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173 results for “sugarcane”
Fig. 4 in The new Oriental stick insect genus Baculomia gen. nov. with two new species from Vietnam including the first stick insect feeding on sugarcane (Phasmida, Phasmatidae, Clitumninae, Clitumnini)
Fig. 4. Baculomia pumatensis sp. nov., ♂, Vietnam, Nghe An Province, Pu Mat National Park, 4–9.VII.2017. A, habitus. B, head and thorax, dorsolateral view. C, head and thorax, dorsal view.
Fig. 8 in The new Oriental stick insect genus Baculomia gen. nov. with two new species from Vietnam including the first stick insect feeding on sugarcane (Phasmida, Phasmatidae, Clitumninae, Clitumnini)
Fig. 8. Baculomia pumatensis sp. nov. A–B, feeding damages on Saccharum officinarum L. (Poaceae), Vietnam, Nghe An Province, Pu Mat National Park, near station, 9.VII.2017, at night.
Fig. 7 in The new Oriental stick insect genus Baculomia gen. nov. with two new species from Vietnam including the first stick insect feeding on sugarcane (Phasmida, Phasmatidae, Clitumninae, Clitumnini)
Fig. 7. Baculomia pumatensis sp. nov., eggs. A, laterodorsal view. B, lateral view. C, ventral view. D, operculum. E, anterodorsal view. F, dorsal view. G, posterodorsal view. H, polar area.
Fig. 11 in The new Oriental stick insect genus Baculomia gen. nov. with two new species from Vietnam including the first stick insect feeding on sugarcane (Phasmida, Phasmatidae, Clitumninae, Clitumnini)
Fig. 11. Baculomia siamensis (Brunner von Wattenwyl, 1907) comb. nov., syntypes ♀ (copyright MNHN). A– D, first syntype A, habitus, dorsal view. B, habitus, lateral view. C, habitus, ventral view. D, labels. E–G, second syntype E, habitus, dorsal view. F, habitus, lateral view. G, labels.
Fig. 15 in The new Oriental stick insect genus Baculomia gen. nov. with two new species from Vietnam including the first stick insect feeding on sugarcane (Phasmida, Phasmatidae, Clitumninae, Clitumnini)
Fig. 15. Baculomia siamensis (Brunner von Wattenwyl, 1907) comb. nov., ♂ in nature, Thailand, Kuri Buri National Park, 22.IX.2016 (photographs by I. Dugdale and P. Phetsri). A, habitus, laterodorsal view. B, anterior portion of body, laterodorsal view. C, caudal portion of body, laterodorsal view.
Fig. 10 in The new Oriental stick insect genus Baculomia gen. nov. with two new species from Vietnam including the first stick insect feeding on sugarcane (Phasmida, Phasmatidae, Clitumninae, Clitumnini)
Fig. 10. Baculomia siamensis (Brunner von Wattenwyl, 1907) comb. nov., syntype ♂ (copyright MNHN). A, habitus, dorsal view. B, labels.
Fig. 14 in The new Oriental stick insect genus Baculomia gen. nov. with two new species from Vietnam including the first stick insect feeding on sugarcane (Phasmida, Phasmatidae, Clitumninae, Clitumnini)
Fig. 14. Baculomia siamensis (Brunner von Wattenwyl, 1907) comb. nov., ♀ (photographs by F. Hennemann). A, habitus, dorsal view. B, habitus, lateral view. C, habitus laterodorsal view. D, anterior portion of body, dorsal view. E, terminalia, dorsal view. F, terminalia, ventral view. G, terminalia, lateral view. H, anterior portion of body, lateral view.
Fig. 12 in The new Oriental stick insect genus Baculomia gen. nov. with two new species from Vietnam including the first stick insect feeding on sugarcane (Phasmida, Phasmatidae, Clitumninae, Clitumnini)
Fig. 12. Baculomia siamensis (Brunner von Wattenwyl, 1907) comb. nov., ♂ (photographs by F. Hennemann). A, habitus, lateral view. B, anterior portion of body, dorsal view. C, anterior portion of body, lateral view. D, terminalia, dorsal view. E, terminalia, ventral view. F, terminalia, lateral view.
