In chemistry for chemical analysis of a multi-component sample or quantitative structure-activity/property relationship (QSAR/QSPR) studies, variable selection is a key step. In this study, comparisons between different methods were performed. These methods include three classical methods such as forward selection, backward elimination and stepwise regression; orthogonal descriptors; leaps-and-bounds regression and genetic algorithm. Thirty-five nitrobenzenes were taken as the data set. From these structures quantum chemical parameters, topological indices and indicator variable were extracted as the descriptors for the comparisons of variable selections. The interesting results have been obtained. (C) 2001 Elsevier Science B.V. All rights ...
A step towards more stringent procedures for the risk control of chemicals has arisen with the recen...
Abstract: Virtual filtering and screening of combinatorial libraries have recently gained attention ...
Various quantum chemical descriptors such as ionisation potential (I), electron affinity (A), quantu...
The process of building mathematical models in quantitative structure-activity relationship (QSAR) s...
In this paper, the comparison of orthogonal descriptors and Leaps-and-Bounds regression analysis is ...
In order to develop regression/classification models, QSAR analysis typically uses molecular descrip...
A quantitative structure-activity relationship (QSAR) relates quantitative chemical structure attrib...
A large number of descriptors were employed to characterize the molecular structure of 53 natural, s...
Progress Report of the Air Force Project; Covering research period 10/1/97 to 7/31/98; Agency No: DO...
AbstractBasic chemometric methods for making empirical regression models for QSPR/QSAR are briefly d...
Abstract: The age old paradigm of quantitative structure-activity relationship (QSAR) is the congene...
Basic chemometric methods for making empirical regression models for QSPR/QSAR are briefly described...
International audienceThe new European regulation of chemicals REACH aiming to reinforce the control...
Quantitative structure–property relationships represent a powerful method alternative to experiments...
Basic chemometric methods for making empirical regression models for QSPR/QSAR are briefly described...
A step towards more stringent procedures for the risk control of chemicals has arisen with the recen...
Abstract: Virtual filtering and screening of combinatorial libraries have recently gained attention ...
Various quantum chemical descriptors such as ionisation potential (I), electron affinity (A), quantu...
The process of building mathematical models in quantitative structure-activity relationship (QSAR) s...
In this paper, the comparison of orthogonal descriptors and Leaps-and-Bounds regression analysis is ...
In order to develop regression/classification models, QSAR analysis typically uses molecular descrip...
A quantitative structure-activity relationship (QSAR) relates quantitative chemical structure attrib...
A large number of descriptors were employed to characterize the molecular structure of 53 natural, s...
Progress Report of the Air Force Project; Covering research period 10/1/97 to 7/31/98; Agency No: DO...
AbstractBasic chemometric methods for making empirical regression models for QSPR/QSAR are briefly d...
Abstract: The age old paradigm of quantitative structure-activity relationship (QSAR) is the congene...
Basic chemometric methods for making empirical regression models for QSPR/QSAR are briefly described...
International audienceThe new European regulation of chemicals REACH aiming to reinforce the control...
Quantitative structure–property relationships represent a powerful method alternative to experiments...
Basic chemometric methods for making empirical regression models for QSPR/QSAR are briefly described...
A step towards more stringent procedures for the risk control of chemicals has arisen with the recen...
Abstract: Virtual filtering and screening of combinatorial libraries have recently gained attention ...
Various quantum chemical descriptors such as ionisation potential (I), electron affinity (A), quantu...