Team:SDU-Denmark/project-r
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=== Video microscopy results === | === Video microscopy results === | ||
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- | Bacteria containing the photosensor will exhibit a lowered tumbling rate when exposed to blue light (wavelengths around 350nm - 450nm). This was analysed with the help of video microscopy and the open source software [http://db.cse.ohio-state.edu/CellTrack/ "CellTrack"]. The individual cells trajectory was tracked and their speed measured. The tracking results are as follows: | + | Bacteria containing the photosensor will exhibit a lowered tumbling rate when exposed to blue light (wavelengths around 350nm - 450nm). This was analysed with the help of video microscopy and the open source software [http://db.cse.ohio-state.edu/CellTrack/ "CellTrack"]. The individual cells' trajectory was tracked and their speed measured. The tracking results are as follows: |
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[[Image:Team-SDU-Denmark-PSblue1.png |250px|Photosensor bacteria exposed to blue light]] | [[Image:Team-SDU-Denmark-PSblue1.png |250px|Photosensor bacteria exposed to blue light]] | ||
[[Image:PSred sample 1 trajectory - Cell 1.png |250px|Photosensor bacteria exposed to red light (~580nm wavelength)]] | [[Image:PSred sample 1 trajectory - Cell 1.png |250px|Photosensor bacteria exposed to red light (~580nm wavelength)]] | ||
[[Image:Team-SDU-Denmark-WTblue1.png |250px|Wildtype bacteria exposed to blue light]]<br> | [[Image:Team-SDU-Denmark-WTblue1.png |250px|Wildtype bacteria exposed to blue light]]<br> | ||
- | The phototaxic bacteria move more in a straight line when exposed to bluelight, as can be seen when comparing the trajectories of the | + | The phototaxic bacteria move more in a straight line when exposed to bluelight, as can be seen when comparing the trajectories of the three bacteria given earlier. These were taken from a batch of 10 cells tracked per sample. |
== Retinal == | == Retinal == |
Revision as of 13:10, 20 October 2010