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755 results for “Amsterdam”
Assessing Urban Green Space Accessibility in Amsterdam
<p>This is dataset is an ArcGIS Pro project was used to calculate walking distance from buildings to Urban Green Spaces (UGS) within the municipality of Amsterdam. This was made as part of an MSc Earth Sciences thesis aimed at assessing UGS and heat exposure in Amsterdam. The thesis is based on the idea that UGS function as cool spaces within the urban heat island of the city, and thus provides lower temperatures to urban residents, specifically during hot summer months, therefore reducing the risk of heat stress and heat-related illnesses and morbidity.</p>
Noise pollution as a major disturbance of avian predation in Amsterdam
Open the record for dataset details and reuse information.
Crowdsourcing public perceptions of urban green space quality: A case study of Rembrandt park in Amsterdam
<p><strong><em>City-dwellers are realizing the benefits of green spaces and are flocking to urban parks. City planners face the challenge of ensuring that urban green spaces are functional for all citizens. To make informed choices they need the right information and that is where the Mijn Park app can help. </em></strong></p> <p>Research shows that when considering the social functions of urban green spaces, quality is just as important as quantity. It is easy enough to map how much green spaces there are, but how do we measure their quality? How do city planners ensure that the city’s green areas are attractive, accessible and inclusive – for everyone? The Vrije Universiteit Amsterdam in collaboration with the International Institute for Applied Systems Analysis developed Mijn Park, a mobile application that will help city planners do just that. As part of the LandSense Citizen Observatory, the ‘Mijn Park’ (My Park) app asks respondents to go to several locations in a park and give subjective responses to those locations. They are then further questioned about how they use the whole park and how much they would like to see certain changes made in the park. This information provides information that can help to inform decisions about any renovations or improvements to the park.</p> <p>A pilot campaign was conducted in the summer of 2018 in Rembrandt park in Amsterdam and insights from the citizen-driven observations were shared with the Department of Planning and Sustainability of Amsterdam.</p> <p>This dataset includes responses and photographs collected by 129 unique volunteers providing 377 observations in select locations across Rembrandt Park. The following files are available:</p> <ul> <li>_Preview MijnPark-Amsterdam-LandSense.png</li> <li>Attributes-MijnPark-Amsterdam-LandSense.csv</li> <li>MijnPark-Amsterdam-LandSense.csv</li> <li>MijnPark-Amsterdam-LandSense.geoJSON</li> <li>README.txt</li> </ul> <p> </p> <p>This dataset is licensed under a Creative Commons Attribution 4.0 International. It is attributed to the <a href="https://landsense.eu/">LandSense Citizen Observatory</a>, <a href="https://www.vu.nl/">Vrije Universiteit</a> (VU), Amsterdam and the <a href="https://iiasa.ac.at/">International Institute for Applied Systems Analysis</a> (IIASA).</p> <p>This project has received funding from the European Union’s Horizon 2020 research and innovation programme under grant agreement no 689812.</p>
Data from: Low prevalence of methicillin-resistant Staphylococcus aureus among men who have sex with men attending an STI clinic in Amsterdam, a cross-sectional study
Objective: Community-associated methicillin-resistant Staphylococcus aureus (CA-MRSA) is common among men who have sex with men (MSM) in the USA. It is unknown whether this is also the case in Amsterdam, the Netherlands. Design: Cross-sectional study. Setting: Sexually transmitted infection outpatient low- threshold clinic, Amsterdam, the Netherlands. Participants: Between October 2008 and April 2010, a total of 211 men were included, in two groups: (1) 74 MSM with clinical signs of a skin or soft tissue infection (symptomatic group) and (2) 137 MSM without clinical signs of such infections (asymptomatic group). Primary outcome measures: S aureus and MRSA infection and/or colonisation. Swabs were collected from the anterior nasal cavity, throat, perineum, penile glans and, if present, from infected skin lesions. Culture for S aureus was carried out on blood agar plates and for MRSA on selective chromagar plates after enrichment in broth. If MRSA was found, the spa- gene was sequenced. Secondary outcome measures: Associated demographic characteristics, medical history, risk factors for colonisation with S aureus and high-risk sexual behaviour were collected through a self- completed questionnaire. Results: The prevalence of S aureus colonisation in the nares was 37%, the pharynx 11%, the perianal region 12%, the glans penis 10% and in skin lesions 40%. In multivariable analysis adjusting for age, anogenital S aureus colonisation was significantly associated with the symptomatic group (p=0.01) and marginally with HIV ( p=0.06). MRSA was diagnosed in two cases: prevalence 0.9% (95% CI 0.1% to 3.4%)). Neither had CA-MRSA strains. Conclusions: CA-MRSA among MSM in Amsterdam is rare. Genital colonisation of S aureus is not associated with high-risk sexual behaviour.
