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A General Method for Evaluating Deep Brain Stimulation Effects on Intravenous Methamphetamine Self-Administration

机译:评价深部脑刺激对甲基苯丙胺静脉给药的一般方法

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摘要

Substance use disorders, particularly to methamphetamine, are devastating, relapsing diseases that disproportionally affect young people. There is a need for novel, effective and practical treatment strategies that are validated in animal models. Neuromodulation, including deep brain stimulation (DBS) therapy, refers to the use of electricity to influence pathological neuronal activity and has shown promise for psychiatric disorders, including drug dependence. DBS in clinical practice involves the continuous delivery of stimulation into brain structures using an implantable pacemaker-like system that is programmed externally by a physician to alleviate symptoms. This treatment will be limited in methamphetamine users due to challenging psychosocial situations. Electrical treatments that can be delivered intermittently, non-invasively and remotely from the drug-use setting will be more realistic. This article describes the delivery of intracranial electrical stimulation that is temporally and spatially separate from the drug-use environment for the treatment of IV methamphetamine dependence. Methamphetamine dependence is rapidly developed in rodents using an operant paradigm of intravenous (IV) self-administration that incorporates a period of extended access to drug and demonstrates both escalation of use and high motivation to obtain drug.
机译:物质使用障碍,尤其是甲基苯丙胺,是毁灭性的,复发性疾病,对年轻人的影响不成比例。需要在动物模型中验证的新颖,有效和实用的治疗策略。神经调节,包括深部脑刺激(DBS)治疗,是指使用电力来影响病理神经元活动,并显示出对包括药物依赖性在内的精神疾病的希望。 DBS在临床实践中涉及使用植入式起搏器样系统将刺激连续传递到大脑结构中,该系统由医生在外部编程以减轻症状。由于挑战性的社会心理情况,这种方法在甲基苯丙胺使用者中将受到限制。可以间歇,无创且远离药物使用环境进行的电疗会更加现实。本文介绍了颅内电刺激的传递,该刺激在时间和空间上与用于IV甲基苯丙胺依赖的药物使用环境分开。使用静脉内(IV)自我管理的有效范例在啮齿动物中迅速发展出甲基苯丙胺依赖性,该范例包括一段延长的药物获取期,并证明了使用的逐步升级和获得药物的积极性。

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