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Ditzen, B.

Publications and source records attributed to Ditzen, B..

2 recordsLinked to original sources

Neural responses to instructed positive couple interaction: An fMRI study on compliment sharing

Love is probably the most fascinating feeling that a person ever experiences. However, little is known about what is happening in the brains of a romantic couple -the central and most salient relationship during adult age- while they are particularly tender and exchanging loving words with one another. To gain insight into nearly natural couple interaction, we collected data from N=84 individuals (including N=43 heterosexual couples) simultaneously in two functional magnetic resonance imaging scanners, while they sent and received compliments, i.e. short messages about what they liked about each other and their relationship. Activation patterns during compliment sharing in the individuals revealed a broad pattern of activated brain areas known to be involved in empathy and reward processing. Notably, the ventral striatum, including parts of the putamen, was activated particularly when selecting messages for the partner. This provides initial evidence that giving a verbal treat to a romantic partner seems to involve neural reward circuitry in the basal ganglia. These results can have important implications for the neurobiological mechanisms protecting and stabilizing romantic relationships, which build a highly relevant aspect of human life and health.

neuroscience↗

A novel analgesic pathway from parvocellular oxytocin neurons to the periaqueductal gray

The hypothalamic neuropeptide, oxytocin (OT), exerts prominent analgesic effects via central and peripheral action. Here we discovered a novel subset of OT neurons whose projections preferentially terminate on OT receptor (OTR)-expressing neurons in the ventrolateral periaqueductal gray (vlPAG). Using a newly generated line of transgenic rats (OTR-IRES-Cre), we determined that most of the vlPAG OTR expressing cells being targeted by OT projections are GABAergic in nature. Both optogenetically-evoked axonal OT release in the vlPAG as well as chemogenetic activation of OTR vlPAG neurons results in a long-lasting overall increase of vlPAG neuronal activity. This then leads to an indirect suppression of sensory neuron activity in the spinal cord and strong analgesia. Finally, we describe a novel OT[->]vlPAG[->]spinal cord circuit that seems critical for analgesia in the context of both inflammatory and neuropathic pain. Highlights- We generated a new transgenic knock-in rat line (OTR-IRES-Cre) - A distinct parvOT neuronal population projects to vlPAG but not the SON or spinal cord - OT excites vlPAG OTR neurons which indirectly inhibit SC WDR neurons - This novel parvOT[->]vlPAG[->]SC pathway alleviates nociception but not the affective component of pain

neuroscience↗