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411 results for “Democratic Republic of Congo”
Fig. 5. Cyrtonion ghanense Hansen, 1989 in A new species of the genus Cyrtonion (Coleoptera: Hydrophilidae: Megasternini) from the Democratic Republic of the Congo
Fig. 5. Cyrtonion ghanense Hansen, 1989, Ghana (Bobiri Forest Reserve), dorsal habitus (2.0 mm).
2014, Democratic Republic of the Congo Ebola epidemic data and knowledge
Information about the 2014, Democratic Republic of the Congo Ebola epidemic curated from multiple publications and reports. The information is represented in machine-interpretable Apollo-XSD format. The terminology is defined by the Apollo-SV ontology and standard identifiers.
2012, Orientale, Democratic Republic of the Congo Ebola epidemic data and knowledge
Information about the 2012, Orientale, Democratic Republic of the Congo Ebola epidemic curated from multiple publications and reports. The information is represented in machine-interpretable Apollo-XSD format. The terminology is defined by the Apollo-SV ontology and standard identifiers.
2008 - 2009, Kasai-Occidental, Democratic Republic of the Congo Ebola epidemic data and knowledge
Information about the 2008 - 2009, Kasai-Occidental, Democratic Republic of the Congo Ebola epidemic curated from multiple publications and reports. The information is represented in machine-interpretable Apollo-XSD format. The terminology is defined by the Apollo-SV ontology and standard identifiers.
2007, Kasai-Occidental, Democratic Republic of the Congo Ebola epidemic data and knowledge
Information about the 2007, Kasai-Occidental, Democratic Republic of the Congo Ebola epidemic curated from multiple publications and reports. The information is represented in machine-interpretable Apollo-XSD format. The terminology is defined by the Apollo-SV ontology and standard identifiers.
Agronomic response and profitability of applying fractional doses of NPK fertilizer on cassava (Manihot esculenta Crantz) in Beni and Lubero territory, Democratic Republic of the Congo
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Table 2 Cycle threshold obtained for the 6 in Investigation on possible transmission of monkeys' Plasmodium to human in a populations living in the equatorial rainforest of the Democratic republic of Congo
<p><b>Table 2</b> Cycle threshold obtained for the 6 plasmodium species.</p><table><tbody><tr><th></th><th>P. falciparum</th><th>P. malaria</th><th>P. ovale</th><th>P. vivax</th><th>P. vinckei</th><th><i>P. berghei</i></th></tr></tbody><tbody><tr><th>1st RT-PCR</th><td>16.98</td><td>26.01</td><td>26.08</td><td>30.15</td><td>15.18</td><td>20.33</td></tr><tr><th>2nd RT-PCR</th><td>18.07</td><td>26.69</td><td>26.66</td><td>30.48</td><td>No signal</td><td>No signal</td></tr></tbody></table>
Table 1 in Investigation on possible transmission of monkeys' Plasmodium to human in a populations living in the equatorial rainforest of the Democratic republic of Congo
<p><b>Table 1</b> Primers and probes sequences for the two RT-PCR.</p><table><tbody><tr><th>RT-PCR</th><th>Forward primer</th><th>Reverse primer</th><th>Probes</th></tr></tbody><tbody><tr><th><i>plasmodiums</i> <i>sp</i></th><td>5Į- GTTAAGGGAGTGAAGACGA TCAGA-3' (Plasmo1)</td><td>5Į- TTATGAGAAATCAAAGTCTTTGGGTT-3' (Plasmo2)</td><td>5Į- FAM-ACCGTCGTAA TCTTAACCAT AAACTATGCC GACTAG-TAMRA- 3' (plasprobe)</td></tr><tr><th><i>Pfal</i></th><td>5Į- CTAGGTGTTGGATG-3Į</td><td></td><td>5Į- FAM-AGCAATCTAAAAGTCACCTCGAAAGATGACT-DQ-3' (Falprobe)</td></tr><tr><th><i>Pova</i></th><td>5Į- CGACTAGGTTTTGGATG-3Į</td><td></td><td>5Į- VIC-CGAAAGGAATTTTCTTATT-DQ-3’ (Ovaprobe)</td></tr><tr><th><i>Pviv</i></th><td>5Į- GACTAGGCTTTGGATG-3Į</td><td></td><td>5Į- VIC-AGCAATCTAAGAATAAACTCCGAAGAGAAAATTCT-DQ-3' (Vivprobe)</td></tr><tr><th><i>Pmal</i></th><td>5Į- GACTAGGTGTTGGATG-3Į</td><td></td><td>5Į- FAM-CTATCTAAAAGAAACACTCAT-DQ-3’ (Malprobe)</td></tr></tbody></table>
Seroprevalence survey on infection with the SARS-CoV-2 virus after the second wave in Kinshasa, Democratic Republic of the Congo. 2021
<p>Results of population-based age stratified seroepidemiological investigation in the Democratic Republic of the Congo</p>
Dataset to study the population genomics of introduced Nile tilapia (Oreochromis niloticus (Linnaeus, 1758)) in the Democratic Republic of the Congo: repeated introductions since colonial times with multiple sources
