PT - JOURNAL ARTICLE AU - Patrick J Mineault AU - Shahab Bhaktiari AU - Blake A Richards AU - Christopher C Pack TI - Your head is there to move you around: Goal-driven models of the primate dorsal pathway AID - 10.1101/2021.07.09.451701 DP - 2021 Jan 01 TA - bioRxiv PG - 2021.07.09.451701 4099 - http://biorxiv.org/content/early/2021/07/09/2021.07.09.451701.short 4100 - http://biorxiv.org/content/early/2021/07/09/2021.07.09.451701.full AB - Neurons in the dorsal visual pathway of the mammalian brain are selective for motion stimuli, with the complexity of stimulus representations increasing along the hierarchy. This progression is similar to that of the ventral visual pathway, which is well characterized by artificial neural networks (ANNs) optimized for object recognition. In contrast, there are no image-computable models of the dorsal stream with comparable explanatory power. We hypothesized that the properties of dorsal stream neurons could be explained by a simple learning objective: the need for an organism to orient itself during self-motion. To test this hypothesis, we trained a 3D ResNet in a self-supervised manner to predict an agent’s self-motion parameters from visual stimuli in a simulated environment. We found that the responses in this network accounted well for the selectivity of neurons in a large database of single-neuron recordings from the dorsal visual stream of non-human primates. In contrast, ANNs trained for action recognition or with a contrastive objective could not explain responses in the dorsal stream, despite also being trained on naturalistic videos with moving objects. These results demonstrate that an ecologically relevant, self-supervised cost function can account for dorsal stream properties in the primate brain.Competing Interest StatementThe authors have declared no competing interest.