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542 results for “Hawaiian Islands”
FIGURES 1–4. Sigmatineurum puleloai, n in Sigmatineurum puleloai (Diptera: Dolichopodidae), a new species from Pelekunu Stream, Moloka'i, Hawaiian Islands
FIGURES 1–4. Sigmatineurum puleloai, n. sp. 1. Male habitus, lateral view. 2. Detail lateral view of abdomen showing dark pollinose areas of tergites. 3. Male mid leg (femur, tibia, and first tarsal segment) showing setation. 4. Sternite 4; a. caudal view; b. lateral view (right side).
FIGURE 1 in Bibliographic Catalogue of the Marine Benthic Algae in the Papahānaumokuākea Marine National Monument (Northwestern Hawaiian Islands)
FIGURE 1. Map of the Papahānaumokuākea Marine National Monument (PMNM) within the Hawaiian Archipelago. The 10 islands, atolls and shoals of the PMNM span from Kure Atoll to Nihoa Island. Map provided by NOAA-PMNM Office.
FIGURE 6 in Discovery of Aphanipathes verticillata (Cnidaria: Anthozoa: Antipatharia) in the Hawaiian Islands
FIGURE 6. Aphanipathes verticillata mauiensis. Size frequency distribution of maximum size of polypar spines on branchlets (N = 20); dots indicate a normal distribution pattern.
FIGURE 2 in Discovery of Aphanipathes verticillata (Cnidaria: Anthozoa: Antipatharia) in the Hawaiian Islands
FIGURE 2. Aphanipathes verticillata verticillata Brook, schizoholotype (MCZ 68), spines on branchlets. Scale bars = 0.10 mm.
FIGURE 3 in Discovery of Aphanipathes verticillata (Cnidaria: Anthozoa: Antipatharia) in the Hawaiian Islands
FIGURE 3. Aphanipathes verticillata verticillata, specimen from Okinawa (USNM 99727); A and C, spines on small branchlet; B and D, spines on branch. Scale bars = 0.1 mm.
FIGURE 8 in Discovery of Aphanipathes verticillata (Cnidaria: Anthozoa: Antipatharia) in the Hawaiian Islands
FIGURE 8. Morphological comparison between sympatric species Aphanipathes verticillata mauiensis (left; A–D) and Antipathes griggi (right; E–H). A. A. verticillata mauiensis holotype (USNM 1150095), in situ. B. USNM 1128320, in situ. C. USNM 1150087, in situ. D. spines on A. verticillata mauiensis holotype (scale bar = 0.1 mm). E–G. Antipathes griggi, colonies in situ. H. spines on A. griggi holotype (scale bar = 0.1 mm). (In situ photographs courtesy of the Hawai'i Undersea Research Laboratory).
FIGURE 7 in Discovery of Aphanipathes verticillata (Cnidaria: Anthozoa: Antipatharia) in the Hawaiian Islands
FIGURE 7. Aphanipathes species; spines on branchlets: A and D, A. salix (Pourtales); B and E, A. sarothamnoides Brook; C and F, A. pedata (Gray). Scale bars = 0.1 mm.
FIGURE 1. A in Discovery of Aphanipathes verticillata (Cnidaria: Anthozoa: Antipatharia) in the Hawaiian Islands
FIGURE 1. A. Aphanipathes verticillata verticillata Brook, holotype (ZMUC ANT-208); height ~80 cm (Brook, 1889) (Note: scale not available); B. A. verticillata mauiensis subsp. nov., holotype (USNM 1150095), scale bar = 10 cm.
Fig. 1. Xyleborus pele. A in Rediscovery of an Enigmatic Bark Beetle (Coleoptera: Curculionidae: Scolytinae) Endemic to the Hawaiian Islands
Fig. 1. Xyleborus pele. A) Distribution map of collecting localities on Hawaiʻi Island (circles = historical localities from 1907‾1929; triangles = recent localities from 2018), B) Lindgren funnel trap deployed in mixed mesic forest at K‾ılauea Iki Trail, Hawaiʻi Volcanoes National Park, February 2018, C) Mixed mesic forest at Laup‾ ahoehoe Experimental Forest Unit (Hilo Forest Reserve), February 2018. Female collected at K‾ılauea Iki Trail, 23 January 2018, length = 5.0 mm: D) Left lateral view, E) Lateral view of right ventral habitus, F) Dorsal view, G) Oblique view of left side of elytral declivity, H) Size comparison of X. pele (above) to female Xyleborus nubilus Samuelson, 1981 (below), another endemic scolytine from Hawaiʻi Island. Photographs by Conrad P. D. T. Gillett.