<p>During colonial times, Nile tilapia <em>Oreochromis niloticus</em> (Linnaeus, 1758) was introduced in non-native parts of the Congo Basin (Democratic Republic of the Congo, DRC) for the first time. Currently, it is the most farmed cichlid in the DRC, and is present throughout the Congo Basin. Although Nile tilapia has been reported as an invasive species, documentation of historical introductions into this basin and its consequences are scant. Here, we study the genetic consequences of these introductions by genotyping 213 Nile tilapia from native and introduced regions, focussing on the Congo Basin. Additionally, 48 specimens from 16 other tilapia species were included to test for hybridisation. Using RAD sequencing (27 611 SNPs), we discovered genetic admixture with other tilapia species in several morphologically identified Nile tilapia from the Congo Basin, stressing their ability to interbreed and the potential threat they cause to the genetic integrity of native tilapias. Populations from the Upper Congo and those from the Middle-Lower Congo are strongly differentiated. The former show genetic similarity with Nile tilapia from the White Nile, while specimens from the Benue Basin and Lake Kariba are similar to Nile tilapia from the Middle-Lower Congo, suggesting independent introductions using different sources. We conclude that the presence of Nile tilapia in the Congo Basin results from independent introductions, reflecting the dynamic aquaculture history, and that their introduction probably leads to genetic interactions with native tilapias, which could lower their fitness. We therefore urge to avoid introductions of Nile tilapia in non-native regions and to use native tilapias in future aquaculture efforts.</p>
Fig. 2 in Keetia namoyae (Rubiaceae, Vanguerieae), a new species from eastern Democratic Republic of Congo
Fig. 2. – Distribution map of Keetia namoyae O. Lachenaud & Q. Luke (white square).
Full inventory of ten permanent plots installed in pockets of different tree functional types along the Moni River transects (Yangambi, Democratic Republic of Congo)
<p>Most of the tropical forests of Central Africa are characterised by a remarkable abundance of light-demanding canopy species. A popular hypothesis is that these forests are still recovering from the intense slash-and-burn farming activities that ended abruptly in the 19th century with the arrival of the colonists. Today, it is assumed that the zones occupied by crop fields until the 19th century are covered by forests dominated by light-demanding species. However, this hypothesis of human disturbance has not yet been sufficiently tested using spatial distribution. So, using the 'Kernel Density Estimation' (KDE) tool in the SAGA GIS software, we mapped the density distribution of light-demanding species, subdivided into 3 tree functional types, along transects in the Moni river catchment. We also produced a similar map for a particular shade-tolerant species, 'Gilbertiodendron dewevrei'. The species were then divided into the following groups, known as 'functional tree types': LLP=Long-Lived Pioneer, NPLD=Non-Pioneer Light Demanding, SLP=Short-Lived Pioneer, and STS=Shade-Tolerant Species. At the end of this analysis, a density distribution map of the species of each tree functional type was produced. This map highlights the pockets (zones with a high density relative to the study site average) of tree functional types. For each type of pocket, we selected the pockets with a high density of trees of the group concerned and which were not on the edge between the forest and village crops or fallow land. This is how the location of the permanent plots was determined. Next, we installed a total of ten full forest inventory plots (1 ha each) inside and outside the pockets located by the KDE analysis along the Moni River transects. More specifically, we installed one plot in a pocket of short-lived pioneers (SLP-01), three plots in pockets of long-lived pioneers (LLP-01 to -03), two plots in pockets of NPLD (NPLD-01 and -02), two plots in pockets of the shade-tolerant species Gilbertiodendron dewevrei (GIL-01 and -02) and finally two plots were located in a mixed old-growth forest outside the pockets (MIX-01 and -02). These plots were established (1) for long-term monitoring of biodiversity and forest dynamics; and (2) to see if there is a difference in terms of species composition and abundance of light demanders between the forest inside the pockets and that outside the pockets.</p>
Figure 7 in Strigocossus ralffiebigi sp. nov. (Lepidoptera: Cossidae: Zeuzerinae) from Democratic Republic of the Congo and Republic of Uganda
Figure 7. Distributional map of Strigocossus ralffiebigi Yakovlev sp. nov.
