Zeiss LSM980: Unterschied zwischen den Versionen

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= Type of device =
= Type of device =
Confocal laser scanning microscope by Zeiss
Confocal laser scanning microscope by Zeiss
<br />LSM980 with Airyscan 2




Zeile 12: Zeile 13:
:Inverse microscope LSM 980
:Inverse microscope LSM 980
:Incubator XLmulti S1 with temperature control
:Incubator XLmulti S1 with temperature control
:Optional lid for CO2 and O2 control
:Optional lid for CO<sub>2</sub> and O<sub>2</sub> control
:z-piezo
:z-piezo
:LED Colibri 7
:LED Colibri 7
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{| border="2"
{| border="2"
|style="width:200px; text-align:left;" |Affiliation:    ||style="width:500px; text-align:left;" |
|style="width:200px; text-align:left;" |Affiliation:    ||style="width:500px; text-align:left;" |
:XXXX
:Research Group of Cellular Biophysics, Institute of Physics, University of Greifswald
|-
|-
|Location: ||  
|Location: ||  
:XXXX
:University of Greifswald
:Research Group of Cellular Biophysics
:Institute of Physics
:Friedrich-Ludwig-Jahn-Str. 15a
:17489 Greifswald
 
|-
|-
|Contact person: ||  
|Contact person: ||  
:XXXX
:Dr. rer. nat. Stefanie Spiegler
: stefanie.spiegler@uni-greifswald.de | Phone: 03834 / 420 5609
|-
|-
|Terms of use: ||  
|Terms of use: ||  
:XXXX
:
|-
|-
|Biosafety level: ||  
|Biosafety level: ||  
:S1
:S1
|}
|}

Aktuelle Version vom 26. Januar 2026, 10:00 Uhr

Type of device

Confocal laser scanning microscope by Zeiss
LSM980 with Airyscan 2


Short description

The Zeiss LSM980 with Airyscan 2 is optimized for the simultaneous spectral detection of multiple weak labels with highest light efficiency. It offers excellent imaging performance combined with low phototoxicity and high speed. It can be used for multi-color experiments with living or fixed samples with highest sensitivity and spectral flexibility.


Instrument parameters

Technical specifications:
Inverse microscope LSM 980
Incubator XLmulti S1 with temperature control
Optional lid for CO2 and O2 control
z-piezo
LED Colibri 7
Definite Focus 2
T-PMT detector for transmission
Airyscan 2 with 32 GaAsP-detector elements for Super-resolution imaging
Objectives:
Plan-Apochromat 10x/0,45 M27
Plan-Apochromat 20x/0,8 M27
Plan-Apochromat 40x/0,95 Korr M27
LD LCI Plan-Apochromat 40x/1,2 Imm Korr DIC M27
Plan-Apochromat 63x/1,4 Oil DIC M27
Laser:
Dioden Laser 405 nm
Dioden Laser 488 nm
DPSS Laser 561 nm
Dioden Laser 639 nm
Software:
ZEN blue


Methods & Expertise

Tiles, z-stack, time series, bleaching, FRAP


Reference publications

Komaragiri, Y. , Pires, R. H., Spiegler, S, Dau, H. T., Biedenweg, D., Salas, C. O., Hossain, Md. F., Fregin, B., Gross, S., Gellert, M., Lendeckel, U., Lillig, C. & Otto, O. (2024) Reactive oxygen species induce cell stiffening through lysosomal degradation and subsequent intracellular acidosis in myeloid precursor cells. Communications Physics 7:252


Affiliation, Contact & Terms of use

Affiliation:
Research Group of Cellular Biophysics, Institute of Physics, University of Greifswald
Location:
University of Greifswald
Research Group of Cellular Biophysics
Institute of Physics
Friedrich-Ludwig-Jahn-Str. 15a
17489 Greifswald
Contact person:
Dr. rer. nat. Stefanie Spiegler
stefanie.spiegler@uni-greifswald.de | Phone: 03834 / 420 5609
Terms of use:
Biosafety level:
S1