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122 results for “Lyon”
Figure 2 from: Lyons J, Piller KR, Artigas-Azas JM, Dominguez-Dominguez O, Gesundheit P, Köck M, Medina-Nava M, Mercado-Silva N, García AR, Findley KM (2019) Distribution and current conservation status of the Mexican Goodeidae (Actinopterygii, Cyprinodontiformes). ZooKeys 885: 115-158. https://doi.org/10.3897/zookeys.885.38152
Figure 2 Photos of four representative types of goodeid habitats A Lake Chapala, near Ajijic, Jalisco, 6 January 2005. The largest natural lake in Mexico and historically the home of at least six species of goodeids. Currently, only Chapalichthys encaustus (see Figure 1), Goodea atripinnis, and Zoogoneticus purhepechus remain B 27 de Noviembre Springs, Durango, 11 January 2008, home of Characodon species C Molino Viejo Reservoir, Jalisco, 17 January 2008, home of Xenotoca melanosomaD Cuzalapa River, Jalisco, 11 January 2006, home of Ilyodon furcidens and Xenotaenia resolanae (see Figure 1).
Figure 1 from: Lyons J, Piller KR, Artigas-Azas JM, Dominguez-Dominguez O, Gesundheit P, Köck M, Medina-Nava M, Mercado-Silva N, García AR, Findley KM (2019) Distribution and current conservation status of the Mexican Goodeidae (Actinopterygii, Cyprinodontiformes). ZooKeys 885: 115-158. https://doi.org/10.3897/zookeys.885.38152
Figure 1 Photos of eight representative goodeid fishes. All photos taken by John Lyons of freshly preserved, wild-caught, adult, male specimens. AAllotoca goslinei, Potrero Grande Stream, Jalisco, 8 January 2004 BAlloophorus robustus, Opopeo Lake, Michoacán, 9 January 2011 CAmeca splendens, Almoloya Springs, Jalisco, 17 January 2008 DChapalichthys encaustus, Lake Chapala near Ajijic, Jalisco, 6 January 2005 EGoodea atripinnis, Tierra Quemada Stream, San Luis Potosí, 15 January 2011 FSkiffia lermae, Zacapu Lake, Michoacán, 11 January 2005 GXenotaenia resolanae, Cuzalapa River, Jalisco, 10 January 2006 HXenotoca doadrioi, San Marcos Stream, Jalisco, 9 January 2005.
Figure 3 from: Lyons J, Piller KR, Artigas-Azas JM, Dominguez-Dominguez O, Gesundheit P, Köck M, Medina-Nava M, Mercado-Silva N, García AR, Findley KM (2019) Distribution and current conservation status of the Mexican Goodeidae (Actinopterygii, Cyprinodontiformes). ZooKeys 885: 115-158. https://doi.org/10.3897/zookeys.885.38152
Figure 3 General distribution of goodeid fishes in Mexico, with the location of major river basins and lakes shown. Shaded areas indicate the range of most goodeid species (blue) and the disjunct range of Characodon (brown).A Mezquital River basin B Grande Santiago River Basin CAmeca River basin D Purificación and Marabasco River basins E Armería River basin F Coahuayana River basin G Balsas River Basin H Lake Chapala I Lerma River Basin J Lake Cuitzeo/Grande de Morelia River basin (endorheic) K Lake Pátzcuaro and Lake Zirahuén basins (endorheic) L Lake Atotonilco, Lake San Marcos, Lake Sayula, and Lake Zapotlán basins (endorheic) M Lake Magdalena basin (endorheic) N Valley of Mexico/ Mexico City (endorheic) O Pánuco River basin P Valley of Parras,(endorheic), Characodon garmani collection site Q Tunal River drainage (part of Mezquital River basin), home of Characodon species.
Figure 11 from: Lyons J, Piller KR, Artigas-Azas JM, Dominguez-Dominguez O, Gesundheit P, Köck M, Medina-Nava M, Mercado-Silva N, García AR, Findley KM (2019) Distribution and current conservation status of the Mexican Goodeidae (Actinopterygii, Cyprinodontiformes). ZooKeys 885: 115-158. https://doi.org/10.3897/zookeys.885.38152
Figure 11 Distribution of Characodon species. The single record far to the east represents C. garmani and the remainder of points represent C. audax and C. lateralis.
