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91 results for “Baited trap”
Fig. 2 in Captures of oriental fruit flies and melon flies (Diptera: Tephritidae) in traps baited with torula yeast borax solution or 2- or 3-component synthetic food cones in Hawaii
Fig. 2. Captures of wild Zeugodacus cucurbitae in traps baited with torula yeast borax solution, 2-component cones, or 3-component cones. Symbols represent means (± 1 SE); N = 10 traps per treatment per weathering interval.
Fig. 1 in Amount and bagging of the bait food affect the captures of Scyphophorus acupunctatus (Coleoptera: Curculionidae) by pheromone-baited traps
Fig. 1. Mean (+ SE) number of Scyphophorus acupunctatus captured per trap baited with different amounts of fresh agave tissue in 2 trials. The 1st trial was performed from 18 Jan to 8 Feb 2013 (A), while the 2nd trial was carried out from 11 Apr to 23 May 2013 (B). Bars with the same letter are not significantly different (Tukey's, a = 0.05).
Fig. 1 in Capture of melon flies and oriental fruit flies (Diptera: Tephritidae) in traps baited with torula yeast-borax or CeraTrap in Hawaii
Fig. 1. Numbers of female and male Z. cucurbitae captured in Multilure traps baited with torula yeast-borax pellets (TYB) or CeraTrap (CT) over the 6-wk sampling period. Symbols represent averages of 15 traps per bait type; whiskers represent + 1 SE.
Fig. 2 in Amount and bagging of the bait food affect the captures of Scyphophorus acupunctatus (Coleoptera: Curculionidae) by pheromone-baited traps
Fig. 2. Mean (+ SE) number of Scyphophorus acupunctatus captured per trap baited with pheromone plus bagged or unbagged fresh agave tissue. The experiment was performed from 24 May to 14 Jun 2013. Bars with the same letter are not significantly different (Tukey's, a = 0.05).
Fig. 1. Multilure trap baited with 300 in Myrmecological fauna (Hymenoptera: Formicidae) collected with Multilure-type traps in a Neotropical transitional region from northeastern Mexico
Fig. 1. Multilure trap baited with 300 mL of Strepha Trap® on a tree in the biosphere reserve "El Cielo."
Fig. 2 in Field capture of male oriental fruit flies (Diptera: Tephritidae) in traps baited with solid dispensers containing varying amounts of methyl eugenol
Fig. 2. Captures of Bactrocera dorsalis males on Oahu, Hawaii, USA, in Jackson traps baited with fresh liquid methyl eugenol or weathered, polymeric plugs containing 3, 6, or 10 g of methyl eugenol, where accompanying dichlorvos squares were either weathered (A, Experiment 2) or replaced prior to each trapping period (B, Experiment 3). Symbols represent means ± 1 SE; n = 12 in all cases. For a given trapping interval, means marked with different letters differed significantly (P <0.05, Tukey test).
Fig. 1 in Field capture of male oriental fruit flies (Diptera: Tephritidae) in traps baited with solid dispensers containing varying amounts of methyl eugenol
Fig. 1. Captures of Bactrocera dorsalis males on the Big Island, Hawaii, USA (Experiment 1) in Jackson traps baited with fresh liquid methyl eugenol or weathered, polymeric plugs containing 3, 6, or 10 g of methyl eugenol. Symbols represent means ± 1 SE; n = 12 in all cases.
Fig. 2 in A physical barrier reduces capture of Euschistus servus (Hemiptera: Pentatomidae) in pheromone-baited traps near peach trees
Fig. 2. Capture of adult Euschistus servus in pheromone-baited traps placed near peach trees when the trap occurred within the enclosure formed by a 3.7-m-tall physical barrier around the peach tree, or when there was no barrier around the tree: (A) 2014 and (B) 2015.
Fig. 1. A 3.7 in A physical barrier reduces capture of Euschistus servus (Hemiptera: Pentatomidae) in pheromone-baited traps near peach trees
Fig. 1. A 3.7 × 3.7 × 3.7 m fence was erected around a peach tree to determine if this physical barrier would reduce adult Euschistus servus from reaching a pheromone-baited trap placed inside the enclosure near the tree.
