{"id":38,"date":"2015-10-05T23:26:56","date_gmt":"2015-10-05T22:26:56","guid":{"rendered":"http:\/\/hebergement.u-psud.fr\/leveque-fort\/?page_id=38"},"modified":"2015-10-12T20:11:25","modified_gmt":"2015-10-12T19:11:25","slug":"donald-saf-dstorm","status":"publish","type":"page","link":"https:\/\/hebergement.universite-paris-saclay.fr\/leveque-fort\/?page_id=38","title":{"rendered":"DONALD = SAF + dSTORM"},"content":{"rendered":"<p>One of the main challenge in SMLM is to improve the axial positioning accuracy which is typically between 20 and 50 nm, and which gives only a relative positioning of the fluorophores. By coupling a dSTORM microscope with a detection module providing access to the supercritical angle fluorescence emission (SAF), the axial position of the fluorophore can be retrieved and gives the absolute distance regarding the glass slide supporting the cell.\u00a0 Only the detection path of the microscope is modify to insert a home made dual view module.\u00a0 The DONALD microscopy (Direct Optical Nanoscopy with Axially Localized Detection) achieves an isotropic resolution below 20 nm. This technique has just been the object of a publication in Nature Photonics <a class=\"spip_url spip_out\" href=\"http:\/\/www.nature.com\/nphoton\/journal\/vaop\/ncurrent\/full\/nphoton.2015.132.html\" rel=\"external\">http:\/\/www.nature.com\/nphoton\/journ&#8230;<\/a>. A video summary is also available (<a class=\"spip_url spip_out\" href=\"https:\/\/youtu.be\/Wf8iHYww9lY\" rel=\"external\">https:\/\/youtu.be\/Wf8iHYww9lY<\/a>) or (<a class=\"spip_url spip_out\" href=\"https:\/\/vimeo.com\/135072198\" rel=\"external\">https:\/\/vimeo.com\/135072198<\/a>).<\/p>\n<p><a href=\"http:\/\/hebergement.u-psud.fr\/leveque-fort\/wp-content\/uploads\/2015\/10\/donald.png\"><img loading=\"lazy\" class=\"aligncenter size-large wp-image-80\" src=\"http:\/\/hebergement.u-psud.fr\/leveque-fort\/wp-content\/uploads\/2015\/10\/donald-1024x725.png\" alt=\"donald\" width=\"625\" height=\"443\" srcset=\"https:\/\/hebergement.universite-paris-saclay.fr\/leveque-fort\/wp-content\/uploads\/2015\/10\/donald-1024x725.png 1024w, https:\/\/hebergement.universite-paris-saclay.fr\/leveque-fort\/wp-content\/uploads\/2015\/10\/donald-300x213.png 300w, https:\/\/hebergement.universite-paris-saclay.fr\/leveque-fort\/wp-content\/uploads\/2015\/10\/donald-624x442.png 624w, https:\/\/hebergement.universite-paris-saclay.fr\/leveque-fort\/wp-content\/uploads\/2015\/10\/donald.png 1427w\" sizes=\"(max-width: 625px) 100vw, 625px\" \/><\/a><\/p>\n<p>The localization obtained with DONALD allows us to image the microtubules network labeled with Alexa 647 and in particular to evidence\u00a0 the hollowness.<\/p>\n<p><a href=\"http:\/\/hebergement.u-psud.fr\/leveque-fort\/wp-content\/uploads\/2015\/10\/microtubule_donald.png\"><img loading=\"lazy\" class=\"aligncenter size-large wp-image-68\" src=\"http:\/\/hebergement.u-psud.fr\/leveque-fort\/wp-content\/uploads\/2015\/10\/microtubule_donald-1024x402.png\" alt=\"microtubule_donald\" width=\"625\" height=\"245\" srcset=\"https:\/\/hebergement.universite-paris-saclay.fr\/leveque-fort\/wp-content\/uploads\/2015\/10\/microtubule_donald-1024x402.png 1024w, https:\/\/hebergement.universite-paris-saclay.fr\/leveque-fort\/wp-content\/uploads\/2015\/10\/microtubule_donald-300x118.png 