The analysis of structure-activity relationships (SARs) of small bioactive compounds is a central task in medicinal chemistry and pharmaceutical research. The study of SARs is in principle not limited to computational methods, however, as data sets rapidly grow in size, advanced computational approaches become indispensable for SAR analysis. Activity landscapes are one of the preferred and widely used computational models to study large-scale SARs. Activity cliffs are cardinal features of activity landscape representations and are thought to contain high SAR information content. This work addresses major challenges in systematic SAR exploration and specifically focuses on the design of novel activity landscape models and comprehensive activ...
This thesis presents studies devoted to aid in systematic analysis of chemical spaces, focusing on m...
Structure-activity relationships (SAR) can be investigated for large sets of biologically active com...
One general aim of medicinal chemistry is the understanding of structure-activity relationships of l...
A core focus in medicinal chemistry is the interpretation of structure-activity relationships (SARs)...
Understanding how structural modifications affect the biological activity of small molecules is one ...
The exploration of structure–activity relationships (SARs) of small bioactive molecules is a central...
In medicinal chemistry, it is of central importance to understand structure-activity relationships (...
Activity cliffs are formed by structurally similar or analogous compounds having large potency diffe...
Understanding the structure–activity relationships (SARs) of small molecules is important for develo...
The availability of large amounts of data in public repositories provide a useful source of knowledg...
Activity landscape representations aid in the analysis of structure–activity relationships (SARs) of...
Machine learning (ML) models have gained attention for mining the pharmaceutical data that are curre...
Activity landscape modelling is mostly a descriptive technique that allows rationalising continuous ...
This is the original submitted version, before peer review. The final peer-reviewed version is avail...
Activity landscape modeling is mostly a descriptive technique that allows rationalizing continuous a...
This thesis presents studies devoted to aid in systematic analysis of chemical spaces, focusing on m...
Structure-activity relationships (SAR) can be investigated for large sets of biologically active com...
One general aim of medicinal chemistry is the understanding of structure-activity relationships of l...
A core focus in medicinal chemistry is the interpretation of structure-activity relationships (SARs)...
Understanding how structural modifications affect the biological activity of small molecules is one ...
The exploration of structure–activity relationships (SARs) of small bioactive molecules is a central...
In medicinal chemistry, it is of central importance to understand structure-activity relationships (...
Activity cliffs are formed by structurally similar or analogous compounds having large potency diffe...
Understanding the structure–activity relationships (SARs) of small molecules is important for develo...
The availability of large amounts of data in public repositories provide a useful source of knowledg...
Activity landscape representations aid in the analysis of structure–activity relationships (SARs) of...
Machine learning (ML) models have gained attention for mining the pharmaceutical data that are curre...
Activity landscape modelling is mostly a descriptive technique that allows rationalising continuous ...
This is the original submitted version, before peer review. The final peer-reviewed version is avail...
Activity landscape modeling is mostly a descriptive technique that allows rationalizing continuous a...
This thesis presents studies devoted to aid in systematic analysis of chemical spaces, focusing on m...
Structure-activity relationships (SAR) can be investigated for large sets of biologically active com...
One general aim of medicinal chemistry is the understanding of structure-activity relationships of l...