Title :
Restoration and enhancement of fingerprint images using M-lattice-a novel nonlinear dynamical system
Author :
Sherstinsky, Alex ; Picard, Rosalind W.
Author_Institution :
Media Lab., MIT, Cambridge, MA, USA
Abstract :
Develops a method for the simultaneous restoration and halftoning of fingerprints using the “M-lattice”, a new nonlinear dynamical system. This system is rooted in the reaction-diffusion model, first proposed by Turing to explain morphogenesis (the formation of patterns in nature). But in contrast with the general reaction-diffusion, the state variables of the M-lattice are guaranteed to be bounded. The M-lattice system is closely related to the analog Hopfield network and the cellular neural network, but has more flexibility in how its variables interact. These properties make it better suited than reaction-diffusion for several new engineering applications. The proposed method for enhancing fingerprints explores the ability of the M-lattice to form oriented spatial patterns (like reaction-diffusion), while producing binary outputs (like feedback neural networks). The fingerprints synthesized by the M-lattice retain and emphasize more of the relevant detail than do those obtained by adaptive thresholding, a common halftoning method employed in traditional fingerprint classification systems
Keywords :
image enhancement; M-lattice; adaptive thresholding; analog Hopfield network; binary outputs; cellular neural network; enhancement; fingerprint classification; fingerprint images; halftoning; nonlinear dynamical system; oriented spatial patterns; reaction-diffusion model; restoration; Cellular neural networks; Differential equations; Fingerprint recognition; Image matching; Image restoration; Laboratories; Neural networks; Neurofeedback; Output feedback; Pattern formation;
Conference_Titel :
Pattern Recognition, 1994. Vol. 2 - Conference B: Computer Vision & Image Processing., Proceedings of the 12th IAPR International. Conference on
Conference_Location :
Jerusalem
Print_ISBN :
0-8186-6270-0
DOI :
10.1109/ICPR.1994.576903