<HashMap><database>bioimages</database><scores/><additional><omics_type>Unknown</omics_type><submitter/><full_dataset_link>https://www.ebi.ac.uk/biostudies/studies/S-BIAD1298</full_dataset_link><repository>bioimages</repository><figure_sub>Specimen</figure_sub><figure_sub>Image analysis</figure_sub><figure_sub>Study Component</figure_sub><figure_sub>organisation</figure_sub><figure_sub>Biosample</figure_sub><figure_sub>Associations</figure_sub><figure_sub>Image acquisition</figure_sub><pubmed_authors>Megan Hochstrasser</pubmed_authors><pubmed_authors>Tara Essock-Burns</pubmed_authors><pubmed_authors>David Mets</pubmed_authors><pubmed_authors>Audrey Bell</pubmed_authors><pubmed_authors>Ryan Lane</pubmed_authors><pubmed_authors>Keith Cheveralls</pubmed_authors></additional><is_claimable>false</is_claimable><name>A high-throughput imaging assay for phenotyping unicellular swimming</name><description>Motility is a phenotypic readout that indicates an organism’s integration of sensory input from its environment with its ability to move. We developed a microscopy workflow and image analysis pipeline to track motility phenotypes from unicellular algae in high-throughput.</description><dates><release>2024-07-30T00:00:00Z</release><modification>2024-07-30T00:23:19.726Z</modification><creation>2024-07-30T00:23:19.726Z</creation></dates><accession>S-BIAD1298</accession><cross_references/></HashMap>