostral; Rbr – branchiostegal rays; Sbo – suborbital; Scl – supracleithrum; Sop – suboperculum; stc – supratemporal commisural sensory canal.
Text-fig. 4. Setlikia bohemica ŠTAMBERG et ZAJÍC, 1994. The postrostral and the skull roof in dorsal view. Holotype YA 1352, x 2.7. After Štamberg and Zajíc 1994. Dpt – dermopterotic; Dsph –dermosphenotic; Fr – frontal; ifc – infraorbital canal; In – infraorbital; Na – nasal; Op – operculum; Pa – parietal; Pp – postparietal; Ptr – postrostral; so – spiracular opening; soc – supraorbital canal. in Knowledge Of The Carboniferous And Permian Actinopterygian Fishes Of The Bohemian Massif - 100 Years After Antonín Frič
Text-fig. 4. Setlikia bohemica ŠTAMBERG et ZAJÍC, 1994. The postrostral and the skull roof in dorsal view. Holotype YA 1352, x 2.7. After Štamberg and Zajíc 1994. Dpt – dermopterotic; Dsph –dermosphenotic; Fr – frontal; ifc – infraorbital canal; In – infraorbital; Na – nasal; Op – operculum; Pa – parietal; Pp – postparietal; Ptr – postrostral; so – spiracular opening; soc – supraorbital canal.
Codes and data related to the article: Renard et al. Floods and Heavy Precipitation at the Global Scale: 100-year Analysis and 180-year Reconstruction. Journal of Geophysical Research - Atmospheres.
<p>This package contains R codes and data related to the article:</p> <p>B. Renard, D. McInerney, S. Westra, M. Leonard, D. Kavetski, M. Thyer and J.-P. Vidal. Floods and Heavy Precipitation at the Global Scale: 100-year Analysis and 180-year Reconstruction. <em>Journal of Geophysical Research - Atmospheres</em>. DOI: <a href="https://doi.org/10.1029/2022JD037908">10.1029/2022JD037908</a></p> <p><strong>Analyses</strong></p> <p>This folder contains the R scripts used to set up models, analyse results and prepare figures. See README file for details.</p> <p><strong>ShinyApp</strong></p> <p>This folder contains an interactive Shiny App to explore the data and the results from the article.</p> <p>An online version can be found at <a href="https://hydroapps.recover.inrae.fr/HEGS-paper">https://hydroapps.recover.inrae.fr/HEGS-paper</a></p> <p> </p>
Figure 9 in Redescription of Pelecorhynchus kroeberi (Lindner), a Patagonian species rediscovered after more than 100 years in Chile (Diptera: Pelecorhynchidae)
Figure 9. Terminalia of P. kroeberi (Lindner) female. (A) Terminalia dorsal view. (B) Terminalia ventral view. Abbreviations: cerc: cercus; pvl: posteroventral lobe; spm dt: spermathecal duct; st 8: sternite 8; tg 9: tergite 9. Scale bar = 0.1 mm.
Aquatic islands in the sky: 100 years of research on water-filled tree holes
<p>Water-filled tree holes are unique ecosystems that may occur high up in tree crowns like aquatic islands in the sky. Insect larvae, mesofauna and other organisms colonize the waterbodies and feed on the accumulating detritus. Water-filled tree holes are not only important habitats for these species but have been used as model systems in ecology. Here we review more than 100 years of research on tree-hole inhabiting organisms and show that most studies focus on selected or even single species (most of which are mosquitoes) whereas only few studies examine groups other than insects, especially in the tropics. Using a vote counting of results and a meta-analysis of community studies, we show that the effects of tree-hole size and resources on abundance and richness were investigated most frequently. Both were found to have a positive effect, but effect sizes were modulated by site-specific environmental variables such as temperature or precipitation. We also show that parameters such as the height of the tree holes above ground, tree-hole density, predation and detritus type can be important drivers of organism abundance or richness but are less often tested. We identify several important research gaps and potential avenues for future research. Specifically, future studies should investigate the structure, functions and temporal dynamics of tree-hole food webs and their cross-system interactions, for example with terrestrial predators that act as a connection to their terrestrial surroundings in meta-ecosystems. Global observational or experimental tree-hole studies could contribute pivotal information on spatial variation of community structure and environmental drivers of community assembly. With a better understanding of these unique aquatic habitats in terrestrial ecosystems, natural and artificial tree holes can not only serve as model systems for addressing fundamental ecological questions but also as indicator systems of the impacts of environmental change on ecosystems.</p>
Fig. 1 in Eidophelus caucasicus (Lindemann, 1877) a bark beetle confirmed for the Italian fauna after almost 100 years (Coleoptera: Curculionidae, Scolytinae)
Fig. 1 –Eidophelus caucasicus (Lindemann, 1877) (1,72 mm).
