{"id":9268,"date":"2025-02-28T16:43:48","date_gmt":"2025-02-28T15:43:48","guid":{"rendered":"https:\/\/soliton-gmbh.de\/?post_type=product&#038;p=9268"},"modified":"2026-04-15T23:43:42","modified_gmt":"2026-04-15T21:43:42","slug":"atomic-force-microscope-afm-copy","status":"publish","type":"product","link":"https:\/\/soliton-gmbh.de\/en\/produkt\/rasterkraftmikroskop-afm-kopie\/","title":{"rendered":"confocal microscope STED"},"content":{"rendered":"<article class=\"w-full text-token-text-primary focus-visible:outline-2 focus-visible:outline-offset-[-4px]\" dir=\"auto\" data-testid=\"conversation-turn-13\" data-scroll-anchor=\"true\">\n<div class=\"text-base my-auto mx-auto py-[18px] px-6\">\n<div class=\"mx-auto flex flex-1 text-base gap-4 md:gap-5 lg:gap-6 md:max-w-3xl lg:max-w-[40rem] xl:max-w-[48rem]\">\n<div class=\"group\/conversation-turn relative flex w-full min-w-0 flex-col agent-turn @xs\/thread:px-0 @sm\/thread:px-1.5 @md\/thread:px-4\">\n<div class=\"flex-col gap-1 md:gap-3\">\n<div class=\"flex max-w-full flex-col flex-grow\">\n<div class=\"min-h-8 text-message relative flex w-full flex-col items-end gap-2 whitespace-normal break-words text-start [.text-message+&amp;]:mt-5\" dir=\"auto\" data-message-author-role=\"assistant\" data-message-id=\"e2f3a210-a47f-4d7a-8c33-b958f447948c\" data-message-model-slug=\"gpt-4o\">\n<div class=\"flex w-full flex-col gap-1 empty:hidden first:pt-[3px]\">\n<div class=\"markdown prose w-full break-words dark:prose-invert dark\">\n<p data-start=\"132\" data-end=\"532\">Das <strong data-start=\"136\" data-end=\"194\">Konfokalmikroskop STED (Stimulated Emission Depletion)<\/strong> erm\u00f6glicht die hochaufl\u00f6sende Beobachtung von Fluoreszenzstrukturen. Dabei erreicht es eine r\u00e4umliche Aufl\u00f6sung unterhalb des Beugungslimits. Durch den Einsatz von gepulster Anregung und gepulster Depletion (pSTED) verbessert das Alba STED die laterale Aufl\u00f6sung erheblich. So sind Werte zwischen 60 und 100 nm m\u00f6glich.<\/p>\n<p data-start=\"534\" data-end=\"1013\">Zus\u00e4tzlich steigert die Lebensdauerinformation die Aufl\u00f6sung weiter. Diese wird durch FastFLIM (digitale Frequenzbereichs-Lebensdauerabbildung) und die Nutzung des Phasordiagramms erfasst. Dadurch lassen sich Photonen, die ausschlie\u00dflich durch den Anregungslaser aktiviert wurden, effizient von jenen trennen, die durch den STED-Laser beeinflusst wurden. So entsteht eine gemessene Aufl\u00f6sung von bis zu 30 nm, die kleinste Zellstrukturen sichtbar macht.<\/p>\n<h2 data-start=\"1015\" data-end=\"1051\"><strong data-start=\"1018\" data-end=\"1049\">Hauptmerkmale des Alba STED<\/strong><\/h2>\n<p data-start=\"1052\" data-end=\"1443\">Das <strong data-start=\"1056\" data-end=\"1087\">Alba STED Konfokalmikroskop<\/strong> \u00fcberzeugt mit zahlreichen innovativen Funktionen. So bietet es einen hohen Dynamikbereich von bis zu 60 Millionen Z\u00e4hlungen pro Sekunde. Dadurch werden selbst feinste Strukturen detailgetreu erfasst. Zudem erm\u00f6glicht die schnelle Bildakquisition mit einer Verweilzeit von nur 0,2 \u00b5s pro Pixel eine pr\u00e4zise und z\u00fcgige Analyse biologischer Proben.<\/p>\n<p data-start=\"1445\" data-end=\"1851\">Dar\u00fcber hinaus verbessert die lebensdauerbasierte Bildverarbeitung die Aufl\u00f6sung erheblich. Hierbei helfen FastFLIM und die Phasordiagramm-Technologie, indem sie verschiedene Fluorophore anhand ihrer Abklingzeiten unterscheiden. Schlie\u00dflich erzielt die STED-Technologie eine laterale Aufl\u00f6sung von bis zu 30 nm. So lassen sich Zellstrukturen weit unterhalb des Beugungslimits sichtbar machen.