2026-07-072026-07-07http://salesiana.dossiersoluciones.com/handle/123456789/20634Temporal gene expression data (Wen, et. al.) was analyzed using the recently introduced inverse modeling technique of Embedded Complex Logistic Maps (ECLM). Preliminary results indicate scale-free structure in the gene regulatory network topology as well as in the network's energy dissipation characteristics. General agreement was found with other recent studies involving a dynamical model and analyses of other biochemical networks exhibiting scale-free topology. The highlights of our study are briefly outlined.4 pages, 3 figures, presented at the ISCA 12th International Conference IASSE July 9-11, 2003, San Francisco, California (replaces earlier version posted Jan. 2003)Disordered Systems and Neural NetworksBiological PhysicsMolecular NetworksEvidence of Scale-Free Topology and Dynamics in Gene Regulatory Networkstext