Neurobiology of Love

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Across
  1. 4. _________ overprotection/control by parents were associated with reports of more severe pain during rejection and a stronger interaction of pain with interpersonal context on neural level
  2. 7. Feelings of _______ disrupt the down-regulation of pain
  3. 8. The inability to feel pain
  4. 9. Classification of surgery performed on rats that omitted nerve ligation
  5. 11. Recurrent OXT administration diminishes pain-like behaviors in a model of ______ pain
  6. 15. Activation in this region was on average greater during rejection than during acceptance while experiencing somatic pain
  7. 16. Axis known as the “fight and flight” response
  8. 17. Neurohormone shown to have both anxiolytic and analgesic properties
  9. 18. Retaliatory aggression is a ______ activity
  10. 20. SNL: Spinal Nerve _____
  11. 21. Region of brain in which stimulation induces analgesia, as mediated by oxytocin containing neurons
Down
  1. 1. ______ correlation was found between anxiety state and pain-related behaviors in male prairie voles
  2. 2. 4-6 days of separation from the bonded female partner in monogamous male prairie voles led to behavioral ________
  3. 3. Dispositionally ____ individuals exhibited less functional connectivity between the VLPC and ventral striatum during retaliatory aggression
  4. 5. Wide ______ range cell activity was diminished by the administration of spinal oxytocin or PVN electrical stimulation 15-17 days post surgery
  5. 6. Theory that suggests non-optimal interpersonal environment in early life may disrupt the development of the shared neural system subserving interpersonal emotions and pain
  6. 10. Loss of bonded female partner chronically upregulated basal ___ axis in male voles
  7. 12. Physical ____ is modulated by feelings of interpersonal rejection
  8. 13. Brain region where regulation of social pain and not the aggressive motor act itself is what predicted subsequent increases in retaliation-related striatal activity
  9. 14. Experience of pain from a normally non-painful stimulus
  10. 19. Type of inhibition localized to anterior VLPFC (hint: how I feel at the end of the Notebook)