FIGURE 2 in Calliblepharis yasutakei sp. nov. and Hypnea tsudae sp. nov. (Cystocloniaceae, Rhodophyta): novel diversity from the Hawaiian Islands
FIGURE 2. Maximum likelihood phylogeny of SSU sequences for the red algal family Cystocloniaceae. Numbers along branches indicate nodal support (first value = bootstrap support, second value = Bayesian posterior probabilities). Nodes with full support are indicated with an asterisk. Scale bar = substitutions per site.
FIGURE 3 in Calliblepharis yasutakei sp. nov. and Hypnea tsudae sp. nov. (Cystocloniaceae, Rhodophyta): novel diversity from the Hawaiian Islands
FIGURE 3. General morphology of Calliblepharis yasutakei sp. nov. (BISH 783229). A. The freshly collected holotype. B. Pressed holotype showing the small holdfast (arrow). C. Surface view of a branch apex showing the apical cell. D. Surface view showing weakly developed rosette cells (arrows) around medullary and cortical cells. E. Cross section showing lenticular thickening (arrow) in a cortical cell. F. Cross section of basal region of thallus showing lenticular thickenings in cortical cells (arrows). G. Cross section of a middle portion of the thallus. H. Surface view showing axial filament surrounded by medullary cells (arrows).
FIGURE 1 in Calliblepharis yasutakei sp. nov. and Hypnea tsudae sp. nov. (Cystocloniaceae, Rhodophyta): novel diversity from the Hawaiian Islands
FIGURE 1. Maximum likelihood phylogeny of rbcL sequences for the red algal family Cystocloniaceae. Numbers along branches indicate nodal support (first value = bootstrap support, second value = Bayesian posterior probabilities). Nodes with full support are indicated with an asterisk. Scale bar = substitutions per site.
FIGURE 4 in Calliblepharis yasutakei sp. nov. and Hypnea tsudae sp. nov. (Cystocloniaceae, Rhodophyta): novel diversity from the Hawaiian Islands
FIGURE 4. General morphology of Hypnea tsudae sp. nov. (BISH 740394). A. Pressed holotype, image provided by Bishop Museum (BISH 740394). B. Paratype ARS 03115 from a formalin voucher showing habit of the thallus. C. Stained paratype ARS 03542 from a formalin voucher showing apical portion of the branch. D. Detail of an apical branch (ARS 03115) E. Detail of a lateral branch (ARS 03542). F. Surface view of the apical portion of the thallus. G. Transverse section on the basal portion of the thallus. H. Transverse section of a middle portion of the thallus (ARS 03115).
Family-Based Meal Timing for Cancer Prevention Among Native Hawaiian and Other Pacific Islanders: FAMTIME
ClinicalTrials.gov study NCT07262593. IPD Sharing: NO. Countries: 1. Publications: 155.
Data from: Population structure and comparative phylogeography of jack species (Caranx ignobilis and C. melampygus) in the high Hawaiian Islands
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Data from: Rapid morphological change of non-native frugivores on the Hawaiian island of O’ahu
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Data from: "Complete mitochondrial and partial nuclear genomes for the jack species Caranx ignobilis (Forsskål, 1775) and C. melampygus (Cuvier, 1833) (Perciformes:Carangidae) from the High Hawaiian Islands" in Genomic Resources Notes accepted 1 October 2013 – 30 November 2013
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Data from: RADseq resolves the Hawaiian Island radiation of Myrsine L. (Primulaceae) and provides evidence for hybridization
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Endemic island plant-herbivore interactions: Kamehameha butterfly (Nymphalidae) and Hawaiian Urticaceae
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Data from: Predictive modeling of coral distribution and abundance in the Hawaiian Islands
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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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
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.