300w, https:\/\/hebergement.universite-paris-saclay.fr\/leveque-fort\/wp-content\/uploads\/2015\/10\/microtubule_donald-624x245.png 624w, https:\/\/hebergement.universite-paris-saclay.fr\/leveque-fort\/wp-content\/uploads\/2015\/10\/microtubule_donald.png 1221w\" sizes=\"(max-width: 625px) 100vw, 625px\" \/><\/a><a href=\"http:\/\/hebergement.u-psud.fr\/leveque-fort\/wp-content\/uploads\/2015\/10\/microtubule_hollowness_donald.png\"><img loading=\"lazy\" class=\"aligncenter size-medium wp-image-83\" src=\"http:\/\/hebergement.u-psud.fr\/leveque-fort\/wp-content\/uploads\/2015\/10\/microtubule_hollowness_donald-300x160.png\" alt=\"microtubule_hollowness_donald\" width=\"300\" height=\"160\" srcset=\"https:\/\/hebergement.universite-paris-saclay.fr\/leveque-fort\/wp-content\/uploads\/2015\/10\/microtubule_hollowness_donald-300x160.png 300w, https:\/\/hebergement.universite-paris-saclay.fr\/leveque-fort\/wp-content\/uploads\/2015\/10\/microtubule_hollowness_donald-1024x547.png 1024w, https:\/\/hebergement.universite-paris-saclay.fr\/leveque-fort\/wp-content\/uploads\/2015\/10\/microtubule_hollowness_donald-624x333.png 624w, https:\/\/hebergement.universite-paris-saclay.fr\/leveque-fort\/wp-content\/uploads\/2015\/10\/microtubule_hollowness_donald.png 1336w\" sizes=\"(max-width: 300px) 100vw, 300px\" \/><\/a><\/p>\n<p>3D image\u00a0 actin network labeled with the Alexa 488, on the left representing the diffraction limited image\u00a0\u00a0 where the subnetwork is not discernable in contrast to the super-resolved DONALD image (right part of the image )\u00a0<span class=\"spip_document_1766 spip_documents\"> <img loading=\"lazy\" class=\" aligncenter\" src=\"http:\/\/www.ismo.u-psud.fr\/local\/cache-vignettes\/L775xH738\/Affiche_2-fe8e5.jpg\" alt=\"\" width=\"494\" height=\"470\" \/><\/span><\/p>\n<p>This work is developped in collaboration with Institut Langevin-ESPCI PArisTech (team E. Fort) et le Centre de photonique biom\u00e9dicale de Paris Sud (G. Dupuis, S.L\u00e9cart). We were funded by the ANR and the DIM NanoK.<\/p>\n","protected":false},"excerpt":{"rendered":"<p>One of the main challenge in SMLM is to improve the axial positioning accuracy which is typically between 20 and 50 nm, and which gives only a relative positioning of the fluorophores. By coupling a dSTORM microscope with a detection module providing access to the supercritical angle fluorescence emission (SAF), the axial position of the [&hellip;]<\/p>\n","protected":false},"author":1,"featured_media":0,"parent":60,"menu_order":1,"comment_status":"closed","ping_status":"closed","template":"","meta":[],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v17.7.1 - https:\/\/yoast.com\/wordpress\/plugins\/seo\/ -->\n<meta name=\"robots\" content=\"index, follow, max-snippet:-1, max-image-preview:large, max-video-preview:-1\" \/>\n<link rel=\"canonical\" href=\"https:\/\/hebergement.universite-paris-saclay.fr\/leveque-fort\/?page_id=38\" \/>\n<meta property=\"og:locale\" content=\"en_US\" \/>\n<meta property=\"og:type\" content=\"article\" \/>\n<meta property=\"og:title\" content=\"DONALD = SAF + dSTORM - From Microscopy to Nanoscopy\" \/>\n<meta property=\"og:description\" content=\"One of the main challenge in SMLM is to improve the axial positioning accuracy which is typically between 20 and 50 nm, and which gives only a relative positioning of the fluorophores. 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