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Ameloot, A.

Publications and source records attributed to Ameloot, A..

3 recordsLinked to original sources

Chemogenetic activation of hypothalamic oxytocin neurons reorients face exploration toward the eyes in macaques

Oxytocin (OT) shapes social behavior across species. However, in humans and non-human primates, its effects have been studied mainly through exogenous administration, despite uncertainty about the extent to which peripherally administered OT reaches the brain and limited control over the neural pathways it engages. To overcome these limitations, we developed a chemogenetic approach targeting the endogenous OT system by selectively activating OT neurons in the paraventricular nucleus (PVN) and supraoptic nucleus (SON) of macaques using excitatory DREADDs. We combined this approach with digit-tracking, a non-invasive, calibration-free assay of face exploration in freely moving animals. In this task, subjects explored blurred face images through a finger-controlled viewing window, providing a proxy for gaze exploration and enabling behavioral assessment of OT neuron activation. DREADD-mediated activation redirected ongoing face exploration toward the eyes at the expense of non-face regions, increasing the consistency of eye-directed exploration and the time spent inspecting the eyes once reached. Immunohistochemical analysis confirmed selective DREADD expression in OT neurons of the PVN and SON. These findings provide the first causal evidence in primates that hypothalamic OT neurons regulate social visual orienting by increasing exploration of the eyes, thereby linking a hallmark effect of intranasal OT administration to defined central OT pathways and establishing chemogenetic access to this system in freely behaving macaques.

neuroscience↗

Digit-Tracking Reveals Curiosity-Driven Visual Attention in Macaque Monkeys

We used digit-tracking, a touch-based method for assessing visual attention, to investigate spontaneous exploration in macaque monkeys. By engaging with degraded images on a touch-sensitive display, monkeys could uncover high-resolution portions through finger movements, allowing for natural and unrestricted interaction. Monkeys received juice rewards after touching a predetermined number of pixels, but no specific regions were targeted. Attention maps were generated from their interactions, along with data from human digit-tracking and monkey eye-tracking experiments. We applied a saliency model and a Convolutional Neural Network (CNN) model to predict the empirical explorations. The correlation between model prediction maps and empirical attention maps indicated that monkeys focused non-randomly on information-rich regions, with the CNN model providing the most accurate predictions. These findings suggest that exploration was driven by intrinsic curiosity, beyond the extrinsic rewards for interaction. Digit-tracking offers a minimally invasive, portable alternative to eye-tracking, expanding research opportunities in visual cognition within ecologically valid settings.

animal behavior and cognition↗

SEX-SPECIFIC TRAJECTORIES OF REELIN-DEPENDENT MATURATION OF DEEP LAYER PREFRONTAL NEURONS

Throughout early adulthood, the anatomical and functional maturation of PFC circuitry continues under the influence of multiple extrinsic and intrinsic factors, most notably electrical activity, and molecular cues. We previously showed that the extracellular matrix protein reelin orchestrates the structural and functional maturation of deep layers medial PFC (mPFC) pyramidal neurons. Additionally, we reported that reelin haploinsufficiency is associated to prefrontal disruptions of long-term memory retention thereby illustrating the eminent role of reelin in cognitive maturation of the PFC. Prefrontal maturation follows a sex-specific developmental pattern, supporting the existence of sexual differences in the morphology-functional properties PFC. Here, we interrogated the role of reelin in the functional maturation of excitatory networks in the mPFC. The developmental trajectory of reelins expression and deep layer pyramidal neurons synaptic plasticity was tracked in the mPFC of male and female mice, from the juvenile period to adulthood. To assess the role of reelin in both sexes, wild-type and heterozygous reeler mice (HRM) were compared. The results show that the maturational profile of reelin expression in the mPFC is sex-dependent and that the developmental trajectory of long-term potentiation is different between wild-type males and females. These data demonstrate reelins influence on prefrontal synapses is sex and period specific.

neuroscience↗