FIGURES 1–8. 1–2 in New records of West Palaearctic Limoniidae, Pediciidae and Cylindrotomidae (Diptera) from the collections of the Zoological Museum, Amsterdam
FIGURES 1–8. 1–2, Male terminalia, aedeagal complex, lateral. 1. Gonomyia (Gonomyia) tenella. 2. G. (G.) subtenella. 3–5, Male terminalia, gonostyli, dorsal. 3. Euphylidorea crocotula. 4. E. lineola. 5. E. dispar. 6–8, Male terminalia, aedeagal complex, dorsal. 6. E. crocotula. 7. E. lineola. 8. E. dispar.
Amsterdam Accessibility Data
<p>Accessibility dataset as geopackage. CRS for geometry column is 'EPSG:28992'.</p>
FIGURE 13 in Biogeography and taxonomy of Ophiuroidea (Echinodermata) from the Îles Saint- Paul and Amsterdam in the southern Indian Ocean
FIGURE 13. (A–B) Ophiomyxa vivipara, MNHN IE.2009.1606, A: dorsal and B: ventral views. (C–D) Ophiactis abyssicola, MNHN IE.2009.1582, C: dorsal and D: ventral views. (E–I) Amphiura remota sp. nov., holotype, MNHN IE.2019.4748, E: dorsal outline, F: dorsal, G: ventral views, with H: an inset showing the denticulate disc scales. (I-J) MNHN IE.2009.1537 (non type), I: ventral view of four-rayed specimen, J: inset showing the lateral thorn at the arm spine tip.
FIGURE 12 in Biogeography and taxonomy of Ophiuroidea (Echinodermata) from the Îles Saint- Paul and Amsterdam in the southern Indian Ocean
FIGURE 12. (A–S) Ophiocomina arnaudi sp. nov., paratype, MNHN IE.2009.1599. A–B: proximal lateral arm plate in external (A) and internal (B) views. C: distal lateral arm plate in external view. D: detail of spine articulations. E: arm spine. F–J: proximal vertebra in distal (F), proximal (G), lateral (H), dorsal (I) and ventral (J) views. K: dorsal arm plate. L: ventral arm plate. M: oral plate. N–O: teeth. P: dental plate. Q: abradial genital plate. R: adradial genital plate. S: radial shield. Abbreviations: AdMF = adradial muscle fossa; di = distal; DL = dorsal lobe; do = dorsal; MO = muscle opening; NO = nerve opening; P = perforation; R = vertebral articular ridge; TN = tentacle notch; VL = ventral lobe; ZC = zygocondyles; ZS = zygosphene.
FIGURE 11 in Biogeography and taxonomy of Ophiuroidea (Echinodermata) from the Îles Saint- Paul and Amsterdam in the southern Indian Ocean
FIGURE 11. (A–E) Ophiocomina arnaudi sp. nov., holotype, MNHN IE.2019.4747, A: dorsal outline, B: dorsal view, C: ventral view; D: inset of marginal disc granules, E: inset of central disc granules. (F) Ophiocomina arnaudi sp. nov., paratype, MNHN IE.2009.1599, lateral view of two jaws. Abbreviations: T=tooth, TPa=tooth papillae, IPa=infradental papillae, LOPa=lateral oral papillae, AdShSp=adoral shield spine.
