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1 Biology Design Studies comparative functional genomics – Pathline comparative genomics (synteny) – MizBee gene expression + interaction network – Cerebral amara Munzner, UBC, http://www.cs.ubc.ca/~tmm

Biology Design Studies

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Biology Design Studies. comparative functional genomics Pathline comparative genomics (synteny) MizBee gene expression + interaction network Cerebral. Tamara Munzner, UBC, http://www.cs.ubc.ca/~tmm. General Design Studies. large-scale system monitoring LiveRAC web logs SessionViewer - PowerPoint PPT Presentation

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Page 1: Biology Design Studies

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Biology Design Studies

• comparative functional genomics – Pathline

• comparative genomics (synteny)– MizBee

• gene expression + interaction network– Cerebral

Tamara Munzner, UBC, http://www.cs.ubc.ca/~tmm

Page 2: Biology Design Studies

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General Design Studies

• large-scale system monitoring– LiveRAC

• web logs– SessionViewer

• computational linguistics– Constellation

Tamara Munzner, UBC, http://www.cs.ubc.ca/~tmm

Page 3: Biology Design Studies

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Dimensionality Reduction

• visual dimensional analysis and reduction toolkit– DimStiller

• GPU accelerated MDS– Glimmer

• steerable MDS– MDSteer

Tamara Munzner, UBC, http://www.cs.ubc.ca/~tmm

Page 4: Biology Design Studies

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User Studies

• overview use– stretch and squish vs.

pan/zoom navigation– separate vs. integrated views

• impact of distortion on visual search, visual memory

• 2D points vs. 3D landscapes

Tamara Munzner, UBC, http://www.cs.ubc.ca/~tmm

Page 5: Biology Design Studies

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Graph/Tree Vis

• general multilevel graphs– layout

• TopoLayout

– interaction• Grouse, GrouseFlocks,

TugGraph

• evolutionary tree comparison– TreeJuxtaposer

• 3D hyperbolic graphs– H3

Tamara Munzner, UBC, http://www.cs.ubc.ca/~tmm

Page 6: Biology Design Studies

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Theory/Models

• nested model for design and validation

• papers process and pitfalls