Membership lists Trinity confraternity "Confrérie de la Trinité" Lyon 1306 and 1422
<p>Membership lists to the Trinity confraternity in Lyon, 1306 and 1422. Published as annexes to "Canons, Councillors and <em>Confrères</em>: Changing Power Constellations in the City of Lyon (Late Middle Ages, Early Modern Times)" </p> <p><strong>Author</strong>: <a href="https://www.uni-erfurt.de/philosophische-fakultaet/seminare-professuren/historisches-seminar/professuren/geschichte-und-kulturen-der-raeume-in-der-neuzeit/mitarbeitende/prof-dr-susanne-rau">Susanne Rau</a></p> <p>Membership lists of the years 1306 and 1422 relating to a general confraternity (French: <em>confrérie générale)</em> in the city of Lyon: the Trinity Confraternity (<em>confrérie de la Trinité</em>), founded in Saint-Nizier in 1300. The 1306 membership list (annex 1) is an excerpt from the book of the Trinity confraternity, <em>Le livre des confrères</em>, which since the 19<sup>th</sup> century is held in the Municipal Library of Lyon as part of the <a href="https://pleade.bm-lyon.fr/toc.xsp?id=FRCGMBPF-693836101-01d.xml&qid=sdx_q11&fmt=tab&idtoc=FRCGMBPF-693836101-01d.xml-pleadetoc&base=fa&n=2&ss=true&as=true&ai=MS-simple|">Coste collection</a> (Bibliothèque municipale de Lyon, Ms Coste 355: Registre de la confrérie de la Sainte-Trinité de Lyon, 1306–1792). The 1422 membership list is part of the same source, the <em>livre de confrères. </em></p> <p>The membership lists are included as annexes 1 and 2 to the research article by Susanne Rau "Canons, Councillors and <em>Confrères</em>: Changing Power Constellations in the City of Lyon (Late Middle Ages, Early Modern Times)", published in <a href="https://www.degruyter.com/database/urbrel/html">Religion and Urbanity</a> Online (de Gryuter).</p> <p><strong>Article Summary:</strong></p> <p>Integrated into the Kingdom of France only around 1300, Lyon is a typical example of a city where diverse and potentially conflicting power resources reigned for a long time and influenced urban life in different ways. Lyon, therefore, can be taken as a typical case of urban heterarchy. The paper describes these power structures and the potential influence of urban and ecclesiastical institutions: the archbishop with a cathedral chapter (St. John), monasteries and convents (the mendicant orders), the consulate (with its main church St. Nizier and the chapel St. Jacquême as their seat) as well as the confraternities (secular associations). This synchronic picture alone shows two things: First, the Church in Lyon was not at all unified but was composed of different actors with different roles and responsibilities. Secular power did not belong only to the consulate but also to the confraternities and, later, to the royal officers. Second, there were fixed powers as well as interactions between religious and political structures and changes in power. For example, ecclesiastical and secular jurisdiction belonged to the archbishop for a long time, from whom it passed to the city's royal officers after 1550. The confraternities, especially that of the Trinity, occupied the intermediate position between the church and the laity. Or, in other words, with the advent of this great general confraternity, we can observe the assumption of responsibility for religious (and charitable) affairs by the laity. As a third point, I will show how the constellation of power and its evolution are reflected in the urban space by territorial demarcations, by the implantation or takeover of symbolic buildings, and by processions organised by ecclesiastical actors and local authorities.</p> <p>Revised paper of the conference ‘<a href="https://www.hsozkult.de/conferencereport/id/tagungsberichte-8619">Urban Heterarchies: Changing Religious Authority and Social Power in Cities</a>’ (Erfurt, December 11–13, 2019), funded by the Deutsche Forschungsgemeinschaft (DFG, German Research Foundation) and organised by the Humanities Centre for Advanced Studies “<a href="https://www.uni-erfurt.de/en/max-weber-kolleg/forschung/forschungsgruppen-und-stellen/research-groups/humanities-centre-for-advanced-studies/kolleg-forschungsgruppe-kfg-religion-and-urbanity-reciprocal-formations-for-2779">Religion and Urbanity: Reciprocal Formations</a>” at the Max Weber Centre, University of Erfurt. Research conducted in Lyon was also funded by the DFG – <a href="https://www.uni-erfurt.de/max-weber-kolleg/forschung/forschungsgruppen-und-stellen/forschungsgruppen/kolleg-forschungsgruppe-religion-and-urbanity-reciprocal-formations-for-2779">FOR 2779</a>. Special thanks go to <a href="https://www.uni-erfurt.de/max-weber-kolleg/personen/doktorandinnen/doktorandinnen/wagner-simone">Simone Wagner</a> (for a first read), to Jean-Louis Gaulin (for his comments and valuable hints) and to Corentin Durand (for his research on the members of the confraternity during the summer of 2020, at a time when I was not allowed to travel to Lyon due to the Corona pandemic).</p>
Figures 39-44 from: Dikow T, Lyons K (2010) Taxonomic revision of Ectyphus Gerstaecker, 1868 and Parectyphus Hesse, 1972 with a key to world Ectyphinae (Insecta, Diptera, Mydidae). ZooKeys 73: 25-59. https://doi.org/10.3897/zookeys.73.840
Figures 39-44 - Photographs of Parectyphus namibiensis specimens. 39 + 42 Parectyphus namibiensis (♂ holotype, SMNS) 39 lateral (Morphbank) 42 head lateral (Morphbank); 40, 41, + 43 Parectyphus namibiensis (♂, AAM-003485, SAMC) 40 lateral (Morphbank) 41 dorsal (Morphbank) 43 head lateral (Morphbank) 44 Parectyphus namibiensis (♂, AAM-003606, NMNW, Morphbank). Scale lines = 5 mm.
