Find research datasets worth reusing
Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.
31
datasets available to search
ShareScore release 0.9.0
Dataset results
31 results for “Hypothenemus hampei”
Figure 1 in Evaluation of Plastic Shipping Bags for Hypothenemus hampei (Ferrari) (Coleoptera: Curculionidae) Containment
Figure 1. Diagram of Hypothenemus hampei (Ferrari) shipping bag observation arenas used in this experiment. Arenas were constructed of lidded 3.78 L (1-gal) glass jars with drying treated coffee in one of nine bag treatments suspended from the top by a hot-glued string tether to allow escaping (left) or not escaping (right) H. hampei observation in the bottom of the jar.
Fig. 1. A in Monitoring coffee berry borer, Hypothenemus hampei (Coleoptera: Curculionidae), populations with alcoholbaited funnel traps in coffee farms in Colombia
Fig. 1. A red funnel trap used to capture CBB (Hypothenemus hampei) (A) and the methanol–ethanol lure (3: 1 ratio) enclosed in a semi-permeable membrane (B). CBB were collected in a plastic container containing 200 mL of soapy water. Photo Alex. E. Bustillo.
Fig. 2 in Monitoring coffee berry borer, Hypothenemus hampei (Coleoptera: Curculionidae), populations with alcoholbaited funnel traps in coffee farms in Colombia
Fig. 2. Number of CBB (Hypothenemus hampei) captured per trap per month (mean ± SEM) and corresponding berry infestation (%) on large coffee farms (≥ 20 ha) in Risaralda, Caldas, Colombia (A), and on small coffee farms (≤ 3 ha) in Viterbo, Caldas, Colombia (B) in 2003-2004. Note differences in axis scales.
Figure 5 in First Record of the Coffee Berry Borer, Hypothenemus hampei (Ferrari, 1867), on the Hawaiian Island of Lanai (Coleoptera: Curculionidae: Scolytinae)
Figure 5. Map indicating the approximate locations (black stars) of the four CBB sampling sites on the island of Lanai. Inset: Position of Lanai (in black) within the Hawaiian Islands archipelago.
Figure 3 in First Record of the Coffee Berry Borer, Hypothenemus hampei (Ferrari, 1867), on the Hawaiian Island of Lanai (Coleoptera: Curculionidae: Scolytinae)
Figure 3. Lindgren funnel trap deployed in dryland forest at The Nature Conservancy Kanepuu Preserve, July 2020. Photograph by C.P.D.T. Gillett.
Figure 1 in First Record of the Coffee Berry Borer, Hypothenemus hampei (Ferrari, 1867), on the Hawaiian Island of Lanai (Coleoptera: Curculionidae: Scolytinae)
Figure 1. Dorsal and lateral views of an adult female specimen of Hypothenemus hampei (Ferrari, 1867), the coffee berry borer, from Munro Trail, Lanai. Length of specimen: 1.6 mm. Photograph by C.P.D.T. Gillett.
Figure 2 in First Record of the Coffee Berry Borer, Hypothenemus hampei (Ferrari, 1867), on the Hawaiian Island of Lanai (Coleoptera: Curculionidae: Scolytinae)
Figure 2. Lindgren funnel trap deployed on the native plant Freycinetia arborea in mesic / "cloud" forest alongside Munro Trail on Lanaihale, Lanai, July 2020. Photograph by C.P.D.T. Gillett.
Figura 1 in Un nuevo sistema de monitoreo para la broca del café Hypothenemus hampei Ferrari, 1837 (Coleoptera: Curculionidae: Scolytinae) en México
Figura 1. Acumulado mensual de capturas de H. hampei en los 24 muestreos realizados, con seis tratamientos evaluados y 10 repeticiones. / Accumulated monthly captures of H. hampei in the 24 tests carried out, with six evaluated treatments and 10 repetitions.
Figura 1 in Manejo de la broca del café, Hypothenemus hampei (Ferrari, 1867) (Coleoptera: Curculionidae: Scolytinae), con atrayentes etanólicos en cultivos de café de Coatepec, Veracruz, México
Figura 1. Trampas con atrayente para capturar adultos de H. hampei en plantas de café. / Handmade traps with attractants to capture H. hampei adults in coffee plants.
Fig. 3 in Biological responses of Hypothenemus hampei (Coleoptera: Curculionidae) on Cenibroca artificial diet at different moisture content levels and relative humidities
Fig. 3. Coffee berry borer external feeding and reproduction behavior on Cenibroca artificial diet with 60% moisture content at 75% relative humidity. Notice how the external reproduction offers a simple separation of the coffee berry borer immature and adults from the diet for coffee berry borer parasitoid production. (A) Diet pellet 10 to 15 d afer infestation showing external feeding and development of first-generation offspring, arrows showing eggs of first generation. (B) Diet pellet 25 to 30 d afer infestation showing external feeding and development of first-generation offspring. Stages suitable for the African ectoparasitoids (Cephalonomia stephanoderis and Prorops nasuta) reproduction. (C) Diet pellet 35 to 40 d afer infestation showing external feeding and development of first-generation offspring. Notice the presence of mature and teneral females, arrows showing oviposition of second generation. (D) Diet pellet> 50 d afer infestation showing female production, suitable for the reproduction of the African ectoparasitoid P. nasuta.
