Team:Heidelberg/Project/Measurement Standard
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Laura Nadine (Talk | contribs) (→Methods) |
Laura Nadine (Talk | contribs) (→Methods) |
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To analyze the fluorescence of single cells, we segmented the images using ImageJ. In 8bit pictures, we set the threshold for each channel to 50, thereby filtering the background. This allows us to annotate cells automatically using the “analyze particles” tool. We could now get the fluorescence intensity for each single cell on each channel (GFP or BFP) as an 8bit output, i.e. a value between 50 and 255. Form this data, we calculated the GFP:BFP ratio. We could then visualize the mean of these rations in a bar plot or use all the data to calculate a linear regression curve. | To analyze the fluorescence of single cells, we segmented the images using ImageJ. In 8bit pictures, we set the threshold for each channel to 50, thereby filtering the background. This allows us to annotate cells automatically using the “analyze particles” tool. We could now get the fluorescence intensity for each single cell on each channel (GFP or BFP) as an 8bit output, i.e. a value between 50 and 255. Form this data, we calculated the GFP:BFP ratio. We could then visualize the mean of these rations in a bar plot or use all the data to calculate a linear regression curve. | ||
+ | (there will be pictures) | ||
Revision as of 21:14, 23 October 2010
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