Robert B. Pinter

Affiliations: 
University of Washington, Seattle, Seattle, WA 
Area:
biomedical engineering, signal processing in the insect visual system.
Website:
https://en.wikipedia.org/wiki/Robert_B._Pinter
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"Robert Pinter"
Bio:

(1937 - 2001)

Parents

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Richard W. Jones grad student 1964 Northwestern
 (A Study of the Dynamic Properties of the Generator Potential of the Limulus Photoreceptor.)

Children

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Bahram Nabet grad student 1989 University of Washington (Physics Tree)
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Publications

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Tonkin SP, Pinter RB. (1996) Motion processing using asymmetric shunting lateral inhibitory networks. Network (Bristol, England). 7: 385-407
Tonkin SP, Pinter RB, Nabet B. (1996) Stability of a class of directionally sensitive asymmetric nonlinear neural networks Neural Networks. 9: 555-565
Nabet B, Pinter RB, Darling RB, et al. (1995) Comments on "Silicon models of lateral inhibition" [with reply]. Ieee Transactions On Neural Networks / a Publication of the Ieee Neural Networks Council. 6: 1560-1
Bouzerdoum A, Pinter RB. (1993) Shunting Inhibitory Cellular Neural Networks: Derivation and Stability Analysis Ieee Transactions On Circuits and Systems I: Fundamental Theory and Applications. 40: 215-221
Pinter RB, Darling RB, Nilson CD. (1993) Peripheral artificial vision: Integrated circuit implementation of lateral inhibitory networks Proceedings of the Ieee International Conference On Systems, Man and Cybernetics. 3: 160-165
Nabet B, Darling RB, Pinter RB. (1992) Implementation of front-end processor neural networks Neural Networks. 5: 891-902
Pinter RB. (1985) Adaptation of spatial modulation transfer functions via nonlinear lateral inhibition. Biological Cybernetics. 51: 285-91
Pinter RB. (1984) Adaptation of receptive field spatial organization via multiplicative lateral inhibition. Journal of Theoretical Biology. 110: 435-44
Pinter RB. (1983) Product term nonlinear lateral inhibition enhances visual selectivity for small objects or edges. Journal of Theoretical Biology. 100: 525-31
Pinter RB. (1983) The electrophysiological bases for linear and for nonlinear product term lateral inhibition and the consequences for wide field textured stimuli. Journal of Theoretical Biology. 105: 233-43
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