Fig. 2 in Biological responses of Hypothenemus hampei (Coleoptera: Curculionidae) on Cenibroca artificial diet at different moisture content levels and relative humidities
Fig. 2. Loss of moisture content level percentage on a Cenibroca diet pellet with a 50, 60, and 70% moisture content level maintained at 65, 75, and 85% relative humidity. (95% confidence limits of the mean; n = 7 per evaluation time per treatment).
Fig. 1 in Biological responses of Hypothenemus hampei (Coleoptera: Curculionidae) on Cenibroca artificial diet at different moisture content levels and relative humidities
Fig. 1. Mean brood production of coffee berry borer per Cenibroca diet pellet with 50, 60, and 70% moisture content level maintained at 65, 75, and 85% relative humidity at different time periods. (95% confidence limits of the mean; n = 7 per evaluation time per treatment).
Figure 1 in Response of Hypothenemus hampei Ferrari (Coleoptera: Curculionidae: Scolytinae) parasitized by the nematode Metaparasitylenchus hypothenemi Poinar (Tylenchida: Allantonematidae) to different colors of light
Figure 1: Relative attraction of CBB (parasitized with MetaparaSityleNChUS hypOtheNeMi and non-parasitized) to 14 light wavelengths compared to the control (570 nm). The asterisk-labeled treatment was statistically different to the control using the χ2 test (P = 0.01). Relative attraction (%) was calculated using the number of borers that chose the treatment and control, applying the formula: [(treatment) (100) / (treatment + control)].
Figure 4 in Pathway Analysis: Likelihood of Coffee Berry Borer (Hypothenemus hampei Ferrari) Introduction into the Hawaiian Islands by Air Passenger Travel
Figure 4. Probability for the estimated annual passenger entries with CBB-infested materials: (a) to Hawaii from CBB-occurring countries; (b) between Hawaii island and Oahu; (c) between Oahu and Maui; (d) between Oahu and Kauai; (e) between Hawaii island and Maui; (f) between Maui and Kauai; (g) between Hawaii island and Kauai; (h) between Oahu and Lanai.
Figure 1 in Pathway Analysis: Likelihood of Coffee Berry Borer (Hypothenemus hampei Ferrari) Introduction into the Hawaiian Islands by Air Passenger Travel
Figure 1. World coffee production with CBB world distribution: a) 2019 coffee produc- tion (FAO 2020); b) CBB distribution by introduction year (Vega et al. 2015).
Figure 2 in Pathway Analysis: Likelihood of Coffee Berry Borer (Hypothenemus hampei Ferrari) Introduction into the Hawaiian Islands by Air Passenger Travel
Figure 2. Number of months per year with optimal temperature conditions for CBB growth. The optimal temperature conditions were determined by evaluating the area where daily minimum temperature was above 18°C and daily maximum temperature was below 30°C.
Figure 3 in Pathway Analysis: Likelihood of Coffee Berry Borer (Hypothenemus hampei Ferrari) Introduction into the Hawaiian Islands by Air Passenger Travel
Figure 3. Mean annual number of air passengers traveling between the Hawaiian Islands. Dispersal pathways are shown for those islands that are confirmed to have coffee berry borer. Thicker blue lines indicate higher numbers of passengers.
Testing what we know about coffee volatiles affecting behaviour of Hypothenemus hampei
<p>Raw data about laboratory and field assays of volatile compounds that affects coffee berry borer, <em>Hypothenemus hampei.</em></p>
Effectiveness of traps and attractants in mass capture of Hypothenemus hampei in Sao Tome Island
<p>In this sense, we studied the bio-ecology of the CBB, in particular the presence of immature stages and adult of CBB during the development of the coffee berry, and to quantify population levels, as well as CBB infestation, natural enemies and penetration rates inside developing coffee berries in six coffee plantations of CECAFEB located in three regions (Districts) and one in the Centre of Technological and Agricultural Investigation of Sao Tome and Principe-Experimental Base of Industrial Crops (CIAT/STP-BECI). We also evaluate attractants in home-made traps baited for mass capture of the CBB in three coffee plantations of CECAFEB located in two regions (Districts).</p>
FIGURE 4–7. 4 in Recent occurrence of Aphanogmus dictynna (Waterston) (Hymenoptera: Ceraphronidae) in Kenya — an important hyperparasitoid of the coffee berry borer Hypothenemus hampei (Ferrari) (Coleoptera: Curculionidae)
FIGURE 4–7. 4. Female, dorsal mesosoma; 5. Female, lateral mesosoma; 6. Male, genitalia; 7. Female, dorsal metasoma.
ScienceDex guides
Understand access before you commit
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.