Empathy, the understanding of the emotional state of others, can be examined across species using the Perception Action Model, where shared affect promotes an action by “Observers” to aid a distressed “Target”. The anterior insula (AI) has garnered interest in empathic behavior due to its role integrating sensory and emotional information of self and other. In the following studies, the AI was inhibited pharmacologically and chemogenetically during targeted helping. We demonstrate the insula is active during, and is necessary for the maintenance of, targeted helping. Analysis of ultrasonic vocalizations revealed distress calls from Targets increased when Observers’ helping was attenuated due to insula inhibition. Targets’ elevated distress was directly correlated to Observers’ diminished helping behavior, suggesting emotional transfer between Observer and Target is blunted following Observer AI inhibition. Finally, the AI may selectively blunt targeted helping, as social exploration did not change in a social reward place conditioning task. These studies help further establish the anterior insula as a critical node in the empathic brain during targeted helping, even in the absence of direct social contact.
Empathy is an innate ability to understand the emotional states of others along with the motivation to improve it. It has evolved over time into highly complex behaviors, the basis of which can be described using the Perception Action Model (PAM), where shared affect promotes an action that eliminates the distress of both the passive Target and, by extension, the active Observer. There are myriad biological variables that may modulate empathic behavior, including sex, sensory modalities, and neural activity. In the following studies, using our model of social contact-independent targeted helping, we first tested whether sex differences exist in helping behavior. Next, we explored sex differences in sensory and affective signaling, including the impact of direct visualization of a distressed conspecific and the type of ultrasonic vocalizations (USV) made between animal pairs during the task. Finally, we examined the neural activity of multiple cortical and subcortical regions of interest across time during targeted helping between males and females. We show both sexes exhibit similar helping behavior, but sensory and affective signaling differs between sexes. Further, changes in neural activity exhibited distinct sex-specific patterns across time. Our results indicate sex differences are not a ubiquitous presence in targeted helping. Instead, it is likely sex differences may be a convergent phenomenon in which the behavior is similar, but the underlying biological mechanisms are distinct. These results lay the groundwork for future studies to explore the similarities and differences that drive empathic behavior in both males and females.
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