FIGURE 10 in Biogeography and taxonomy of Ophiuroidea (Echinodermata) from the Îles Saint- Paul and Amsterdam in the southern Indian Ocean
FIGURE 10. (A–P) Ophiolebes paulensis sp. nov., paratype, MNHN IE.2009.1567. A–B: proximal lateral arm plate in external (A) and internal (B) views. C: detail of spine articulations. D: arm spine. E–I: proximal vertebra in distal (E), proximal (F), lateral (G), dorsal (H) and ventral (I) views. J: ventral arm plate. K: dental plate. L: oral plate split in proximal and distal halves. M: disc spine. N: abradial genital plate. O: adradial genital plate. P: radial shield. Abbreviations: AdMF = adradial muscle fossa; di = distal; DL = dorsal lobe; do = dorsal; MO = muscle opening; NO = nerve opening; P = perforation; R = vertebral articular ridge; TN = tentacle notch; VL = ventral lobe; ZC = zygocondyles.
FIGURE 9 in Biogeography and taxonomy of Ophiuroidea (Echinodermata) from the Îles Saint- Paul and Amsterdam in the southern Indian Ocean
FIGURE 9. Ophiolebes paulensis sp. nov., holotype, MNHN IE.2009.1566, A: dorsal and B: ventral views, C: inset showing hook-shaped distal arm spines.
FIGURE 7 in Biogeography and taxonomy of Ophiuroidea (Echinodermata) from the Îles Saint- Paul and Amsterdam in the southern Indian Ocean
FIGURE 7. (A–B) Ophiosemnotes conferta, MNHN IE.2009.1574, A: dorsal and B: ventral views. (C–G) Ophiolebes felli sp. nov., holotype, MNHN IE.2019.4746, C: dorsal outline on black coral, D: dorsal, E: ventral view, F: proximal arm, G: arm tip. (H–I) paratype, MNHN IE.2009.1599, H: dorsal and I: ventral views.
FIGURE 4 in Biogeography and taxonomy of Ophiuroidea (Echinodermata) from the Îles Saint- Paul and Amsterdam in the southern Indian Ocean
FIGURE 4. (A–B) Anthophiura ingolfi, MNHN IE.2009.1609, A: dorsal and B: ventral views. (C–D) Amphiophiura sp., juvenile, MNHN IE.2009.1615, C: dorsal and D: ventral views. (E) Ophiomyces sp., juvenile, MNHN IE.2009.1577, lateral view. (F–H) Ophiophrura tripapillata, MNHN IE.2009.1573, F: dorsal view, G: ventral view and H: lateral arm view.
FIGURE 14 in Biogeography and taxonomy of Ophiuroidea (Echinodermata) from the Îles Saint- Paul and Amsterdam in the southern Indian Ocean
FIGURE 14. (A–Q) Amphiura remota sp. nov., paratype, MNHN IE.2009.1557. A: proximal lateral arm plate in external view. B–C: median lateral arm plate in external (B) and internal (C) views. D: detail of spine articulations. E: arm spine. F–J: proximal vertebra in distal (F), proximal (G), lateral (H), dorsal (I) and ventral (J) views. K: dorsal arm plate. L: ventral arm plate. M: oral plate. N: dental plate. O: abradial genital plate. P: adradial genital plate. Q: radial shield. Abbreviations: AdMF = adradial muscle fossa; di = distal; DL = dorsal lobe; do = dorsal; K = knob; MO = muscle opening; NO = nerve opening; P = perforation; VL = ventral lobe; ZC = zygocondyles; ZS = zygosphene.
