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Appendix A. Supplementary material for: Water-like thermal conductivity of ionanofluids containing high aspect ratio multi-walled carbon nanotubes and 1-ethyl-3-methylimidazolium-based ionic liquids with cyano-functionalized anions
<p><span>Experimental data in numerical form for INFs composed of CNTs and [Emim]-based ILs with cyano-functionalized anions: density (Table S1), viscosity (Tables S2–S5), thermal conductivity (Tables S6, S7), and ANOVA analysis (Table S8).</span></p>
Figure 8 in Efficacy of a topical formulation containing esafoxolaner, eprinomectin and praziquantel (NexGard Combo ) against natural infestations with the cat louse, Felicola subrostratus under field conditions
Figure 8. Average score for clinical signs associated with lice in cats from Group 1 (NexGard Combo®).
Figure 9 in Efficacy of a topical formulation containing esafoxolaner, eprinomectin and praziquantel (NexGard Combo ) against natural infestations with the cat louse, Felicola subrostratus under field conditions
Figure 9. Average score for clinical signs associated with lice in cats from Group 2 (Frontline Combo®).
Figure 3 in Efficacy of a topical formulation containing esafoxolaner, eprinomectin and praziquantel (NexGard Combo ) against natural infestations with the cat louse, Felicola subrostratus under field conditions
Figure 3. Number of cats according to the clinical score for pruritus in Group 2 (Frontline Combo®).
Figure 5 in Efficacy of a topical formulation containing esafoxolaner, eprinomectin and praziquantel (NexGard Combo ) against natural infestations with the cat louse, Felicola subrostratus under field conditions
Figure 5. Number of cats according to the clinical score for hair loss in Group 2 (Frontline Combo®).
Figure 1 in Efficacy of a topical formulation containing esafoxolaner, eprinomectin and praziquantel (NexGard Combo ) against natural infestations with the cat louse, Felicola subrostratus under field conditions
Figure 1. Infestation with Felicola subrostratus in domestic cats. (a) Note the adult louse; (b) presence of adult louse and nits.
FIGURE 3. A plaster and burlap cradle containing MOR 1184 in Non-traditional applications of fire in fossil preparation
FIGURE 3. A plaster and burlap cradle containing MOR 1184 being burned away from the entrapped fossil.
Figs. 1–5 in Canoparmelia pustulifera, a new species of Parmeliaceae containing perlatolic acid from Southern Brazil
Figs. 1–5. Holotype of Canoparmelia pustulifera. 1. Thallus; 2. Detail of the distal lobes with maculae and lack of cilia; 3. Detail of the pustule disposition on the lobes; 4. Detail of the black lower cortex and narrow brown marginal zone; 5. Detail of pustules, partially eroding into soredia. Scale bars: Figs. 1-4 = 1cm; Fig. 5 = 1 mm.
Figure 3. Phylogenetic relationships and intra specific recombination patterns among different AlYVV molecules. The maximumlikelihood phylogenetic tree contains 27 in Alternanthera yellow vein virus (AYVV); a betasatellite independent begomovirus infecting Sonchus palustris in Pakistan
Figure 3. Phylogenetic relationships and intra specific recombination patterns among different AlYVV molecules. The maximumlikelihood phylogenetic tree contains 27 known complete genomes of AlYVV from databank and two complete genomes determined in this study (indicated in black boxes). The tree was rooted on ToLCNDV (AB613826) as an out-group. The schematic representation of recombination events detected by RDP4. Arrows and blocks at the bottom correspond respectively to open reading frames (ORFs) and intergenic regions: pre-coat protein (AV2), coat protein (CP), replication-associated proteins (Rep and REn), transcriptional protein (TrAP), and AC4 region. AlYVV from different countries were colored differently. The colors of blocks represent the different ALYVV species and strains. Numbers at nodes indicate bootstrap confidence scores (1000 replicates).
