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372 results for “hawaii”
Coffee Berry Borer (Hypothenemus hampei Ferrari) trap catch and associated weather variables on Hawaii Island
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NIR spectra of Hawaii avocados
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Data from: Intraspecific divergence and evolution of a life-history trade-off along a successional gradient in Hawaii’s Metrosideros polymorpha
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Figure 4 from: Wolski GJ, Proćków J (2020) A new synonym from Hawaii and lectotypification of Plagiothecium longisetum (Plagiotheciaceae). PhytoKeys 164: 21-31. https://doi.org/10.3897/phytokeys.164.56612
Figure 4 Sheet of Plagiothecium longisetum marked as the "isotype" and three stems of gametophyte deposited in the herbarium of the Muséum National d'Histoire Naturelle (PC0132572). Scale bar: 3 cm.
Figure 5 from: Wolski GJ, Proćków J (2020) A new synonym from Hawaii and lectotypification of Plagiothecium longisetum (Plagiotheciaceae). PhytoKeys 164: 21-31. https://doi.org/10.3897/phytokeys.164.56612
Figure 5 Envelope and turf with sporophytes of Plagiothecium longisetum from the University of Helsinki Herbarium (H-SOL 1563 011). Scale bar: 2 cm.
Figure 2 from: Wolski GJ, Proćków J (2020) A new synonym from Hawaii and lectotypification of Plagiothecium longisetum (Plagiotheciaceae). PhytoKeys 164: 21-31. https://doi.org/10.3897/phytokeys.164.56612
Figure 2 Plagiothecium mauiense from the NY Herbarium (D.D. Baldwin 221, NY01256708) A the plain leaf apex B the grey arrow indicates the three rows of decurrencies C the stem cross section D–F the shape and dimensions of cells from individual leaf zones: D from the upper part E from the middle part F from the lower part of the leaf. Scale bars: 50 µm (B); 150 µm (A, D, E); 200 µm (C, F).
Supplementary material 1 from: Roux J, Kamgan Nkuekam G, Marincowitz S, van der Merwe NA, Uchida J, Wingfield MJ, Chen SF (2020) Cryphonectriaceae associated with rust-infected Syzygium jambos in Hawaii. MycoKeys 76: 49-79. https://doi.org/10.3897/mycokeys.76.58406
Table S1
Supplementary material 2 from: Roux J, Kamgan Nkuekam G, Marincowitz S, van der Merwe NA, Uchida J, Wingfield MJ, Chen SF (2020) Cryphonectriaceae associated with rust-infected Syzygium jambos in Hawaii. MycoKeys 76: 49-79. https://doi.org/10.3897/mycokeys.76.58406
Table S2
Figure 5 from: Roux J, Kamgan Nkuekam G, Marincowitz S, van der Merwe NA, Uchida J, Wingfield MJ, Chen SF (2020) Cryphonectriaceae associated with rust-infected Syzygium jambos in Hawaii. MycoKeys 76: 49-79. https://doi.org/10.3897/mycokeys.76.58406
Figure 5 Micrographs of Celoporthe paradisiaca sp. nov. (holotype: PREM 63205, ex-holotype CBS 147169 = CMW38360) A culture morphology on 2% MEA at 25 °C and 30 °C at 8 and 34 days B conidiomata produced on Eucalytpus stem sections on water agar C, D vertical section of conidioma E inner wall of conidioma F conidiomatal walls (ps, pseudoparenchymatous inner wall; pr, prosenchymatous outer or interlocular wall) G conidiogenous cells H conidia. Scale bars: 1 mm (B); 100 µm (C, D); 10 µm (E–H).
Figure 4 from: Roux J, Kamgan Nkuekam G, Marincowitz S, van der Merwe NA, Uchida J, Wingfield MJ, Chen SF (2020) Cryphonectriaceae associated with rust-infected Syzygium jambos in Hawaii. MycoKeys 76: 49-79. https://doi.org/10.3897/mycokeys.76.58406
Figure 4 Micrographs of Celoporthe hawaiiensis sp. nov. (holotype: PREM 61307, ex-holotype CBS 140642 = CMW38610) A culture morphology on 2% MEA at 25 °C and 30 °C at 9 and 27 days B, C conidiomata produced on Eucalyptus stem sections on water agar D, E vertical section of conidioma F conidiomatal wall G, H conidiogenous cells I conidia. Scale bars: 1 mm (B, C); 100 µm (D, E); 10 µm (F, G); 5 µm (H, I).
Figure 3 from: Roux J, Kamgan Nkuekam G, Marincowitz S, van der Merwe NA, Uchida J, Wingfield MJ, Chen SF (2020) Cryphonectriaceae associated with rust-infected Syzygium jambos in Hawaii. MycoKeys 76: 49-79. https://doi.org/10.3897/mycokeys.76.58406
Figure 3 Micrographs of Celoporthe hauoliensis sp. nov. (holotype: PREM 61309; ex-holotype CBS 140640 = CMW38389) A culture morphology on 2% MEA at 25 °C and 30 °C at 9 and 27 days B conidiomata produced on Eucalyptus stem sections on water agar C, D vertical section of conidioma E inner fertile wall of conidioma F conidiomatal wall G conidiogenous cells H conidia. Scale bars: 1 mm (B); 100 µm (C, D); 10 µm (E–H).
