Martin Charles Golumbic, Renu C. Laskar
Discrete Applied Mathematics
A programming language designed for studies of parallelism and based on Wagner'suniformly reflexive structures is introduced. The measure of depth of computation in the language is studied. The partial recursive functions are shown to be computable in uniformly bounded depth. A comparison of the measure with other proposed measures of computational complexity leads to the suggestion of a list of properties to be checked in classifying such measures. © 1970 Academic Press, Inc.
Martin Charles Golumbic, Renu C. Laskar
Discrete Applied Mathematics
Ligang Lu, Jack L. Kouloheris
IS&T/SPIE Electronic Imaging 2002
Ruixiong Tian, Zhe Xiang, et al.
Qinghua Daxue Xuebao/Journal of Tsinghua University
Peter Wendt
Electronic Imaging: Advanced Devices and Systems 1990