Figure 45 from: Dikow T, Lyons K (2010) Taxonomic revision of Ectyphus Gerstaecker, 1868 and Parectyphus Hesse, 1972 with a key to world Ectyphinae (Insecta, Diptera, Mydidae). ZooKeys 73: 25-59. https://doi.org/10.3897/zookeys.73.840
Figure 45 - Map of southern Africa with biodiversity hotspots sensu Conservation International showing distribution of Ectyphus abdominalis (hexagon), Ectyphus armipes (triangle), Ectyphus capillatus (yellow star), Ectyphus pinguis (red circle), Ectyphus pretoriensis (black circle), and Parectyphus namibiensis (blue square). Type localities with open symbols.
Figures 11-19 from: Dikow T, Lyons K (2010) Taxonomic revision of Ectyphus Gerstaecker, 1868 and Parectyphus Hesse, 1972 with a key to world Ectyphinae (Insecta, Diptera, Mydidae). ZooKeys 73: 25-59. https://doi.org/10.3897/zookeys.73.840
Figures 11-19 - Male terminalia of Ectyphus species. 11–13. Ectyphus amboseli sp. n. 11 lateral 12 dorsal 13 ventral; 14–16 Ectyphus armipes 14 lateral 15 dorsal 16 ventral; 17–19 Ectyphus capillatus 17 lateral 18 dorsal 19 ventral. Scale lines = 1 mm.
Figures 35-38 from: Dikow T, Lyons K (2010) Taxonomic revision of Ectyphus Gerstaecker, 1868 and Parectyphus Hesse, 1972 with a key to world Ectyphinae (Insecta, Diptera, Mydidae). ZooKeys 73: 25-59. https://doi.org/10.3897/zookeys.73.840
Figures 35-38 - Photographs of Ectyphus pinguis specimens and wings of Ectyphus pinguis and Parectyphus namibiensis. 35 Ectyphus pinguis (♀ holotype Ectyphus bitaeniatus, NMSA, Morphbank) 36 Ectyphus pinguis (♀ holotype Ectyphus flavidorsalis, NMSA, Morphbank); Wings 37 Ectyphus pinguis (AAM-003463, NMSA, Morphbank) 38 Parectyphus namibiensis (AAM-003506, NMNW, Morphbank). Scale lines = 5 mm.
Figures 20-30 from: Dikow T, Lyons K (2010) Taxonomic revision of Ectyphus Gerstaecker, 1868 and Parectyphus Hesse, 1972 with a key to world Ectyphinae (Insecta, Diptera, Mydidae). ZooKeys 73: 25-59. https://doi.org/10.3897/zookeys.73.840
Figures 20-30 - Male terminalia and female genitalia of Ectyphus and Parectyphus species. Male terminalia: 20–22 Ectyphus pinguis 20 lateral 21 dorsal 22 ventral; 23–25 Ectyphus pretoriensis 23 lateral 24 dorsal 25 ventral; 26–28 Parectyphus namibiensis 26 lateral 27 dorsal 28 ventral; Female genitalia in dorsal view: 29 Ectyphus pinguis 30 Parectyphus namibiensis. Scale lines = 1 mm.
Figures 2-5 from: Dikow T, Lyons K (2010) Taxonomic revision of Ectyphus Gerstaecker, 1868 and Parectyphus Hesse, 1972 with a key to world Ectyphinae (Insecta, Diptera, Mydidae). ZooKeys 73: 25-59. https://doi.org/10.3897/zookeys.73.840
Figures 2-5 - Photographs of Ectyphus species. 2 Ectyphus abdominalis (♀ holotype, SAMC, Morphbank); 3–4 Ectyphus amboseli sp. n. (♂ holotype, AAM-000191, CAS) 3 dorsal (Morphbank) 4 lateral (Morphbank) 5 Ectyphus armipes (♂ holotype, SAMC, Morphbank). Scale lines = 5 mm.
