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301 results for “bloom”
Figure 10 in Spatio-Temporal Variability of Algal Bloom in the Caspian Sea
Figure 10. Features of various stages of intense cyanobacteria bloom in the South Caspian in September 2008 in Aqua MODIS true color images of: September 18 (a); September 27 (b).
Figure 5 in Spatio-Temporal Variability of Algal Bloom in the Caspian Sea
Figure 5. Monthly average values of Chl-a concentration in the coastal and open sea areas of the Middle and South Caspian, determined from Aqua MODIS data for 2022.
Figure 1 in Spatio-Temporal Variability of Algal Bloom in the Caspian Sea
Figure 1. Map of the Caspian Sea with isobaths in meters. Blue lines show the boundaries between the North, Middle and South Caspian. Red rectangle marks the area of in situ fieldwork.
USING THE "BLOOM'S CUBE" IN LITERATURE LESSONS
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Figure 5 from: Bloom D, Thomer A, Vaidya G, Guralnick R, Russell L (2012) From documents to datasets: A MediaWiki-based method of annotating and extracting species observations in century-old field notebooks. ZooKeys 209: 235-253. https://doi.org/10.3897/zookeys.209.3247
Figure 5 - An example of how a location (Big Thompson Creek near Loveland), a date (Sunday, June 10, 1906), and a taxon (Cottonwood, genus Populus) are grouped from across multiple pages.
Figure 4 from: Bloom D, Thomer A, Vaidya G, Guralnick R, Russell L (2012) From documents to datasets: A MediaWiki-based method of annotating and extracting species observations in century-old field notebooks. ZooKeys 209: 235-253. https://doi.org/10.3897/zookeys.209.3247
Figure 4 - Editing a notebook page on Wikisource. This screenshot shows side-by-side transcription and wiki markup syntax.
Figure 2 from: Bloom D, Thomer A, Vaidya G, Guralnick R, Russell L (2012) From documents to datasets: A MediaWiki-based method of annotating and extracting species observations in century-old field notebooks. ZooKeys 209: 235-253. https://doi.org/10.3897/zookeys.209.3247
Figure 2 - Index page for Notebook #1. Each Index page corresponds to a multipage file. The Index page displays volume metadata and links to sections of the notebook, while also providing links out to each notebook page and color-coding to determine which pages have been already transcribed and proofed.
Figure 1 from: Bloom D, Thomer A, Vaidya G, Guralnick R, Russell L (2012) From documents to datasets: A MediaWiki-based method of annotating and extracting species observations in century-old field notebooks. ZooKeys 209: 235-253. https://doi.org/10.3897/zookeys.209.3247
Figure 1 - Web browser view of a scanned page of Henderson's journal displayed side-by-side with transcriptions and annotations using the MediaWiki Proofread Page extension.
Figure 3 from: Bloom D, Thomer A, Vaidya G, Guralnick R, Russell L (2012) From documents to datasets: A MediaWiki-based method of annotating and extracting species observations in century-old field notebooks. ZooKeys 209: 235-253. https://doi.org/10.3897/zookeys.209.3247
Figure 3 - Henderson's first sentence. "Boulder, Colo. July 28, 1905. Saw Say [sic] Phoebe and siskins, [American] Robins, [Northern] Flicker."
Pigment assemblages in subtropical bloom-forming cyanobacteria strains (HPLC data)
<p>We present the data associated to the article: Bonilla et al., Pigment assemblages in subtropical bloom-forming cyanobacteria strains (2023 accepted in Journal of Plankton Research). The table has the carotenoid ratios to chlorophyll a of nine subtropical cyanobacterial strains analysed by HPLC.</p>
Data set of 1,275 images capturing interactions between flies and blooming flowers
<p>The dataset presented is a collection of 1,275 images capturing interactions between flies and blooming flowers. The images were sourced from internet repositories through searches conducted between August 2016 and August 2020, using the Google Chrome v. 33.x web browser. Internet searches focused on Google Images and three major social media platforms: Flickr, Instagram, and agefotostock. Photographs were taken by photographers worldwide and uploaded to these platforms, forming the basis of the dataset. The data encompasses various taxonomic and ecological information for both the flies and the flowers depicted in the images. For each image, detailed taxonomic information was recorded for the flies, including their suborders (Nematocera and Brachycera, grouped as Higher/Lesser), Family (wherever possible, distinguishing between Syrphidae and non-Syrphidae), and Genus and species (if available). Further characterization of the flies included recording their sex (identified based on morphology), feeding status (identified by visible proboscis extension into the flower), and the presence or absence of pollen particles on their bodies. Similarly, for each image, taxonomic information was collected for the flowers, including their Family and Genus and species (when identifiable). Flowers were categorized by petal color, which was grouped into four main categories based on the visible spectrum wavelength: purple to blue (ranging from 380-520 nm), green to yellow (ranging from 520-590 nm), orange to red (ranging from 590-740 nm), and white. Additionally, flowers were classified based on their shape, with four main categories: elongate cluster, round cluster, composite-shaped, or simple-shaped. To complement the taxonomic and morphological information, the dataset includes additional data for each image, such as web links to the original sources, geographic locations where the images were captured, and the date of image acquisition. This dataset offers a valuable resource for studying fly-flower interactions on a broad scale, using photographs contributed by photographers from around the world. </p>
