Stress has a complex, bidirectional modulatory influence on pain. Stress may either reduce (stress-induced analgesia) or exacerbate (stress-induced hyperalgesia) pain depending on the nature, duration, and intensity of the stressor. The endogenous cannabinoid (endocannabinoid) system is present throughout the neuroanatomical pathways that mediate and modulate responses to painful stimuli. The specific role of the endocannabinoid system in the brain in pain and the modulation of pain by stress is reviewed herein. We first provide a brief overview of the endocannabinoid system, followed by a review of the evidence that the brain\u27s endocannabinoid system modulates pain. We provide a comprehensive evaluation of the role of the endocannabinoi...
Acute stress suppresses pain by activating brain pathways that engage opioid or non-opioid mechanism...
Acute stress suppresses pain by activating brain pathways that engage opioid or non-opioid mechanism...
The endocannabinoid system, consisting of the cannabinoid(1) receptor (CB1R) and cannabinoid(2) rece...
Stress has a complex, bidirectional modulatory influence on pain. Stress may either reduce (stress-i...
The endocannabinoid (EC) system consists of two main receptors: cannabinoid type 1 receptor cannabin...
Preparations of the Cannabis sativa plant have been used to analgesic effect for millenia, but only ...
Depression and pain are two of the most debilitating disorders worldwide and have an estimated coocc...
Acute stress suppresses pain by activating brain pathways that engage opioid or non-opioid mechanism...
Acute stress suppresses pain by activating brain pathways that engage opioid or non-opioid mechanism...
Recent work in our laboratories has demonstrated that an opioid-independent form of stress-induced a...
Depression and pain are two of the most debilitating disorders worldwide and have an estimated coocc...
Acute stress suppresses pain by activating brain pathways that engage opioid or non-opioid mechanism...
Recent work in our laboratories has demonstrated that an opioid-independent form of stress-induced a...
Acute stress suppresses pain by activating brain pathways that engage opioid or non-opioid mechanism...
Acute stress suppresses pain by activating brain pathways that engage opioid or non-opioid mechanism...
Acute stress suppresses pain by activating brain pathways that engage opioid or non-opioid mechanism...
Acute stress suppresses pain by activating brain pathways that engage opioid or non-opioid mechanism...
The endocannabinoid system, consisting of the cannabinoid(1) receptor (CB1R) and cannabinoid(2) rece...
Stress has a complex, bidirectional modulatory influence on pain. Stress may either reduce (stress-i...
The endocannabinoid (EC) system consists of two main receptors: cannabinoid type 1 receptor cannabin...
Preparations of the Cannabis sativa plant have been used to analgesic effect for millenia, but only ...
Depression and pain are two of the most debilitating disorders worldwide and have an estimated coocc...
Acute stress suppresses pain by activating brain pathways that engage opioid or non-opioid mechanism...
Acute stress suppresses pain by activating brain pathways that engage opioid or non-opioid mechanism...
Recent work in our laboratories has demonstrated that an opioid-independent form of stress-induced a...
Depression and pain are two of the most debilitating disorders worldwide and have an estimated coocc...
Acute stress suppresses pain by activating brain pathways that engage opioid or non-opioid mechanism...
Recent work in our laboratories has demonstrated that an opioid-independent form of stress-induced a...
Acute stress suppresses pain by activating brain pathways that engage opioid or non-opioid mechanism...
Acute stress suppresses pain by activating brain pathways that engage opioid or non-opioid mechanism...
Acute stress suppresses pain by activating brain pathways that engage opioid or non-opioid mechanism...
Acute stress suppresses pain by activating brain pathways that engage opioid or non-opioid mechanism...
The endocannabinoid system, consisting of the cannabinoid(1) receptor (CB1R) and cannabinoid(2) rece...