Living Systems |
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Page 104
... average processing time increases . ( M ) HYPOTHESIS 5.1-14 : As the size of the input ensemble increases , the use of all adjustment processes increases . ( L ) HYPOTHESIS 5.1-15 : As the size of the output ensemble increases , the ...
... average processing time increases . ( M ) HYPOTHESIS 5.1-14 : As the size of the input ensemble increases , the use of all adjustment processes increases . ( L ) HYPOTHESIS 5.1-15 : As the size of the output ensemble increases , the ...
Page 158
... average separations of 45 , 60 , and 90 s . The criteria of efficiency which were employed in the study of this system included the average fuel con- sumption of the planes , the average time they spent within the control zone before ...
... average separations of 45 , 60 , and 90 s . The criteria of efficiency which were employed in the study of this system included the average fuel con- sumption of the planes , the average time they spent within the control zone before ...
Page 165
... Average input rate 2 Variance in input rate ( redundancy of temporal patterning of input ) 3 Average input intensity 4 Variance in input intensity 5 Input priority ( capacity to alter processing time ) 6 Size of ensemble 7 Redundancy of ...
... Average input rate 2 Variance in input rate ( redundancy of temporal patterning of input ) 3 Average input intensity 4 Variance in input intensity 5 Input priority ( capacity to alter processing time ) 6 Size of ensemble 7 Redundancy of ...
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acid activity adjustment processes amino acids animals associated axon behavior bits blood boundary brain carry cell membrane cellular central nervous system cerebral cortex cesses changes channel capacity chemical complex cortex cross-level cytoplasm decision decoding decrease echelons encoding energy environment enzyme error Example experimental experiments extruder feedback fibers function genetic glands glucose higher hormones human HYPOTHESIS increased information input information output information processing input rate input transducer internal transducer learning living systems markers mation matter-energy memory ment microtubules mitochondria mitosis molecules motor nerve nervous system neural neurons nucleus occur organelles organism level organism's output rate output transducer oxygen patterns percent produce protein Psychol pulses receptor cells relationships Reprinted by permission response retina sensory signals simulation species storage stored stress structure subjects substances suprasystem synapses synthesis theory tion tissue transmission transmitted types variables various visual