FIGURE 2 in Biogeography and taxonomy of Ophiuroidea (Echinodermata) from the Îles Saint- Paul and Amsterdam in the southern Indian Ocean
FIGURE 2. Map of the SPA territories showing the locations of major sampling sites. Bathymetry is from GEBCO (2019).
FIGURE 8 in Biogeography and taxonomy of Ophiuroidea (Echinodermata) from the Îles Saint- Paul and Amsterdam in the southern Indian Ocean
FIGURE 8. (A–S) Ophiolebes felli sp. nov. paratype, IE.2009.1569. A–B: proximal lateral arm plate in external (A) and internal (B) views. C: detail of spine articulations. D–E: arm spines. F: tentacle scale. G–K: proximal vertebra in distal (G), proximal (H), lateral (I), dorsal (J) and ventral (K) views. L: disc granule. M: ventral arm plate. N: dorsal arm plate. O: oral plate split in proximal and distal halves. P: dental plate. Q: abradial genital plate. R: adradial genital plate. S: radial shield. Abbreviations: AdMF = adradial muscle fossa; di = distal; DL = dorsal lobe; do = dorsal; MO = muscle opening; NO = nerve opening; R = vertebral articular ridge; TN = tentacle notch; VL = ventral lobe; ZC = zygocondyles.
FIGURE 1 in Biogeography and taxonomy of Ophiuroidea (Echinodermata) from the Îles Saint- Paul and Amsterdam in the southern Indian Ocean
FIGURE 1. Map of the southern Indian Ocean showing the location of major features and a simplified schematic of major currents (red = Indian Ocean Gyre, blue = Southern Ocean current, pink=other currents). AB=Atlantis Bank, AC=Agulhas Current, BC=Benguela Current, DP=Dead Poets Seamounts, FC=Flinders Current, ITF=Indonesian Through Flow, LP=La Perouse Seamount, LC=Leeuwin Current, MB=Melville Bank, SEC=South Equatorial Current, SIC=South Indian Current, WAC=Western Australian Current, WS=Walter Shoals.
FIGURE 6 in Biogeography and taxonomy of Ophiuroidea (Echinodermata) from the Îles Saint- Paul and Amsterdam in the southern Indian Ocean
FIGURE 6. (A) Ophiacantha veterna, MNHN IE.2009.1562, dorsal outline. (B) MNHN IE.2009.1563, ventral view. (C–E) Ophiosabine cuspidata, MNHN IE.2009.1558, C: dorsal outline, D: dorsal view, E: ventral view. (F) Ophiotreta spectabilis, MNHN IE.2009.1564, dorsal view. (G–H) Ophiolimna bairdi, MNHN IE.2009.1571, G: dorsal and H: ventral views.
FIGURE 5 in Biogeography and taxonomy of Ophiuroidea (Echinodermata) from the Îles Saint- Paul and Amsterdam in the southern Indian Ocean
FIGURE 5. (A–D) Ophiomusa lymani, MNHN IE.2009.1617, A: dorsal outline, B: dorsal view, C: lateral arm view, D: ventral view. (E–G) Ophiomusa lymani, juvenile, MNHN IE.2009.1616, E: dorsal outline, F: dorsal, G: ventral views. (H–I) Perlophiura profundissima, MNHN IE.2009.1624, H: dorsal and I: ventral views.
FIGURE 3 in Biogeography and taxonomy of Ophiuroidea (Echinodermata) from the Îles Saint- Paul and Amsterdam in the southern Indian Ocean
FIGURE 3. (A–B) Ophiura ljungmani, MNHN IE.2009.1623, A: dorsal and B: ventral views. (C–E) Ophiura cf. trimeni, MNHN IE.2009.1620, C: dorsal outline, D: dorsal and E: ventral views. (F–H) Ophioplinthus sp., juvenile, MNHN IE.2009.1619, F: dorsal outline, G: dorsal and H: ventral views.
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Allen Brain Atlas
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International Brain Laboratory public data
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OpenNeuro
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