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The term seizure threshold is used to describe the balance between excitatory (glutaminergic) and inhibitory (GABA-ergic) forces in the brain which affect how susceptible a person is to seizures. Those diagnosed with epilepsy or certain other neurological conditions are more vulnerable to seizures if the threshold is reduced, and should be ...
In opioid-induced hyperalgesia, sensitization of pronociceptive mechanisms occurs, resulting in a decrease in the pain threshold, or allodynia. [10] In addition, what appears to be opioid tolerance can be caused by opioid-induced hyperalgesia lowering the baseline pain level, thus masking the drug's analgesic effects. [11]
Methadone, sold under the brand names Dolophine and Methadose among others, is a synthetic opioid used medically to treat chronic pain and opioid use disorder. [7] Prescribed for daily use, the medicine relieves cravings and opioid withdrawal symptoms. [10]
A seizure may increase the likelihood that more seizures will occur; an old saying in epilepsy research is "seizures beget seizures". [1] Repeated stimulation "lowers the threshold" for more seizures to occur. [4] The brains of experimental animals are repeatedly stimulated, usually with electricity, to induce the seizures. [1]
A bottle of veterinary pharmaceutical potassium bromide oral solution used in dogs, primarily as an antiepileptic (to stop seizures) [3] In dogs, epilepsy is often an inherited condition. The incidence of epilepsy/seizures in the general dog population is estimated to be between 0.5% and 5.7%. [4]
Opioid agonist therapy (OAT) is a treatment in which prescribed opioid agonists are given to patients who live with Opioid use disorder (OUD). [1] In the case of methadone maintenance treatment (MMT), methadone is used to treat dependence on heroin or other opioids, and is administered on an ongoing basis.
Methade, or 6-(dimethylamino)-4,4-diphenylheptane, is the parent compound of the methadone and methadol series of opioid analgesics: [1]. Derived from the chemical structure of methadone, various analogs and derivatives have been synthesized and developed to enhance its therapeutic properties and minimize potential side effects.
Anticonvulsants suppress the excessive rapid firing of neurons during seizures. [6] Anticonvulsants also prevent the spread of the seizure within the brain. [7] Conventional antiepileptic drugs may block sodium channels or enhance γ-aminobutyric acid function. Several antiepileptic drugs have multiple or uncertain mechanisms of action. [8]
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