Reaction Systems (RSs) are a successful computational framework inspired by biological systems. A RS pairs a set of entities with a set of reactions over them. Entities can be used to enable or inhibit each reaction, and are produced by reactions. Entities can also be provided by an external context sequence to simulate in silico biological experiments. In this paper we define an extension of RSs considering nondeterministic and recursive context operators, and give an original labelled transition system (LTS) for extended RSs in the structural operational semantics (SOS) style. Thanks to extended contexts, a single LTS can now account for several biological experiments. The rich information recorded in transition labels is useful to guaran...
Reaction Systems (RSs) are a successful natural computing framework inspired by chemical reaction ne...
Reaction Systems (RSs) are a successful natural computing framework inspired by chemical reaction ne...
Reaction systems (RS) are a computational framework inspired by the functioning of living cells, su...
Reaction Systems (RSs) are a successful computational framework inspired by biological systems. A RS...
Reaction Systems (RSs) are a successful computational framework inspired by biological systems. A RS...
Reaction Systems (RSs) are a successful computational framework inspired by biological systems. A RS...
Reaction Systems (RSs) are a successful computational framework inspired by biological systems. A RS...
Reaction Systems (RSs) are a successful computational framework inspired by biological systems. A RS...
Reaction Systems (RSs) are a successful computational framework inspired by biological systems. A RS...
Reaction Systems (RSs) are a successful computational framework inspired by biological systems. A RS...
Reaction Systems (RSs) are a successful computational framework inspired by biological systems. A RS...
Reaction Systems (RSs) are a successful computational framework inspired by biological systems. A RS...
Reaction Systems (RSs) are a successful natural computing framework inspired by chemical reaction ne...
Reaction Systems (RSs) are a successful natural computing framework inspired by chemical reaction ne...
Reaction Systems (RSs) are a successful natural computing framework inspired by chemical reaction ne...
Reaction Systems (RSs) are a successful natural computing framework inspired by chemical reaction ne...
Reaction Systems (RSs) are a successful natural computing framework inspired by chemical reaction ne...
Reaction systems (RS) are a computational framework inspired by the functioning of living cells, su...
Reaction Systems (RSs) are a successful computational framework inspired by biological systems. A RS...
Reaction Systems (RSs) are a successful computational framework inspired by biological systems. A RS...
Reaction Systems (RSs) are a successful computational framework inspired by biological systems. A RS...
Reaction Systems (RSs) are a successful computational framework inspired by biological systems. A RS...
Reaction Systems (RSs) are a successful computational framework inspired by biological systems. A RS...
Reaction Systems (RSs) are a successful computational framework inspired by biological systems. A RS...
Reaction Systems (RSs) are a successful computational framework inspired by biological systems. A RS...
Reaction Systems (RSs) are a successful computational framework inspired by biological systems. A RS...
Reaction Systems (RSs) are a successful computational framework inspired by biological systems. A RS...
Reaction Systems (RSs) are a successful natural computing framework inspired by chemical reaction ne...
Reaction Systems (RSs) are a successful natural computing framework inspired by chemical reaction ne...
Reaction Systems (RSs) are a successful natural computing framework inspired by chemical reaction ne...
Reaction Systems (RSs) are a successful natural computing framework inspired by chemical reaction ne...
Reaction Systems (RSs) are a successful natural computing framework inspired by chemical reaction ne...
Reaction systems (RS) are a computational framework inspired by the functioning of living cells, su...