Team:Imperial College/Motility Control
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{{Imperial/Box1|Results| | {{Imperial/Box1|Results| | ||
[[Image:Mechanical_Model.jpg|300px|center]]<br> | [[Image:Mechanical_Model.jpg|300px|center]]<br> | ||
- | We modelled the motility of motile ''B.subtilis'' using a mechanical model as shown above. Using experimental data from cell tracking, we were able to extract parameters which describe the model. The model and its parameters are defined [[Team:Imperial_College/Motility| '''here''']]. In summary, parameter ''A'' is the ratio of | + | We modelled the motility of motile ''B.subtilis'' using a mechanical model as shown above. Using experimental data from cell tracking, we were able to extract parameters which describe the model. The model and its parameters are defined [[Team:Imperial_College/Motility| '''here''']]. In summary, parameter ''A'' is the ratio of flagellum force to medium viscosity. It also represents the velocity of the cell after a sufficiently long time has elapsed, given that the flagellum force remains constant throughout its run., ''B'' is the initial velocity of the cell and alpha is the ratio of the vicosity of the medium to the cell's mass. |
The following figure shows the results of our model fitting. We have introduced a change in flagellar force at certain points of the cell trajectory so as to achieve a better fit. A maximum of two runs were allowed for each cell trajectory. | The following figure shows the results of our model fitting. We have introduced a change in flagellar force at certain points of the cell trajectory so as to achieve a better fit. A maximum of two runs were allowed for each cell trajectory. |
Revision as of 19:11, 29 October 2008
Results of Motility Analysis
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