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zeiss_lsm_980

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Location: Room P2-A-24 ( 47219)
Manufacturer: ZEISS Microscopy
Model: LSM 980 with Airyscan 2
Nickname: "980"
Software: ZEN 3.5 (blue edition)
Year: 2021
SN: 2841000239
 
 
 
 
Zeiss LSM 980 Quality Control
Zeiss LSM 980 Usage Statistics

page under construction

Microscope overview

The Zeiss LSM 980 with Airyscan 2 is a point-scanning confocal microscope able to generate high-resolution three-dimensional images of thick specimens with high sensitivity, high speed and low photodamage. It is an inverted microscope especially suitable for live cell imaging and photobleaching experiments, equipped with a dark large cage incubator and a stage top incubator for temperature control and CO2 supply and with Definite Focus.2 for hardware focus control during long time-lapse acquisitions. The stage is motorized and furthermore equipped with a piezo for Z displacement so fast 4D imaging is possible in multiple stage positions, using the Tiles Advanced Setup of ZEN blue. Its Airyscan 2 with 32 concentrically arranged GaAsP detection elements is able to collect all light from an Airy pattern simultaneously, allowing for increased resolution (120 nm laterally and 400 nm axially in SR mode, at 488 nm). It can also be used in Multiplex Mode, which enables parallel excitation and detection in 4Y or 8Y modes. The result is a speed improvement by a factor of 4x/8x, while maintaining the sensitivity of Airyscan. Its scanning unit further includes two PMT detectors as well as a GaAsP detector for increased sensitivity (45% QE compared to ~25% QE for conventional PMT). It is equipped with lasers from violet to far red (405, 488, 561 and 639 nm excitation wavelengths). With this system you can perform optical sectioning of fluorescent samples which are too thick for a widefield system such as the Zeiss Cell Observer. Image resolution with Airyscan 2 is higher than the Zeiss LSM 710 and detection sensitivity is also higher than the spinning disks 3i Marianas SDC and Zeiss Cell Observer SD. If your personal computer cannot handle all the data you collected, check out the Colossus.

Data files older than 1 month will be automatically deleted on this system, please copy your data to the iMM server using the desktop link.

Additional information

Booking Rules

  1. Users can book at maximum 8 hours per week
  2. This usage restriction does not apply for weekends and for working days before 9:00 and after 21:00
  3. Exceptions to these rules require approval from José Rino.

System components

LASERs

Laser Unit Wavelength Maximum Power
405 405 nm 15 mW
488 488 nm 13 mW
561 561 nm 13 mW
639 639 nm 10 mW

Objectives

Magnification Model Immersion NA WD (mm) Reference
10x EC Plan-Neofluar Air 0.30 5.20 420340-9901-000
20x Plan-Apochromat Air 0.80 0.55 420650-9903-000
40x LD C-Apochromat Corr Water 1.10 0.62 421867-9970-000
63x Plan-Apochromat DIC Oil 1.40 0.19 420782-9900-799

Upon request:

Magnification Model Immersion NA WD (mm) Reference
25x LCI Plan-Neofluar Corr DIC Oil/Glyc/W 0.80 0.21 420852-9972-000
40x Plan-Apochromat Corr Dry 0.95 0.25 420660-9970-000

Filtersets (Ocular)

Position Filterset Reference Excitation Dichroic Emission
1 Green FS38HE 450-490 nm 495 nm 500-550 nm
2 Red FS43 533-558 nm 570 nm 570-640 nm
3 Blue FS49 G 365 nm 395 nm 420-470 nm

Microscope Turn On Procedure

  • Turn on the MAIN SWITCH

zeiss_lsm_880_1.jpg

  • Turn on the SYSTEMS/PC switch
  • Turn on the computer
  • Login in to Windows (Bioimaging User)
  • Turn on the COMPONENTS switch
  • Start the ZEN Black software

Microscope Turn Off Procedure

If there is another user for this microscope in the next hour:

  • Exit the ZEN software, leave the lasers on
  • Log off the computer
  • Clean up immersion objectives

Else:

  • Turn off the lasers on ZEN
  • Clean up immersion objectives
  • Exit the ZEN software
  • Shutdown the computer
  • Turn off the two switches SYSTEMS/PC and COMPONENTS
  • Wait 5 min. for Ar laser to cool down
  • Turn off the MAIN SWITCH

Back to the Equipment page

zeiss_lsm_980.1662070900.txt.gz · Last modified: 2022/09/02 00:21 by bioimaging