On Entropy-Based Molecular Descriptors: Statistical Analysis of Real and Synthetic Chemical Structures
- 16 June 2009
- journal article
- research article
- Published by American Chemical Society (ACS) in Journal of Chemical Information and Modeling
- Vol. 49 (7), 1655-1663
- https://doi.org/10.1021/ci900060x
Abstract
This paper presents an analysis of entropy-based molecular descriptors. Specifically, we use real chemical structures, as well as synthetic isomeric structures, and investigate properties of and among descriptors with respect to the used data set by a statistical analysis. Our numerical results provide evidence that synthetic chemical structures are notably different to real chemical structures and, hence, should not be used to investigate molecular descriptors. Instead, an analysis based on real chemical structures is favorable. Further, we find strong hints that molecular descriptors can be partitioned into distinct classes capturing complementary information.This publication has 26 references indexed in Scilit:
- Fault tolerance of information processing in gene networksPhysica A: Statistical Mechanics and its Applications, 2009
- Entropy Bounds for Hierarchical Molecular NetworksPLOS ONE, 2008
- INFORMATION-THEORETIC CONCEPTS FOR THE ANALYSIS OF COMPLEX NETWORKSApplied Artificial Intelligence, 2008
- Structural information content of networks: Graph entropy based on local vertex functionalsComputational Biology and Chemistry, 2007
- SHED: Shannon Entropy Descriptors from Topological Feature DistributionsJournal of Chemical Information and Modeling, 2006
- Overall Molecular Descriptors. 3. Overall Zagreb IndicesSAR and QSAR in Environmental Research, 2001
- New vertex invariants and topological indices of chemical graphs based on information on distancesJournal of Mathematical Chemistry, 1991
- Molecular complexity: a simplified formula adapted to individual atomsJournal of Chemical Information and Computer Sciences, 1987
- Atom pairs as molecular features in structure-activity studies: definition and applicationsJournal of Chemical Information and Computer Sciences, 1985
- Barriers to ring rotation in 1,1',4,4'-tetra-tert-butyluranocene and 1,1',3,3'-tetra-tert-butylferroceneJournal of the American Chemical Society, 1981