Tim Brunson DCH

Welcome to The International Hypnosis Research Institute Web site. Our intention is to provide quality information to clinicians and the general public concerning hypnosis, hypnotherapy, and other mind/body modalities. We intend to expand our coverage to include such topics as Neuro-Linguistic Programming (NLP), energy psychology and medicine, and other related topics. While our intention is to provide quality information derived from valid sources, including peer reviewed literature concerning significant research, this site is not presented as a source of medical or psychological advice. Clinicians wishing to expand their scope of practice or protocols based upon presented information should perform due diligence prior to use. It is our sincere hope to stimulate interest in these topics and to contribute to the evolution of the science of hypnosis. -- Tim Brunson, PhD

Cerebral mechanisms of hypnosis

The neural mechanisms underlying hypnosis and especially the modulation of pain perception by hypnosis remain obscure. Using PET we first described the distribution of regional cerebral blood flow during the hypnotic state. Hypnosis relied on revivification of pleasant autobiographical memories and was compared to imaging autobiographical material in <>.

The hypnotic state was related to the activation of a widespread set of cortical areas involving occipital, parietal, precentral, premotor, and ventrolateral prefrontal and anterior cingulate cortices. This pattern of activation shares some similarities with mental imagery, from which it mainly differs by the relative deactivation of precuneus. Second, we looked at the anti-nociceptive effects of hypnosis. Compared to the resting state, hypnosis reduced pain perception by approximately 50 %. The hypnosis-induced reduction of affective and sensory responses to noxious thermal stimulation were modulated by the activity in the midcingulate cortex (area 24a'). Finally, we assessed changes in cerebral functional connectivity related to hypnosis. Compared normal alertness (i.e., rest and mental imagery), the hypnotic state, significantly enhanced the functional to modulation between midcingulate cortex and a large neural network involved in sensory, affective, cognitive and behavioral aspects of nociception. These findings show that not only pharmacological but also psychological strategies for pain control can modulate the cerebral network involved in noxious perception.

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