University of Pittsburgh
Pittsburgh, Pennsylvania, 15213, United States
NCT Number: NCT02515890
The purpose of this study is to determine the effects of pain on facilitating long-term auditory memory in the presence and absence of distinct intravenous anesthetics. The ability to identify previously presented words from a list assessed the degree of memory formation. In a subset of subjects, functional magnetic resonance imaging was used to identify the neural correlates of memory inhibition or facilitation by the combination of pain and anesthetic used.
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Notify Me18 year–39 year
All sexes
Interventional
Phase 1
Pittsburgh, Pennsylvania, 15213, United States
This study adds specific details to the current incomplete body of knowledge examining the effect of pain on memory formation under the influence of anesthetic agents.
Pain and anesthetic agents were administered as experimental variables in this study. Healthy adult subjects were played repeated lists of words and performed several decision-making tasks that encourage memory encoding. Some words were consistently paired with painful electric shock, and was anticipated to improve subsequent memory performance specifically for those items. The same experiment was repeated in all subjects during the administration of 1-2 possible agents that reduce memory formation: dexmedetomidine, a predominantly sedative agent, and midazolam, a well-known amnestic agent, and ketamine, a well-known dissociative analgo-sedative. The extent to which pain modulates memory performance under the effects of the anesthetic agents was the primary outcome of interest.
Further, a subset of the subjects performed the same experimental procedures while undergoing functional magnetic resonance imaging, which continuously reflects neuronal activity throughout the brain. Classic memory areas were predicted to be activated by the auditory processing task, but how these neural circuits change under the two anesthetic agents with the concomitant experience of pain were of interest. It was anticipated that pain recruits a parallel memory pathway using limbic structures, known for their involvement in fear conditioning. Additionally, stronger and more diffuse cortical processing likely occurs with concomitant pain, as level of sedation was reduced by this strong stimulus. Discovering the anatomic correlates specific to each experimental variable (pain and anesthetic), and their interplay, may help refine our model of brain function during the dynamics of pain and sedation.
Healthy volunteers accepted: Yes
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
Selected subjects received this drug during a portion of the study
Other names: Precedex
Selected subjects received this drug during a portion of the study
Other names: Versed
Experimental acute pain stimulus was delivered using a nerve stimulator. These painful shocks were paired randomly with some of the auditory experimental cues.
Other names: electric nerve stimulation
Selected subjects received this drug during a portion of the study
Other names: Ketalar
Time frame: At memory testing 1 day later
Subjects completed the Remember, Know, New (RKN) task during next day testing. Their d' memory score was calculated based on their ability to discriminate between previously heard words and new words. A higher d' score indicates stronger recollection. D' scores were compared across the control condition (saline) and the drug conditions dexmedetomidine, midazolam, and ketamine. Performance was also calculated according to words associated with Pain and No Pain conditions.
University of Pittsburgh
Other
Modulation of Long-term Memory by the Experience of Pain During Sedation With Anesthetics
Acronym: MMA
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