Fig. 2 in Optimizing torula bait for Anastrepha suspensa (Diptera: Tephritidae) trapping in the Dominican Republic
Fig. 2. Effect of weekly and biweekly renewal and no renewal of baits on the cumulative captures of females (A1) and males (A2) from Oct to Dec 2019, and females (B1) and males (B2) from Jan to Feb 2020 of Caribbean fruit fly (Anastrepha suspensa) per wk in guava production in San Cristobal, Dominican Republic.
Fig. 1 in Optimizing torula bait for Anastrepha suspensa (Diptera: Tephritidae) trapping in the Dominican Republic
Fig. 1. Effect of torula yeast and benzalkonium chloride on the cumulative captures of females (A1) and males (A2) from Oct to Dec 2019, and females (B1) and males (B2) from Jan to Feb 2020 of Caribbean fruit fly (Anastrepha suspensa) per wk in guava production in San Cristobal, Dominican Republic.
Fig. 4 in Optimizing torula bait for Anastrepha suspensa (Diptera: Tephritidae) trapping in the Dominican Republic
Fig. 4. Minimum, average, and maximum air temperature, and relative humidity at the experimental site between 23 Oct 2019 and 23 Feb 2020 in San Cristobal, Dominican Republic; (1.8 × °C) + 32 = °F.
Fig. 3 in Optimizing torula bait for Anastrepha suspensa (Diptera: Tephritidae) trapping in the Dominican Republic
Fig. 3. Daily pH changes of torula yeast pellets (34.2% torula yeast + 57.2% borax) (two 4 g pellets in 200 mL of water) and torula yeast pellets + benzalkonium chloride (80% purity) (two 4 g pellets in 200 mL of water + 16 mL of benzalkonium chloride) under laboratory conditions in San Cristobal, Dominican Republic.
Fig. 1 in Bait traps remain attractive to euglossine bees even after two weeks: a report from Brazilian Atlantic forest
Fig. 1. Variation in the number of individuals and species collected in RNV according to the attractive bait and each performed sample. a: abundance of specimens collected per day in each sample; b: absolute number of specimens collected in each sample; c: accumulated number of species after samples (a–c: sample 1, black; sample 2, gray; sample 3, white; BA: benzyl acetate; BI: β-ionone; EC: eucalyptol; EG: eugenol; MC: methyl trans-cinnamate; MS: methyl salicylate; VN: vanillin; T: total per sample); d: relative abundance of specimens collected in each scent (EC, black; EG, dark gray; VN, gray; BI, light gray; BA+MC+MS: white; numbers refer sequentially to first, second and third collections).
Fig. 3 in Yearly and seasonal changes in species composition of hornets (Hymenoptera: Vespidae) caught with bait traps on the Sea of Japan coast
Fig. 3. Seasonal abundance of Vespa ducalis collected by bait traps at Sakata Park and
Fig. 2 in Yearly and seasonal changes in species composition of hornets (Hymenoptera: Vespidae) caught with bait traps on the Sea of Japan coast
Fig. 2. Seasonal abundance of Vespa analis collected by bait traps at Sakata Park and
Fig. 4 in Yearly and seasonal changes in species composition of hornets (Hymenoptera: Vespidae) caught with bait traps on the Sea of Japan coast
Fig. 4. Nonmetric multidimensional scaling (NMDS) plot comparing hornet species
Fig. 3 in Heteroptera attracted to butterfly traps baited with fish or shrimp carrion
Fig. 3. Melucha phyllocnemis (Burmeister) on the side of a trap and Leptoglossus sp. on the base.
Fig. 1 in Heteroptera attracted to butterfly traps baited with fish or shrimp carrion
Fig. 1. Example of a butterfly trap used in these studies.
Increasing catches of adult moth pests (Lepidoptera: Tortricidae) in pome fruit with low-intensity LED lights added to sex pheromone / kairomone lure-baited traps.
<p>Raw data of field studies trapping different tortricid pest species with pheromone/kairomone lures and LED lights added to the traps.</p>
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Allen Brain Atlas
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DANDI Archive for NWB datasets
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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.
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