Figures 31-34 from: Dikow T, Lyons K (2010) Taxonomic revision of Ectyphus Gerstaecker, 1868 and Parectyphus Hesse, 1972 with a key to world Ectyphinae (Insecta, Diptera, Mydidae). ZooKeys 73: 25-59. https://doi.org/10.3897/zookeys.73.840
Figures 31-34 - Photographs of Ectyphus pinguis specimens. 31 Ectyphus pinguis (♂, AAM-003496, AMGS, Morphbank) 32 Ectyphus pinguis (♂, AAM-003487, SAMC, Morphbank) 33 Ectyphus pinguis (♀, AAM-003509, SAMC, Morphbank) 34 Ectyphus pinguis (♂ holotype Ectyphus pinguis var. ceramiiformis, NMSA, Morphbank). Scale lines = 5 mm.
Figure 1 from: Dikow T, Lyons K (2010) Taxonomic revision of Ectyphus Gerstaecker, 1868 and Parectyphus Hesse, 1972 with a key to world Ectyphinae (Insecta, Diptera, Mydidae). ZooKeys 73: 25-59. https://doi.org/10.3897/zookeys.73.840
Figure 1 - Map of the Afrotropical Region with biodiversity hotspots sensu Conservation International showing distribution of Ectyphus (red circles) and Parectyphus (blue squares). Note the distribution of Ectyphus in south-eastern Kenya.
Figures 6-10 from: Dikow T, Lyons K (2010) Taxonomic revision of Ectyphus Gerstaecker, 1868 and Parectyphus Hesse, 1972 with a key to world Ectyphinae (Insecta, Diptera, Mydidae). ZooKeys 73: 25-59. https://doi.org/10.3897/zookeys.73.840
Figures 6-10 - Photographs of Ectyphus species. 6 Ectyphus armipes (♀ paratype, SAMC, Morphbank); 7–8 Ectyphus capillatus (♂, AAM-003502, AMGS) 7 dorsal (Morphbank) 8 lateral (Morphbank) 9 Ectyphus pretoriensis (♂ lectotype, SAMC, Morphbank) 10 Ectyphus pretoriensis (♀ paralectotype, SAMC, Morphbank). Scale lines = 5 mm.
Taraxacum palustre (Lyons) Symons (BR0000012160792)
Belgium Herbarium image of <a href="https://www.plantentuinmeise.be">Meise Botanic Garden</a>.
Taraxacum palustre (Lyons) Symons (BR0000012482054)
Belgium Herbarium image of <a href="https://www.plantentuinmeise.be">Meise Botanic Garden</a>.
Can an Educational Intervention Targeting General Practitioners Increase HPV Vaccination Coverage in AuRA_Lyon (France)
ClinicalTrials.gov study NCT03592225. IPD Sharing: YES. Countries: 1. Publications: 0.
Coupling the Rice Convection Model-Equilibrium to the Lyon– Fedder–Mobarry Global Magnetohydrodynamic Model
<p>Self-consistent inner-magnetosphere model is driven by inputs from the Lyon-Fedder- Mobarry global magnetohydrodynamic model.</p> <p>The expanded inner magnotospheric modeling region captures high-resolution bursty bulk flows in the plasma sheet.</p> <p>Realistic bursty bulk flows induced aurora patterns are simulated.</p> <p>This includes data and visualization methods that reproduce the figures in the manuscript. Please refer to README for details.</p> <p>Submitted to JGR for review. </p>
Le Rhône et la Saone, Lyon
Allégorie des deux cours d'eau de Lyon.  Au pied de la façade sud de la Chambre de commerce et d'industrie de Lyon (palais de la Bourse), une statue allégorique représente le Rhône et la Saône s'unissant et joignant leur bras pour pointer vers l'avenir. Le sculpteur lyonnais André Vermare élabora en 1905 ce bas-relief dans un marbre blanc. Source: Objaverse 1.0 / Sketchfab
Figure 8 from: Lyons J, Piller KR, Artigas-Azas JM, Dominguez-Dominguez O, Gesundheit P, Köck M, Medina-Nava M, Mercado-Silva N, García AR, Findley KM (2019) Distribution and current conservation status of the Mexican Goodeidae (Actinopterygii, Cyprinodontiformes). ZooKeys 885: 115-158. https://doi.org/10.3897/zookeys.885.38152
Figure 8 Distribution of the eight species of Allotoca.
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OpenNeuro
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