Difference between revisions of "Project ideas"
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==Force directed network (spring algorithm)== |
==Force directed network (spring algorithm)== |
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− | The objective of this project is to visualize a network (large networks of >2000 nodes) in a way that the distance of a node from the rest of the network is |
+ | The objective of this project is to visualize a network (large networks of >2000 nodes) in a way that the distance of a node from the rest of the network is determined by the number of nodes it is connected to => the more neighbors a node has the larger is its distance from the network. |
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Sources: |
Revision as of 14:55, 11 November 2014
Contents
Sequence Logo Viewer
Venn diagrams present a very popular method to display list comparisons. [Jvenn] is an interactive Venn diagram viewer written in JavaScript. The objective of this project would be to use the code base of Jvenn to make it compatible with BioJS2.0.
Literature: jvenn: an interactive Venn diagram viewer
Mentor: PP2_CS_2014 mentors
Students: 2
Protein viewer
Mentor: Björn Grüning (Galaxy) gruening. (at) .informatik.uni-freiburg.de
Students: 2
Chemical Viewer
Mentor: Björn Grüning (Galaxy) gruening. (at) .informatik.uni-freiburg.de
Students: 2
Graph Viewer
Mentor: Björn Grüning (Galaxy) gruening. (at) .informatik.uni-freiburg.de
Students: 2
Gene Cluster Viewer
Mentor: Björn Grüning (Galaxy) gruening. (at) .informatik.uni-freiburg.de
Students: 2
Dot-Bracket Notation
Mentor: Björn Grüning (Galaxy) gruening. (at) .informatik.uni-freiburg.de
Students: 2
Pedigree Chart Visualization
A pedigree chart is a simple and easy to read diagram showing the occurrence and appearance or phenotypes of a particular gene in an organism and its ancestors. Pedigrees use a standardized set of symbols:
- squares: males
- circles: females
- diamonds: the sex of the person is unknown
- filled-in (darker) symbol: someone with the phenotype in question
- shaded or half-filled symbol: heterozygotes
- horizontal and a vertical line: connects parents to their offspring
- ....
Literature:
Mentor: PP2_CS_2014 mentors
Students: 2
Sub-cellular localization in a cell
Archaea, Bacteria and Eukaryota form the three domains of life. Eukaryotic cells contain a nucleus and other membrane-bound organelles. The cells of archaea and bacteria in contrast are formed by a single compartment that is surrounded by the plasma membrane (Gram-negative bacteria have an additional outer membrane). The objective of this project is to visualize biological cells and highlight by a user selected sub-cellular compartments in a way that they stand out from the un-selected ones.
Similar idea: The Compartments database
Mentor: PP2_CS_2014 mentors
Students: 2
Force directed network (spring algorithm)
The objective of this project is to visualize a network (large networks of >2000 nodes) in a way that the distance of a node from the rest of the network is determined by the number of nodes it is connected to => the more neighbors a node has the larger is its distance from the network.
Sources:
Mentor: PP2_CS_2014 mentors
Students: 3