NEIGHBORHOOD COMPLEXITIES AND SYMMETRY OF CHEMICAL GRAPHS AND THEIR BIOLOGICAL APPLICATIONS
暂无分享,去创建一个
[1] N. Rashevsky. Life, information theory, and topology , 1955 .
[2] E. Trucco. A note on the information content of graphs , 1956 .
[3] A. Mowshowitz. Entropy and the complexity of graphs. II. The information content of digraphs and infinite graphs. , 1968, The Bulletin of mathematical biophysics.
[4] A. Mowshowitz,et al. Entropy and the complexity of graphs. I. An index of the relative complexity of a graph. , 1968, The Bulletin of mathematical biophysics.
[5] Danail Bonchev,et al. Symmetry and information content of chemical structures , 1976 .
[6] Derek G. Corneil,et al. The graph isomorphism disease , 1977, J. Graph Theory.
[7] A. B. Roy,et al. Topological information content of genetic molecules—I. , 1978 .
[8] Charles L. Wilkins,et al. Graph theoretical ordering of structures as a basis for systematic searches for regularities in molecular data , 1979 .
[9] Alexandru T. Balaban,et al. Steric Fit in Quantitative Structure-Activity Relations , 1980 .
[10] L B Kier,et al. Use of molecular negentropy to encode structure governing biological activity. , 1980, Journal of pharmaceutical sciences.
[11] Nenad Trinajstić,et al. Isomer discrimination by topological information approach , 1981 .
[12] S C Basak,et al. Molecular topology and narcosis. A quantitative structure-activity relationship (QSAR) study of alcohols using complementary information content (CIC). , 1983, Arzneimittel-Forschung.
[13] S C Basak,et al. Comparative study of lipophilicity versus topological molecular descriptors in biological correlations. , 1984, Journal of pharmaceutical sciences.