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leica_stellaris_sted_flim [2026/09/04 01:53]
bioimaging
leica_stellaris_sted_flim [2026/09/10 15:31] (current)
bioimaging [LASERs]
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 ===== Microscope overview ===== ===== Microscope overview =====
  
-{{  :​sted_principle.png?​250}} The Leica STELLARIS STED FLIM is a [[https://​www.youtube.com/​watch?​v=rTkjQ6Q0p5I|point scanning confocal microscope]] designed for advanced fluorescence imaging, ​super-resolution ​microscopy ​and fluorescence lifetime ​measurements. Built on the [[https://​www.leica-microsystems.com/​products/​confocal-microscopes/​p/​leica-stellaris/​|Leica STELLARIS platform]], it combines ​a [[https://​www.leica-microsystems.com/​science-lab/​life-science/​stellaris-white-light-lasers/​|White Light LASER]] (WLL) excitation ​source,  an Acousto-Optical Beam Splitter (AOBS), highly sensitive [[https://​www.leica-microsystems.com/​science-lab/​life-science/​power-hyd-detectors/​|Power HyD detectors]] and prism-based ​spectral detection ​to provide ​flexible ​excitation of up to 8 simultaneous laser lines from 440 to 790 nm. When combined with the Power HyD R detector, you can detect fluorophores in the near infrared ​range (up to 850 nm) such as Cy7. It is also equipped with a 405 nm diode laser, a motorized ​XY scanning ​stage, ​a SuperZ Galvo Stage for rapid Z acquisition, ​and an Adaptive Focus Control ​(AFC) closed-loop hardware autofocus system for long-term stability during time-lapse experiments. A large environmental ​enclosure ​with temperature and CO2 control enables ​live-cell imaging ​under physiological conditions. ​The confocal scanhead incorporates a field-of-view scanner with galvanometric mirrors optimized for high resolution and sensitivity and includes a Power HyD X detector ​optimized for [[https://​www.leica-microsystems.com/​science-lab/life-science/a-guide-to-fluorescence-lifetime-imaging-microscopy-flim/|fluorescence lifetime imaging ​(FLIM)]]. FLIM measures the lifetime of fluorophores,​ a photophysical property that is independent of fluorescence intensity and can be used to perform Förster Resonance Energy Transfer (FRET) experiments, enabling ​quantitative studies of molecular interactions, environmental sensing and dynamic cellular processes. The system includes ​[[https://​www.leica-microsystems.com/​products/confocal-microscopes/p/stellaris-8-falcon/|STELLARIS FALCON (FAst Lifetime CONtrast)]], providing fluorescence lifetime imaging microscopy (FLIM) at confocal imaging speeds supporting exponential fitting, [[https://​www.leica-microsystems.com/​science-lab/​life-science/​phasor-analysis-for-flim-fluorescence-lifetime-imaging-microscopy/​|FLIM phasor analysis]], pattern fitting ​and [[https://​www.leica-microsystems.com/​science-lab/​life-science/​what-is-fret-with-flim/|FLIM-FRET analysis]]. For super-resolution imaging, the system is equipped with STED technology, including ​pulsed 589 nm and 775 nm depletion lasers, ​enabling imaging with resolution well below the diffraction limit. ​The 3D STED module provides tunable super-resolution in X, Y and Z, while [[https://​www.leica-microsystems.com/​science-lab/​life-science/​extended-live-cell-imaging-at-nanoscale-resolution/​|TauSTED Xtend]] combines STED and fluorescence ​lifetime information to improve image quality, contrast ​and resolution ​at lower light doses, making ​it particularly suitable for live-cell ​super-resolution ​imaging. The system supports multicolour STED imaging across much of the visible spectrum and facilitates the investigation of molecular organization,​ interactions and nanoscale cellular structures. +{{  :​sted_principle.png?​240}} The Leica STELLARIS STED FLIM is a [[https://​www.youtube.com/​watch?​v=rTkjQ6Q0p5I|point scanning confocal microscope]] designed for advanced fluorescence imaging, ​[[https://​www.leica-microsystems.com/​science-lab/​life-science/​a-guide-to-fluorescence-lifetime-imaging-microscopy-flim/|fluorescence lifetime ​imaging (FLIM)]] and super-resolution microscopy. Built on the [[https://​www.leica-microsystems.com/​products/​confocal-microscopes/​p/​leica-stellaris/​|Leica STELLARIS platform]], it features ​a [[https://​www.leica-microsystems.com/​science-lab/​life-science/​stellaris-white-light-lasers/​|White Light LASER]] (440-790 nm) and 405 nm laser as excitation ​sources, AOBS beam splitting, highly sensitive [[https://​www.leica-microsystems.com/​science-lab/​life-science/​power-hyd-detectors/​|Power HyD detectors]] and spectral detection ​for flexible ​multicolor imaging, including ​near-infrared ​fluorophores ​up to 850 nm, such as Cy7. The system ​is optimized for live-cell imaging, featuring ​a motorized stage, SuperZ Galvo Stage for rapid Z acquisition, ​hardware autofocus ​(AFC) and a temperature- and CO₂-controlled Okolab dark enclosure ​for live-cell imaging ​in physiological conditions. ​FLIM capabilities are provided by the Power HyD X detector ​and [[https://​www.leica-microsystems.com/​products/confocal-microscopes/p/stellaris-8-falcon/|STELLARIS FALCON ​(FAst Lifetime CONtrast)]], enabling ​fast lifetime imaging, [[https://​www.leica-microsystems.com/​science-lab/life-science/what-is-fret-with-flim/|FLIM-FRET experiments]], [[https://​www.leica-microsystems.com/​science-lab/​life-science/​phasor-analysis-for-flim-fluorescence-lifetime-imaging-microscopy/​|phasor analysis]] and [[https://​www.leica-microsystems.com/​science-lab/​life-science/​tausense-technology-imaging-tools/|TauSense]] lifetime-based contrast and multiplexing tools. 
 +For super-resolution imaging, the system is equipped with [[https://​www.leica-microsystems.com/​science-lab/​life-science/​a-guide-to-super-resolution/​|2D and 3D STED technology]] using pulsed 589 nm and 775 nm depletion lasers, ​providing ​resolution well below the diffraction limit. [[https://​www.leica-microsystems.com/​science-lab/​life-science/​extended-live-cell-imaging-at-nanoscale-resolution/​|TauSTED Xtend]] combines STED and lifetime information to improve image quality and resolution ​while reducing ​light exposure, making ​the system ​particularly suitable for live-cell ​nanoscale ​imaging. ​
  
