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=<small>'''A title for the work in the Group'''</small>=
=<small>''The Bangham Lab'''</small>=
Some little paragraph explaining the work we conduct in the group. What are our goals, what we research. Why we do this. And some more text just to fill in the paragraph so it looks like the layout we will use. This could go on and continue for a long time just to fill space. Some little paragraph explaining the work we conduct in the group. What are our goals, what we research. Why we do this. And some more text just to fill in the paragraph so it looks like the layout we will use. This could go on and continue for a long time just to fill space. Some little paragraph explaining the work we conduct in the group. What are our goals, what we research. Why we do this. And some more text just to fill in the paragraph so it looks like the layout we will use. This could go on and continue for a long time just to fill space.
The Bangham Lab is part of the UEA D’Arcy Thompson Centre for computational biology. The aim of the lab is to be an interface between biology and computing.
Our main research goal is to understand the algorithms underpinning the evolution and growth of plants. In a collaboration with Prof. Enrico Coen (in the neighbouring John Innes Centre), we lead the computing science behind an integrated plant biology and computing science project to model the growing leaf and meristem. Fluorescent probes are incorporated into plants and imaged in two and three dimensions using optical projection tomography and confocal microscopy. Our visualisation tools include haptics and automatic methods for analysing the results and integrating them with finite element and cell-based models. This work highlights the importance of hierarchies of spatio-temporally separated gene expression patterns.
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Revision as of 12:33, 14 July 2010

The Bangham Lab'

The Bangham Lab is part of the UEA D’Arcy Thompson Centre for computational biology. The aim of the lab is to be an interface between biology and computing. Our main research goal is to understand the algorithms underpinning the evolution and growth of plants. In a collaboration with Prof. Enrico Coen (in the neighbouring John Innes Centre), we lead the computing science behind an integrated plant biology and computing science project to model the growing leaf and meristem. Fluorescent probes are incorporated into plants and imaged in two and three dimensions using optical projection tomography and confocal microscopy. Our visualisation tools include haptics and automatic methods for analysing the results and integrating them with finite element and cell-based models. This work highlights the importance of hierarchies of spatio-temporally separated gene expression patterns.

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