Inferring chemical reaction patterns using rule composition in graph grammars

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Inferring chemical reaction patterns using rule composition in graph grammars is …
instance of (P31):
scholarly articleQ13442814

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P6179Dimensions Publication ID1046667054
P356DOI10.1186/1759-2208-4-4
P5875ResearchGate publication ID230672610

P50authorPeter F. StadlerQ2074784
Christoph FlammQ37390028
Jakob L. AndersenQ57462815
P2093author name stringDaniel Merkle
P2860cites workMACiE: exploring the diversity of biochemical reactionsQ28038506
Network-based analysis of metabolic regulation in the human red blood cellQ28212164
The MetaCyc database of metabolic pathways and enzymes and the BioCyc collection of pathway/genome databasesQ28253558
KEGG for integration and interpretation of large-scale molecular data setsQ29547277
Hypergraphs and cellular networksQ33455494
Artificial Chemistries—A ReviewQ34442410
Graph-based methods for analysing networks in cell biologyQ36552759
Efficient reconstruction of metabolic pathways by bidirectional chemical searchQ42176361
A graph-based toy model of chemistryQ44518461
P433issue1
P304page(s)4
P577publication date2013-01-01
P1433published inJournal of Systems ChemistryQ27725594
P1476titleInferring chemical reaction patterns using rule composition in graph grammars
P478volume4

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cites work (P2860)
Q5726951250 Shades of Rule Composition
Q57269506A Software Package for Chemically Inspired Graph Transformation
Q47610450An intermediate level of abstraction for computational systems chemistry
Q57269504Chemical Graph Transformation with Stereo-Information
Q47563100Flows, scaling, and the control of moment hierarchies for stochastic chemical reaction networks
Q56267287In silicoSupport for Eschenmoser’s Glyoxylate Scenario

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