Figure 6 in Strigocossus ralffiebigi sp. nov. (Lepidoptera: Cossidae: Zeuzerinae) from Democratic Republic of the Congo and Republic of Uganda
Figure 6. Type locality (photo by R. Fiebig).
Figs 24 in Afromenotes hirsuta, a new genus and species of Eumenotini from the Democratic Republic of the Congo (Hemiptera: Heteroptera: Dinidoridae)
Figs 24í26. External genitalia: 24–25 – Afromenotes hirsuta gen.
Spatial patterns of light-demanding tree species in the Yangambi rainforest (Democratic Republic of Congo)
<p>We are studying the factors of spatial distribution of light-demanding tree species in an undisturbed natural forest to contribute to the elucidation of the enigma of the persistence of light-demanding tree species in the canopy of the Congo Basin rainforests. Our objective was to analyze the current spatial distribution combined with the spatial autocorrelation of light-demanding stems species and to carry out a Canonical Correspondence Analysis (CCA) to discuss the role that different factors may have played in determining the observed spatial pattern. These species were subdivided into three regeneration guilds, based on their growth speed and longevity: short-lived pioneer (SLP), long-lived pioneer (LLP), and non-pioneer light-demanding (NPLD) species. We also compared the distribution of these species to that of <i>Gilbertiodendron</i> <i>dewevrei</i>, a typical extremely aggregative and locally hyperdominant shade-tolerant species. For this purpose, we carried out a selective inventory of all stems (at least 10 cm DBH) of light-demanding species in the forest around the Moni River, an area rich in individuals of light-demanding species. This inventory was carried out along eight transects equidistant by 450 m. The total length of these transects was 50.125 km (an area of 250.625 ha). The sampling units consisted of contiguous plots (200 m x 50 m) centered on the transect (long side parallel to the transect). Each plot was divided into 8 sub-plots of 25 m x 50 m. The parameters directly measured in the field were diameter at breast height (DBH), wetland indicators, topography, and slope. The last three parameters were measured in each sub-plot. The wetland indicators were spring, stream (stream 1 to about 3 m wide that can be forded), river (stream more than 3 m wide and that cannot be forded), temporary or periodically flooded swamp, permanent swamp, and absence of wetland. The modalities of the topography parameter were ridge, plateau, slope break, upward slope, downward slope, and lowland. The slope was measured using the SUUNTO clinometer. The longitude and latitude were deduced from the Cartesian coordinates (X and Y) of each tree, which were measured directly during the inventory. The altitude and distance from the nearest watercourse were deduced from the Geographic Information System (GIS). The altitude was derived from the digital terrain model of the Yangambi region, while the distance to the nearest watercourse was derived from a distance to watercourses map of the Yangambi region.</p>
Supporting Data and Guidance: Modeling policy pathways to maximize renewable energy growth and investment in Democratic Republic of the Congo using OSeMOSYS
<p>This repository contains data files and guidance documents that are supplementary materials to accompany the policy paper "Modeling policy pathways to maximize renewable energy growth and investment in Democratic Republic of the Congo using OSeMOSYS" available on Research Square here: <a href="https://www.researchsquare.com/article/rs-2702275/v1">https://www.researchsquare.com/article/rs-2702275/v1</a></p>
A Family-based, Resilience-focused Intervention for War-affected Communities in North-eastern Democratic Republic of Congo
ClinicalTrials.gov study NCT01542398. IPD Sharing: Not stated. Countries: 1. Publications: 1.
Caregiver Training to Prevent Konzo Disease in Children in Democratic Republic of Congo (DRC)
ClinicalTrials.gov study NCT04036708. IPD Sharing: NO. Countries: 1. Publications: 4.
Data from: Impact of treatment and re-treatment with Artemether-Lumefantrine and Artesunate-Amodiaquine on selection of Plasmodium falciparum Multidrug Resistance Gene-1 polymorphisms in the Democratic Republic of Congo and Uganda
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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.