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A Model for an Angular Velocity-Tuned Motion Detector Accounting for Deviations in the Corridor-Centering Response of the BeeA computational model of the integration of landmarks and motion in the insect central complex.From model specification to simulation of biologically constrained networks of spiking neurons.SpineML and Brian 2.0 interfaces for using GPU enhanced Neuronal Networks (GeNN).The SpineML toolchain: enabling computational neuroscience through flexible tools for creating, sharing, and simulating neural models.A neural model of the optomotor system accounts for ordered responses to decreasing stimulus spatial frequencies.Abstract concept learning in a simple neural network inspired by the insect brain
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Q28551837-B7260CE0-1C9C-41EA-9806-491BBB78CD2FQ36291633-0484FF5E-E473-42A0-92F0-53CAE86E2746Q38419327-556532DE-B4FC-4002-975B-BE4E45DB765DQ46033480-5D943102-3C19-4439-AC6C-436A214A9BF8Q46047186-3C76DDFC-7C17-413F-9BB1-241CA9ED11DFQ46458463-3533AF66-AB9C-40CD-AEDC-2FCD680D93ECQ58730605-ADFADB6E-EA70-4593-89C6-24D7F5293423
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description
hulumtues
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researcher
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wetenschapper
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հետազոտող
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name
Alexander J Cope
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Alexander J Cope
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Alexander J Cope
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Alexander J Cope
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Alexander J Cope
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type
label
Alexander J Cope
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Alexander J Cope
@en
Alexander J Cope
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Alexander J Cope
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Alexander J Cope
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Alexander J Cope
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Alexander J Cope
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Alexander J Cope
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Alexander J Cope
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Alexander J Cope
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0000-0001-6042-1542