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A graph database with visual queries for genomics
A graph database with visual queries for genomics,Greg Butler,Guang Wang,Yue Wang,Liqian Zou
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A graph database with visual queries for genomics
(
Citations: 4
)
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Greg Butler
,
Guang Wang
,
Yue Wang
,
Liqian Zou
Effective management of data is a major issue in genomics. Genomics data consists of highly inter-related information about genes, proteins, patterns, classifications, and interactions. Graph databases, which model graphs or networks of data, seem a natural way to manage genomics data. Graph databases can support visualization of both queries and results by drawing on the broader field of graph visualization, and the visual paradigm is natural for scientists working in genomics. We have constructed a graph
database system
that supports visual queries and visualization of query result sets. Our system uses Java, XML, C++, CORAL, and MySQL to implement the GraphLog language. We have validated its applicability to genomics data through a case study, and have done initial studies on the systems performance and the effect of several optimization strategies. We describe the system and its application to genomics.
Conference:
Asia-Pacific Bioinformatics Conference - APBC
, pp. 31-40, 2005
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www.comp.nus.edu.sg
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Citation Context
(3)
...Graph databases are prevalent in various fields [
1
, 15] to represent and query complex relationships between objects...
Ali Cakmak
,
et al.
Taxonomy-superimposed graph mining
...Significant systems like GOOD [7], Hy+ [8], Gql [9], Hyperlog [10] and the system from Butler et al. [
11
] provide visual interfaces and pattern-oriented query languages allowing the end-user to answer various biological questions through the use of diagram-based queries...
Patrick Durand
,
et al.
GenoLink: a graph-based querying and browsing system for investigating...
...In the future, we hope to perform visual data mining by using GraphLog [
9
]...
Farzad Kohantorabi
,
et al.
A Distributed Agent System upon Semantic Web Technologies to Provide B...
References
(10)
The CORAL Deductive System
(
Citations: 63
)
Raghu Ramakrishnan
,
Divesh Srivastava
,
S. Sudarshan
,
Praveen Seshadri
Journal:
The Vldb Journal - VLDB
, vol. 3, no. 2, pp. 161-210, 1994
GraphLog: Its Representation in XML and Translation to CORAL
(
Citations: 2
)
L. Zou
Published in 2003.
TAMBIS: Transparent Access to Multiple Bioinformatics Information Sources
(
Citations: 205
)
Robert Stevens
,
Patricia G. Baker
,
Sean Bechhofer
,
Ng Gary
,
Alex Jacoby
,
Norman W. Paton
,
Carole A. Goble
,
Andy Brass
Journal:
Bioinformatics/computer Applications in The Biosciences - BIOINFORMATICS
, vol. 16, no. 2, pp. 184-186, 2000
Architecture and Applications of the Hy+ Visualization System
(
Citations: 30
)
Mariano P. Consens
,
Frank Ch. Eigler
,
Masum Z. Hasan
,
Alberto O. Mendelzon
,
Emanuel G. Noik
,
Arthur G. Ryman
,
Dimitra Vista
Journal:
Ibm Systems Journal - IBMSJ
, vol. 33, no. 3, pp. 458-476, 1994
Architecture and Applications of the Hy
(
Citations: 26
)
Mariano P. Consens
,
Frank Ch. Eigler
,
Masum Z. Hasan
,
Alberto O. Mendelzon
,
Emanuel G. Noik
,
Arthur G. Ryman
,
Dimitra Vista
Journal:
Ibm Systems Journal - IBMSJ
, 1994
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Citations
(4)
Taxonomy-superimposed graph mining
(
Citations: 4
)
Ali Cakmak
,
Gultekin Özsoyoglu
Conference:
Extending Database Technology - EDBT
, pp. 217-228, 2008
Cascaded Refactoring for Framework Development and Evolution
(
Citations: 4
)
Lugang Xu
,
Greg Butler
Conference:
Australian Software Engineering Conference
, pp. 319-330, 2006
GenoLink: a graph-based querying and browsing system for investigating the function of genes and proteins
(
Citations: 4
)
Patrick Durand
,
Laurent Labarre
,
Alain Meil
,
Jean-louis Divol
,
Yves Vandenbrouck
,
Alain Viari
,
Jérôme Wojcik
Journal:
BMC Bioinformatics
, vol. 7, no. 1, pp. 21-11, 2006
A Distributed Agent System upon Semantic Web Technologies to Provide Biological Data
Farzad Kohantorabi
,
Gregory Butler
,
Christopher Baker
Conference:
Canadian Semantic Web Working Symposium - CSWWS
, pp. 63-80, 2006