FIGURE 1 in A new species of the conidial fungal genus Spegazzinia (Pleosporales, Didymosphaeriaceae) collected on sugarcane in Cuba
FIGURE 1. Spegazzinia affinis (holotype HACM 8980). Conidiophores mother cells, basauxic conidiophores and conidia of types "a" and "b". Drawing by Gustavo Vega.
Data from: Location of water in fresh sugarcane bagasse observed by synchrotron X-ray microtomography
Sugarcane bagasse is a vast lignocellulosic byproduct generated in the industry with ~50% humidity (1 kg dry matter associated with 1 kg water). Although the presence of water brings deleterious consequences for combustion, storage and sugar extraction, the location of water in fresh bagasse remains unknown. In this work, we use synchrotron X-ray microtomography for non-invasive 3D imaging of fresh bagasse particles, which allows the visualization of intraparticle water. The sclerified fiber cells in the sheaths surrounding xylem vessels are often found full of water. We suggest this can be juice preserved from the native stalks as many sclerified fibers seem to keep their structural integrity despite the mechanical action during sugarcane crushing. The microtomograms of fresh bagasse also shows mineral particles adhered to biomass surfaces, with adhesion presumably favored by the presence of water. In summary, this work unveils the location of water in fresh bagasse, solving an old mystery of sugarcane technology.
Fig. 3 in Classification of sugarcane genotypes susceptible and resistant to the initial attack of sugarcane borer Diatraea saccharalis using epicuticular wax composition
Fig. 3. Graph with the importance of each selected compound by OPSDA. A) Resistant class – before infestation; B) Susceptible class – before infestation; C) Resistant class – after infestation; and D) Susceptible class – after infestation.
Fig. 2 in Classification of sugarcane genotypes susceptible and resistant to the initial attack of sugarcane borer Diatraea saccharalis using epicuticular wax composition
Fig. 2. Classification of GC-MS dataset before (A–D) and after (E–H) infestation for PLS-DA, LDA, OPSDA, and GA-LDA models. Filled red circles (●) and empty red circles (○) are samples of resistant class. Filled black squares (■) and empty black squares (□) are samples of susceptible class. Filled and empty shapes refer respectively to training and test sets. AI: after infestation; BI: before infestation; Res: resistant; Sus: susceptible. (For interpretation of the references to colour in this figure legend, the reader is referred to the Web version of this article.)
Fig. 1 in Classification of sugarcane genotypes susceptible and resistant to the initial attack of sugarcane borer Diatraea saccharalis using epicuticular wax composition
Fig. 1. Chromatogram obtained from refined wax after derivatization of genotypes IM76-228 (resistant) and RB047016 (susceptible) highlights important peaks. AI: after infestation; BI: before infestation; Res: resistant; Sus: susceptible. Peak number identification was listed in Table 2.
Study Comparing the Polyurethane Films and Sugarcane Biopolymer Used as Dressings
ClinicalTrials.gov study NCT02531828. IPD Sharing: Not stated. Countries: 1. Publications: 1.
Effects of Exposure to Biomass-burning Air Pollution on Lung Function, Heart Rate Variability and Inflammatory Markers in Sugarcane Workers
ClinicalTrials.gov study NCT01371188. IPD Sharing: Not stated. Countries: 1. Publications: 1.
Data for: Machine learning for genomic and pedigree prediction in sugarcane
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Data from: The sugarcane mitochondrial genome: assembly, phylogenetics and transcriptomics
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Data from: Influence of historical land use and modern agricultural expansion on the spatial and ecological divergence of sugarcane borer, Diatraea saccharalis (Lepidoptera: Crambidae) in Brazil
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Data from: Location of water in fresh sugarcane bagasse observed by synchrotron X-ray microtomography
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Data from: Restriction site associated DNA (RAD) for de novo sequencing and marker discovery in sugarcane borer, Diatraea saccharalis Fab. (Lepidoptera: Crambidae)
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Allen Brain Atlas
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DANDI Archive for NWB datasets
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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
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