<\/p>\n<h2 data-start=\"1853\" data-end=\"1892\"><strong data-start=\"1856\" data-end=\"1890\">Vielf\u00e4ltige Anwendungsbereiche<\/strong><\/h2>\n<p data-start=\"1893\" data-end=\"2184\">Dank dieser fortschrittlichen Eigenschaften eignet sich das <strong data-start=\"1953\" data-end=\"1984\">Alba STED Konfokalmikroskop<\/strong> f\u00fcr zahlreiche Anwendungen. So profitieren Zellbiologen von der M\u00f6glichkeit, subzellul\u00e4re Strukturen wie Organellen oder Membranproteine mit bislang unerreichter Detailtiefe zu analysieren.<\/p>\n<p data-start=\"2186\" data-end=\"2493\">Au\u00dferdem bietet das System in der Neurobiologie entscheidende Vorteile. Es erm\u00f6glicht die pr\u00e4zise Darstellung neuronaler Netzwerke und synaptischer Verbindungen. Dar\u00fcber hinaus setzen Materialwissenschaftler das Mikroskop ein, um die Nanostrukturen fluoreszierender Materialien zu untersuchen.<\/p>\n<p data-start=\"2495\" data-end=\"2693\" data-is-last-node=\"\" data-is-only-node=\"\">Schlie\u00dflich spielt das <strong data-start=\"2518\" data-end=\"2531\">Alba STED<\/strong> auch in der medizinischen Forschung eine wichtige Rolle. Es wird beispielsweise zur Untersuchung von Krankheitsmechanismen auf molekularer Ebene genutzt.<\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<\/article>\n<h4><strong>Kontakt<\/strong><\/h4>\n<p>Haben Sie Fragen zum <strong>Alba STED <\/strong>oder ben\u00f6tigen Sie eine individuelle Beratung f\u00fcr Ihre Anwendung?\u00a0<strong>Kontaktieren Sie uns gerne<\/strong>\u00a0\u2013 unser Expertenteam hilft Ihnen, die optimale L\u00f6sung f\u00fcr Ihre Anforderungen zu finden.<\/p>\n","protected":false},"excerpt":{"rendered":"<p><a href=\"https:\/\/soliton-gmbh.de\/wp-content\/uploads\/2025\/02\/ISS-Logo.jpg\"><img loading=\"lazy\" decoding=\"async\" class=\"alignnone wp-image-9276\" src=\"https:\/\/soliton-gmbh.de\/wp-content\/uploads\/2025\/02\/ISS-Logo-300x156.jpg\" alt=\"\" width=\"150\" height=\"78\" srcset=\"https:\/\/soliton-gmbh.de\/wp-content\/uploads\/2025\/02\/ISS-Logo-300x156.jpg 300w, https:\/\/soliton-gmbh.de\/wp-content\/uploads\/2025\/02\/ISS-Logo-768x399.jpg 768w, https:\/\/soliton-gmbh.de\/wp-content\/uploads\/2025\/02\/ISS-Logo-18x9.jpg 18w, https:\/\/soliton-gmbh.de\/wp-content\/uploads\/2025\/02\/ISS-Logo-600x312.jpg 600w, https:\/\/soliton-gmbh.de\/wp-content\/uploads\/2025\/02\/ISS-Logo.jpg 800w\" sizes=\"auto, (max-width: 150px) 100vw, 150px\" \/><\/a><\/p>\n<ul>\n<li>High dynamic range<\/li>\n<li>Fast image capture<\/li>\n<li>Improved image resolution thanks to Phasor Plot<\/li>\n<li>dual-label stimulation<\/li>\n<\/ul>","protected":false},"featured_media":9269,"template":"","meta":{"_acf_changed":false,"_uag_custom_page_level_css":"","site-sidebar-layout":"default","site-content-layout":"","ast-site-content-layout":"default","site-content-style":"default","site-sidebar-style":"default","ast-global-header-display":"","ast-banner-title-visibility":"","ast-main-header-display":"","ast-hfb-above-header-display":"","ast-hfb-below-header-display":"","ast-hfb-mobile-header-display":"","site-post-title":"","ast-breadcrumbs-content":"","ast-featured-img":"","footer-sml-layout":"","ast-disable-related-posts":"","theme-transparent-header-meta":"default","adv-header-id-meta":"","stick-header-meta":"default","header-above-stick-meta":"","header-main-stick-meta":"","header-below-stick-meta":"","astra-migrate-meta-layouts":"set","ast-page-background-enabled":"default","ast-page-background-meta":{"desktop":{"background-color":"","background-image":"","background-repeat":"repeat","background-position":"center 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