Fig. 2 Phylogenetic tree representing relationships within Discodorididae. The latter contains about 400 species and 40 in A warning for ecologists and conservation biologists using species checklists: How the European marine fauna 'lost' all of its 16 Discodoris species (Mollusca: Gastropoda)
Fig. 2 Phylogenetic tree representing relationships within Discodorididae. The latter contains about 400 species and 40 genera, only some of which are mentioned here, with special emphasis on the genera that contain species originally described in Discodoris. Tree terminal taxa are labeled with the specific epithet followed by the generic name of the original combination in parenthesis. The current generic names are given on the right side of the braces indicating the (few) species per genus mentioned. Assignment of a generic name to a clade is based on a type species that belongs to that clade (e.g., Discodoris boholiensis is the type species of Discodoris). All genera correspond to clades, with the exception of "Montereina", a metaphyletic group at the base of Discodorididae for which no autapomorphic, diagnostic features could be found. For additional information on phylogenetic analyses, authorship of species names, etc., see Dayrat (2010a)
Fig. 11 in Area freedom in Mexico from Mediterranean fruit fly (Diptera: Tephritidae): a review of over 30 years of a successful containment program using an integrated area-wide SIT approach
Fig. 11. Average monthly temperatures (0C) and monthly rainfall totals (mm) in the region of Marques de Comillas, Chiapas, Mexico, for the years 2011, 2012 and 2013.
Fig. 4 in Area freedom in Mexico from Mediterranean fruit fly (Diptera: Tephritidae): a review of over 30 years of a successful containment program using an integrated area-wide SIT approach
Fig. 4. Number of Mediterranean fruit fly transient entries (detections and outbreaks) in the Mexican States of Chiapas and Tabasco during 1982 - 2013.
Fig. 8 in Area freedom in Mexico from Mediterranean fruit fly (Diptera: Tephritidae): a review of over 30 years of a successful containment program using an integrated area-wide SIT approach
Fig. 8. Relationship between the distance of the leading edge of the medfly infestation in Guatemala and the number of medfly transient entries (detections and outbreaks) into the PFA of Soconusco, Chiapas, for the Southwest–Soconusco (SW) Front for years the 2004-2013.
Fig. 12 in Area freedom in Mexico from Mediterranean fruit fly (Diptera: Tephritidae): a review of over 30 years of a successful containment program using an integrated area-wide SIT approach
Fig. 12. Number of potential generations of the Mediterranean fruit fly in the Marques de Comillas pest free area (PFA) estimated for the periods Jun to Oct and Nov to May for the years 2011-2013 based on the Tassan degree-day model (Tassan et al. 1982).
Fig. 10 in Area freedom in Mexico from Mediterranean fruit fly (Diptera: Tephritidae): a review of over 30 years of a successful containment program using an integrated area-wide SIT approach
Fig. 10. Number of fruit samples collected during 2012 and 2013 in the Marques de Comillas PFA in Chiapas, Mexico, reflecting availability of Mediterranean fruit fly hosts and fruit phenology in this region.
Fig. 6 in Area freedom in Mexico from Mediterranean fruit fly (Diptera: Tephritidae): a review of over 30 years of a successful containment program using an integrated area-wide SIT approach
Fig. 6. Mediterranean fruit fly average FTD (flies per trap per day) index in the Mexican States of Chiapas and Tabasco from 2004 to 2013.
Fig. 9 in Area freedom in Mexico from Mediterranean fruit fly (Diptera: Tephritidae): a review of over 30 years of a successful containment program using an integrated area-wide SIT approach
Fig. 9. Numbers of Mediterranean fruit fly transient entries (detections and outbreaks) per month during the years 2011-2013 into the PFA of Marques de Comillas, Chiapas, for the North Transversal Strip–Marques de Comillas (NTS) front.
Fig. 2 in Area freedom in Mexico from Mediterranean fruit fly (Diptera: Tephritidae): a review of over 30 years of a successful containment program using an integrated area-wide SIT approach
Fig. 2. Mediterranean fruit fly pest free areas (PFAs) in Chiapas, Tabasco, Guatemala and Belize, as well as the location of the current containment barrier, infestation fronts and leading edge of the infestation within Guatemala. The white areas to the southwest and southeast represent the Pacific Ocean and the Caribbean Sea, respectively.
Fig. 5 in Area freedom in Mexico from Mediterranean fruit fly (Diptera: Tephritidae): a review of over 30 years of a successful containment program using an integrated area-wide SIT approach
Fig. 5. Location and percentage of Mediterranean fruit fly transient entries into Mexico during 1982-2013.
Fig. 7 in Area freedom in Mexico from Mediterranean fruit fly (Diptera: Tephritidae): a review of over 30 years of a successful containment program using an integrated area-wide SIT approach
Fig. 7. Mediterranean fruit fly fluctuation (based on routine trapping) within suppression areas in Guatemala associated with El Niño/Southern Oscillation weather events and the population suppression effects of Hurricane Stan and Hurricane Agatha.
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.