This review is intended to serve as a primer on the study of neurobehavioral synchrony across human and rodent dyadic developmental models.
First-pass extracted concept
neurobehavioral synchrony
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A key gap is insufficient understanding of the forms of parent-pup synchrony during rodent development and how these social relationships evolve over time.
Quoted textsource-backed
However, before the benefits of rodent models for advancing research on parent-infant synchrony can be realised, it is first important to address a gap in understanding the forms of parent-pup synchrony that occur during rodent development, and how these social relationships evolve over time.
The review aims to identify parent-pup social behaviours that could drive or facilitate synchrony and to discuss key differences or limitations when comparing mouse and human parent-infant synchrony models.
Quoted textsource-backed
Accordingly, this review seeks to identify parent-pup social behaviours that could potentially drive or facilitate synchrony and to discuss key differences or limitations when comparing mouse to human models of parent-infant synchrony.
Some animal species, including rodents and bats, are known to share neural synchrony during certain forms of social behaviour.
Quoted textsource-backed
Further, some animal species (including rodents and bats) are now known to share neural synchrony during certain forms of social behaviour.