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Assia Chericoni

Publications and source records attributed to Assia Chericoni.

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Neural geometry in the human hippocampus enables generalization across spatial position and gaze

Hippocampal neurons track positions of self, others, and gaze direction. However, it is unclear how their respective neural codes differ enough to avoid confusion while allowing for abstraction. We recorded from populations of hippocampal neurons while participants performed a joystick-controlled virtual prey pursuit task involving multiple moving agents. We found that neurons have mixed selective responses that map positions of self, prey, and predator, as well as gaze. Their codes occupied mostly orthogonal subspaces, but these subspaces geometric structure allowed them to be aligned by simple linear transformations. Moreover, their geometry supported generalization across spatial maps, such that a linear rule learned on one agent transfers to another. This scheme enables reliable individuation and abstraction across both agent identity and viewpoint. Together, these findings suggest that hippocampal spatial knowledge is structured as a family of geometrically related manifolds that can be flexibly aligned to different agents and gaze directions.

q-bio.NC

Naturalistic Tasks Can Benefit Psychiatry

Maselli et al. do an excellent job highlighting how studying rich, complex, naturalistic behaviors can help neuroscientists and psychologists understand neural and mental phenomena. We fully concur with their arguments, as well as with somewhat similar ones made by other scholars. Indeed, we believe that the potential value of naturalistic paradigms is even greater than the authors state. We are particularly sanguine about the power of the naturalistic approach to help with understanding psychiatric diseases.

q-bio.NC