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zeiss_cell_observer [2024/01/28 12:31] bioimaging [Microscope overview] |
zeiss_cell_observer [2024/01/31 10:55] bioimaging |
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* **Camera** (left port): [[https://asset-downloads.zeiss.com/catalogs/download/mic/a8e5b4d7-25f6-4069-8f03-c6713d044c87/EN_product-info_Axiocam-506_mono.pdf|Axiocam 506 mono CCD]] | * **Camera** (left port): [[https://asset-downloads.zeiss.com/catalogs/download/mic/a8e5b4d7-25f6-4069-8f03-c6713d044c87/EN_product-info_Axiocam-506_mono.pdf|Axiocam 506 mono CCD]] | ||
* **Camera** (right port): [[https://www.photometrics.com/products/prime-family/primebsiexpress|Photometrics Prime BSI Express sCMOS]] | * **Camera** (right port): [[https://www.photometrics.com/products/prime-family/primebsiexpress|Photometrics Prime BSI Express sCMOS]] | ||
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+ | {{::phenocycler.png?260 |}}This system is also set up to work together with the [[https://www.youtube.com/watch?v=OQGJX45Wsgw|AKOYA PhenoCycler]] fluidics instrument for automated iterative imaging cycles of whole slide tissues for [[https://www.akoyabio.com/why-spatial-biology/|Spatial Biology]] applications, such as image-based quantification of biomarkers to predict immunotherapy response, or quantification of cells by lineage and variant with single-cell resolution in the context of an intact tissue sample. | ||
+ | |||
+ | * [[https://www.youtube.com/watch?v=OQGJX45Wsgw|Understanding the PhenoCycler Technology]] | ||
+ | * [[https://www.akoyabio.com/webinar/a-beginners-guide-to-codex/|A Beginner’s Guide to CODEX]] | ||
+ | * [[https://www.akoyabio.com/webinar/spatial-phenotyping-a-revolutionary-approach-to-biomarker-discovery-for-cancer-immunotherapy/|Spatial Phenotyping: A Revolutionary Approach to Biomarker Discovery for Cancer Immunotherapy]] | ||
{{:warning.png?25|}} Data files older than **15 days** will be automatically deleted on this system, please copy your data to the iMM server using the desktop link. | {{:warning.png?25|}} Data files older than **15 days** will be automatically deleted on this system, please copy your data to the iMM server using the desktop link. | ||
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* Turn on the temperature and CO2 controller - white power strip (if you need them). | * Turn on the temperature and CO2 controller - white power strip (if you need them). | ||
* If you need CO2, open the Cell Observer CO2 valve | * If you need CO2, open the Cell Observer CO2 valve | ||
- | * Turn on the motorized stage controller (**A** on remote control) | + | * Turn on the motorized stage controller (**1** on remote control) |
{{zeiss_axio_observer_a.jpg?height=150|}} | {{zeiss_axio_observer_a.jpg?height=150|}} | ||
- | * Turn on the microscope power supply (**B** on remote control) | + | * Turn on the microscope power supply (**2** on remote control) |
{{zeiss_axio_observer_b.jpg?height=150|}} | {{zeiss_axio_observer_b.jpg?height=150|}} | ||
* Turn on the computer | * Turn on the computer | ||
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{{::workspace_selection.png?250|}} | {{::workspace_selection.png?250|}} | ||
- | ===== Microscope Turn Off procedures ===== | + | ===== System Turn Off procedures ===== |
If there is another user for this microscope is the __next hour__: | If there is another user for this microscope is the __next hour__: | ||
* Leave the fluorescent light source on | * Leave the fluorescent light source on | ||
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{{:cell_observer_pc_vs_ups.png?250|}} | {{:cell_observer_pc_vs_ups.png?250|}} | ||
* Clean up immersion objectives | * Clean up immersion objectives | ||
- | * Turn off the microscope power supply (**B** on remote control) | + | * Turn off the microscope power supply (**2** on remote control) |
- | * Turn off the motorized stage controller (**A** on remote control) | + | * Turn off the motorized stage controller (**1** on remote control) |
* Turn off the Temperature and CO2 controller - white power strip (if used) | * Turn off the Temperature and CO2 controller - white power strip (if used) | ||
* Close the Cell Observer CO2 valve (if used) | * Close the Cell Observer CO2 valve (if used) |