Historic and recent trends of cyanobacterial harmful algal blooms and environmental conditions in Clear Lake, California: a 70-year perspective
<p><span>Clear Lake is the largest, natural lake in northern California, USA with many beneficial uses but also substantive environmental issues. The lake has a long history of water quality problems including mercury contamination, pesticide usage, invasive species, and high rates of primary production. In recent years, an increase in cyanobacterial harmful algal blooms (cyanoHABs) have been documented in the lake, adding to the environmental issues faced by aquatic species present in the lake, and the local community. Extensive observations of various physical, chemical, and biological parameters in Clear Lake began in the mid-1900s. The most pertinent of these datasets and findings have been reviewed and analyzed with the intent of improving our understanding of the causes and drivers of cyanoHABs, toxin production, and identifying data gaps. The findings are published in Smith et al. (2023) at DOI: </span><a href="https://doi.org/10.1525/elementa.2022.00115"><span>https://doi.org/10.1525/elementa.2022.00115</span></a><span> </span><span>Funding for this work, including data acquisition, database assembly and manuscript preparation was provided by the Big Valley Band of Pomo Indians Environmental Protection Agency and the Elem Indian Colony Environmental Protection Agency.</span></p> <p><span>The dataset assembled as a part of Smith et al. (2023) is posted here. It is the master database of 50 lake and climatological parameters (~217,000 individual data points) from the period of 1920 to mid-2020 of environmental parameters within and surrounding the lake. This database and analysis builds upon the efforts of the Big Valley Band of Pomo Indians Environmental Protection Agency to identify the Clear Lake monitoring entities and assemble the available water quality data. More information about this effort, as well as data visualizations can be found here: </span><a href="https://www.bvrancheria.com/water-quality-dashboard"><span>https://www.bvrancheria.com/water-quality-dashboard</span></a><span> </span></p> <p><span>In 2014, two Tribal Nations, the Big Valley Band of Pomo Indians, and the Elem Indian Colony, developed the Clear Lake Cyanobacteria Monitoring Program (</span><a href="https://www.bvrancheria.com/clearlakecyanotoxins"><span>https://www.bvrancheria.com/clearlakecyanotoxins</span></a><span>) which includes water quality parameters along with cyanobacterial-specific parameters such as cyanotoxins, phycocyanin, and cyanobacterial genera identifications via microscopy. The vast majority of available cyanotoxin data, which are presented in this database, resulted from these efforts.</span></p> <p><span>Basic climatological and hydrologic data have been collected near and around Clear Lake as early as the 1910s by the U.S. Geological Survey (USGS) and National Oceanic and Atmospheric Administration (NOAA). Multiple agencies have conducted both routine and intermittent monitoring of chemical and physical parameters on Clear Lake since the 1950s, although routine and consistent collection of biological monitoring data began more recently within the last two decades. The California Department of Water Resources, the California State Water Resource Control Board, and Lake County Vector Control District have monitored several water quality parameters beginning in the 1950s. </span></p>
The Bloom Infant Probiotic (BIP) Study
ClinicalTrials.gov study NCT07189390. IPD Sharing: YES. Countries: 1. Publications: 0.
Data from: Parasites in bloom: flowers aid dispersal and transmission of pollinator parasites within and between bee species
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Data from: Evidence for parasite-mediated selection during short-lasting toxic algal blooms
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Visualizing active viral infection reveals diverse cell fates in synchronized algal bloom demise
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Data from: Plant-pollinator networks in semi-natural grasslands are resistant to the loss of pollinators during blooming of mass-flowering crops
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Data from: Priority effects in a planktonic bloom-forming marine diatom
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Unveiling the transcriptional features associated with coccolithovirus infection of natural Emiliania huxleyi blooms.
GEO Series GSE24341. Emiliania huxleyi virus 163; Emiliania huxleyi; Emiliania huxleyi virus 86; marine metagenome. 85 samples. Type: Expression profiling by array.
Acute gastrointestinal permeability after traumatic brain injury in mice precedes a bloom in Akkermansia muciniphila supported by intestinal hypoxia
GEO Series GSE239472. Mus musculus. 89 samples. Type: Other.
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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.
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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.