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Cholecystokinin receptors mediate tolerance to the analgesic effect of TENS in arthritic rats.
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Increasing intensity of TENS prevents analgesic tolerance in rats.
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Release of GABA and activation of GABA(A) in the spinal cord mediates the effects of TENS in rats.
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Physiotherapeutic Strategies and Their Current Evidence for Canine Osteoarthritis.
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Neurobiological mechanisms of TENS-induced analgesia.
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Expression of cholecystokinin by neurons in mouse spinal dorsal horn.
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Wireless transcutaneous electrical nerve stimulation device for chemotherapy-induced peripheral neuropathy: an open-label feasibility study.
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3
CCK(B) receptor antagonist L365,260 potentiates the efficacy to and reverses chronic tolerance to electroacupuncture-induced analgesia in mice.
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An opioid agonist that does not induce mu-opioid receptor--arrestin interactions or receptor internalization.
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Cellular action of cholecystokinin-8S-mediated excitatory effects in the rat periaqueductal gray.
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Chronic pain and genetic background interact and influence opioid analgesia, tolerance, and physical dependence.
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Calibrated forceps: a sensitive and reliable tool for pain and analgesia studies.
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Transcutaneous electrical nerve stimulation (TENS) reduces chronic hyperalgesia induced by muscle inflammation.
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