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The mechanisms of action of deep brain stimulation and ideas for the future development

机译:深层脑刺激的作用机理和对未来发展的想法

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Deep brain stimulation (DBS) has been used as a treatment of movement disorders such as Parkinson's disease, dystonia, and essential tremor for over twenty years, and is a promising treatment for depression and epilepsy. However, the exact mechanisms of action of DBS are still uncertain, although different theories have emerged. This review summarizes the current understanding in this field. Different modalities used to investigate DBS such as electrophysiological, imaging and biochemical studies have revealed different mechanisms of DBS. The mechanisms may also be different depending on the structure targeted, the disease condition or the animal model employed. DBS may inhibit the target neuronal networks but activate the efferent axons. It may suppress pathological rhythms or impose new rhythms associated with beneficial effects, and involves neuronal networks with widespread connections. Different neurotransmitter systems such as dopamine and GABA upregulation are involved in the effects of DBS. There are also technical advances to prolong the battery life and specific targeting based on new electrode designs with multiple contacts which have the ability to steer the current toward a specific direction. There is ongoing work in closed loop or adaptive DBS using neural oscillations to provide the feedback signals. These oscillations need to be better characterized in a wide variety of clinical settings in future studies. Individualization of DBS parameters based on neural oscillations may optimize the clinical benefits of DBS. (C) 2015 Elsevier Ltd. All rights reserved.
机译:深部脑刺激(DBS)已用于治疗运动障碍,例如帕金森氏病,肌张力障碍和原发性震颤,已有20多年的历史,它是抑郁症和癫痫病的有前途的疗法。然而,尽管出现了不同的理论,DBS的确切作用机制仍不确定。这篇综述总结了该领域的当前理解。用于研究DBS的不同方式(例如电生理,成像和生化研究)揭示了DBS的不同机制。取决于所靶向的结构,疾病状况或所采用的动物模型,其机制也可能不同。 DBS可能会抑制目标神经元网络,但会激活传出的轴突。它可能抑制病理性节律或施加与有益作用有关的新节律,并涉及具有广泛联系的神经元网络。 DBS的作用涉及不同的神经递质系统,如多巴胺和GABA上调。基于具有多个触点的新型电极设计,还有一些技术进步可以延长电池寿命和特定目标,这些电极具有将电流导向特定方向的能力。使用神经振荡来提供反馈信号的闭环或自适应DBS正在进行中。在未来的研究中,需要在各种临床环境中更好地表征这些振荡。基于神经振荡的DBS参数个性化可以优化DBS的临床益处。 (C)2015 Elsevier Ltd.保留所有权利。

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