A model of the vertebrate central command system.
S-RETIC vertebrate command model, discussing computer simulation of reticular formation Golgi anatomy capable of habituation, conditioning, extinction, generalization and error discrimination
Engineering topics
Publications and source records attributed to Kilmer, W. L..
S-RETIC vertebrate command model, discussing computer simulation of reticular formation Golgi anatomy capable of habituation, conditioning, extinction, generalization and error discrimination
Robot command and control by computer assembly, describing engineering analog of vertebrate nervous system
Learning model of brain stem reticular formation based on nonlinear probabilistic hybrid computer concepts
Visual, contact, and decision subsystems for Mars rover
Nonlinear, probabilistic hybrid computer concepts for specifying operational schemata of central nervous system models
Probabilistic logical analysis of neurons and neurophysiological functional organization of core of reticular formation
Probabilistic automata proposed as model to handle circuit action of reticular formation