Text-fig. 6. Paramblypterus sp., MHK 11024 from the locality Drválovice (Boskovice Graben), x 0.9. in Knowledge Of The Carboniferous And Permian Actinopterygian Fishes Of The Bohemian Massif - 100 Years After Antonín Frič
Text-fig. 6. Paramblypterus sp., MHK 11024 from the locality Drválovice (Boskovice Graben), x 0.9.
100 Years of Penaeids Domestication and Meta-analysis of Breeding Traits
<p><strong>Additional files</strong></p> <p><strong>Additional file 1 Table S1</strong></p> <p>Format: csv file</p> <p>Title: Quantitative genetic publications for penaeids genetic improvement programs from 1997 to 2024.</p> <p><strong>Additional file 2 Table S2</strong></p> <p>Format: csv file</p> <p>Title: Summary of heritability estimates on breeding traits in penaeids selective breeding programs.</p> <p><strong>Additional file 3 Table S3</strong></p> <p>Format: csv file</p> <p>Title: Analysis of heritability estimates in penaeids selective breeding programs for disaese resistance, feeding efficiency, growth traits, morphological traits, quality traits, reproductive traits, stress tolerance and survival.</p>
Figure 9 in Redescription of Pelecorhynchus kroeberi (Lindner), a Patagonian species rediscovered after more than 100 years in Chile (Diptera: Pelecorhynchidae)
Figure 9. Terminalia of P. kroeberi (Lindner) female. (A) Terminalia dorsal view. (B) Terminalia ventral view. Abbreviations: cerc: cercus; pvl: posteroventral lobe; spm dt: spermathecal duct; st 8: sternite 8; tg 9: tergite 9. Scale bar = 0.1 mm. Pseudoerinna Shiraki, Rhagio Fabricius, Symphoromyia to Pelecorhynchus, and stated that "(…) P. kroeberi is simi- Frauenfeld), and Vermileonidae (Vermileo Macquart) lar to P. elegans (Philippi), but differs in that P. kroeberi has (Stuckenberg, 2001; Kerr, 2010). The similarity of the white hairs on the pleura, scutellum with distal margin posteroventral lobes in Pelecorhynchus and could with brown hairs, and legs reddish brown (…)″. Clearly, be interpreted as a synapomorphy of Rhagionidae + there are more differences between P. kroeberi and P. el- Pelecorhynchus (Pelecorhychidae) (see Santos, 2006). The egans. Also, there are many characters by which P. kroeshape of sternite 8, with the acuminate anterior margin, beri can be distinguished from the other South American is an additional feature supporting Rhagionidae and species of Pelecorhynchus, all of them known only from Pelecorchynchidae as sister groups. Chile, as detailed in Table 1. Pechuman (1967: 555) commented on the morpho-
Figure 1 in Redescription of Pelecorhynchus kroeberi (Lindner), a Patagonian species rediscovered after more than 100 years in Chile (Diptera: Pelecorhynchidae)
Figure 1. (A) Distribution record for P. kroeberi of holotype (circle) and specimen (triangle) in southern Chile. (B) Map showing location of sampling site of P. kroeberi (Lindner) in Laguna San Rafael, Region de Aysén, Chile. (C) Malaise trap that captured P. kroeberi (Lindner).
Data from: Concrete survivors: The herpetofauna of an urban green area over 100 years of increasing urbanization
<p><span>The goal of our study was to evaluate changes in the assemblage of reptiles in an urban habitat over 100 years of increasing urbanization, aiming to identify which ecological attributes allowed the persistence of species that can be found in the area today. To accomplish that, we accessed historical records in two important scientific collections for the study area and carried out fieldwork to access the current reptile assemblage in an urban green area, in São Paulo, Brazil. The dataset presented here is the result of all individuals collected in the study area between 1908 and 2019, including also the animals collected by the authors during the fieldwork carried out in 2016 and preserved in the collection. </span></p>
Solar, atmospheric and volcanic impacts on 10Be depositions in Greenland and Antarctica during the last 100 years
<p>EGRIP <sup>10</sup>Be Data for the paper: "Solar, atmospheric and volcanic impacts on <sup>10</sup>Be depositions in Greenland and Antarctica during the last 100 years" in <em>Journal of Geophysical Research: Atmospheres</em></p> <p>(note: the version 1 is uploaded mistakenly with the old time scale, please use this file for the EGRIP data)</p>
Aquatic islands in the sky: 100 years of research on water-filled tree holes
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Data from: Phylogenomics using formalin-fixed and 100+ year old intractable natural history specimens
Open the record for dataset details and reuse information.
Data from: Concrete survivors: The herpetofauna of an urban green area over 100 years of increasing urbanization
Open the record for dataset details and reuse information.
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Allen Brain Atlas
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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.