Figure 2 from: Roux J, Kamgan Nkuekam G, Marincowitz S, van der Merwe NA, Uchida J, Wingfield MJ, Chen SF (2020) Cryphonectriaceae associated with rust-infected Syzygium jambos in Hawaii. MycoKeys 76: 49-79. https://doi.org/10.3897/mycokeys.76.58406
Figure 2 Phylogenetic trees, based on Maximum Likelihood (ML) analyses for species in CeloportheAITS region BBT1 gene region CTEF1 gene region D combined ITS, BT1 and TEF1 regions. Bootstrap values ≥ 70% for ML and MP (maximum parsimony) analyses are presented at branches as follows: ML/MP. Bootstrap values lower than 70% are marked with * and absent analysis values are marked with –. Isolates collected in this study are in boldface and blue. Holocryphia capensis (CMW37329 and CMW37887) was used as the outgroup taxon.
Figure 1 from: Roux J, Kamgan Nkuekam G, Marincowitz S, van der Merwe NA, Uchida J, Wingfield MJ, Chen SF (2020) Cryphonectriaceae associated with rust-infected Syzygium jambos in Hawaii. MycoKeys 76: 49-79. https://doi.org/10.3897/mycokeys.76.58406
Figure 1 Phylogenetic trees based on Maximum Likelihood (ML) analyses of a combined DNA sequence dataset of ITS and BT1 regions for various genera in the Diaporthales. Bootstrap values ≥ 70% for ML and MP (maximum parsimony) analyses are presented at branches as follows: ML/MP. Bootstrap values lower than 70% are marked with * and absent analysis values are marked with –. Isolates collected in this study are in boldface and blue. Diaporthe ambigua (CMW5287 and CMW5588) (Diaporthaceae) was used as the outgroup taxon.
Figure 6 from: Roux J, Kamgan Nkuekam G, Marincowitz S, van der Merwe NA, Uchida J, Wingfield MJ, Chen SF (2020) Cryphonectriaceae associated with rust-infected Syzygium jambos in Hawaii. MycoKeys 76: 49-79. https://doi.org/10.3897/mycokeys.76.58406
Figure 6 Vertical bar chart showing results of inoculation trial (xylem lesion) with Cryphonectriaceae isolates from Hawaii on S. jambos trees. Means with similar letters are not statistically significant, while those with different letters are statistically significant (significance level = 0.05).
Data from: Chronic exposure of Hawaii Island spinner dolphins (Stenella longirostris) to human activities
Habitat selection is strongly influenced by spatial variations in habitat quality and predation risk. Repeated exposure of wildlife to anthropogenic activities in important habitats may affect habitat selection, leading to negative biological consequences. We quantified the cumulative human exposure of a small, genetically-isolated and behaviourally-constrained spinner dolphin (Stenella longirostris) population, off Hawaii Island, and exposure effects on their daytime cumulative activity budget. Dolphins were exposed to human activities within 100m for 82.7% of the daytime, with a median duration of 10 min between exposure events. Individual dolphins spent on average 61.7% (SD=6.5) of their daytime resting. Of their total rest time, >90% occurred inside sheltered bays. Despite high levels of human exposure, we did not observe an effect on dolphin resting behaviour. The short intervals between exposure events likely prevent dolphins from returning to a natural resting state before the next event. Consequently, 'control' observations may represent a resting behaviour of a more vigilant nature. Chronic levels of exposure to human activities could lead to rest deprivation, displacement from preferred resting habitats and ultimately negative population level effects. These results have implications for new proposed legislation aiming to reduce dolphin exposure to human activities.
FIGURE 1. Periclimenaeus devaneyi Bruce, 2010 in Periclimenaeus species (Crustacea: Decapoda: Pontoniinae) from Hawaii
FIGURE 1. Periclimenaeus devaneyi Bruce, 2010, female, Maui, Hawaii, phot. Cory Pittman, QM-W29200.
Hawaii Synthetic Ecosystem
Hawaii synthetic population dataset consisting of tables for persons, households, schools, and workplaces. This dataset was created by the SPEW program from 2010 ACS SF 5-Year counts; 2010 US TIGER Roads; ACS PUMS 1-Year micro data; 2013 and 2011 NCES schools; and 2009 ESRI workplaces.
Fig. 1 in Notes On The Occurrence Of Ripidius Pectinicornis Thunberg (Coleoptera: Rhipiphoridae) In The Continental United States And Hawaii
Fig. 1. Ripidius pectinicornis, adult male, dorsal habitus, overall length 4.5 mm.
Distribution. Endemic to Hawaii. in Vespertilionidae
Distribution. Endemic to Hawaii.
Hawaii Volcano Haleakalā
Source: Objaverse 1.0 / Sketchfab
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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
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