   * **Microscope**:​ [[https://​www.leica-microsystems.com/​products/​light-microscopes/​p/​dmi8/​|Leica DMi8 CS inverted]]   * **Microscope**:​ [[https://​www.leica-microsystems.com/​products/​light-microscopes/​p/​dmi8/​|Leica DMi8 CS inverted]]
   * **LED Illumination**:​ [[https://​www.coolled.com/​products/​pe-300white/​|CoolLED pE-300white]]   * **LED Illumination**:​ [[https://​www.coolled.com/​products/​pe-300white/​|CoolLED pE-300white]]
-  * **Detectors**:​ [[https://​www.leica-microsystems.com/​science-lab/​life-science/​power-hyd-detectors/​|Power hybrid detectors]] ​(Power HyD S, Power HyD X, and Power HyD R) +  * **Detectors**:​ [[https://​www.leica-microsystems.com/​science-lab/​life-science/​power-hyd-detectors/​|Power hybrid detectors]] ​ 
 +    * Power HyD S 
 +    * Power HyD X for FLIM imaging 
 +    * Power HyD R for near-infrared imaging  ​
   * **Features**   * **Features**
     * |  [[https://​www.leica-microsystems.com/​science-lab/​life-science/​a-guide-to-super-resolution/​|2D and 3D Super Resolution STED]]     * |  [[https://​www.leica-microsystems.com/​science-lab/​life-science/​a-guide-to-super-resolution/​|2D and 3D Super Resolution STED]]
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 ^  LASER  ^  Wavelength ​ ^ ^  LASER  ^  Wavelength ​ ^
 |  Violet ​ |  <fc #​a600ff>​405 nm</​fc> ​ | |  Violet ​ |  <fc #​a600ff>​405 nm</​fc> ​ |
-|  WLL  |  <fc #0000ff>440 nm</​fc>​ - <fc #​be0000>​790 nm</​fc> ​ |+|  WLL  |  <fc #0071ff>440 nm</​fc>​ - <fc #​be0000>​790 nm</​fc> ​ |
  
 ==== Filterset (for eyepieces) ==== ==== Filterset (for eyepieces) ====
leica_stellaris_sted_flim.1788479622.txt.gz · Last modified: 2026/09/04 01:53 by bioimaging