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Closed-Loop Neuromodulation Systems: Next-Generation Treatments for Psychiatric Illness

机译:闭环神经调节系统:精神疾病的下一代治疗

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摘要

Despite deep brain stimulation’s positive early results in psychiatric disorders, well-designed clinical trials have yielded inconsistent clinical outcomes. One path to more reliable benefit is closed-loop therapy: stimulation that is automatically adjusted by a device or algorithm in response to changes in the patient’s electrical brain activity. These interventions may provide more precise and patient-specific treatments. In this article, we first introduce the available closed-loop neuromodulation platforms, which have shown clinical efficacy in epilepsy and strong early results in movement disorders. We discuss the strengths and limitations of these devices in the context of psychiatric illness. We then describe emerging technologies to address these limitations, including pre-clinical developments such as wireless deep neurostimulation and genetically targeted neuromodulation. Finally, we discuss ongoing challenges and limitations for closed-loop psychiatric brain stimulation development, most notably the difficulty of identifying meaningful biomarkers for titration. We consider this in the recently-released Research Domain Criteria (RDoC) framework and describe how neuromodulation and RDoC are jointly very well suited to address the problem of treatment-resistant illness.
机译:尽管深层脑部刺激在精神疾病方面取得了早期的积极成果,但精心设计的临床试验却产生了不一致的临床结果。一种获得更可靠收益的途径是闭环治疗:一种刺激,可以通过设备或算法自动调节,以响应患者脑电活动的变化。这些干预措施可以提供更精确和针对患者的治疗。在本文中,我们首先介绍了可用的闭环神经调节平台,该平台已显示出在癫痫症中的临床疗效以及在运动障碍方面的早期成功结果。我们讨论了在精神疾病背景下这些设备的优势和局限性。然后,我们将描述解决这些局限性的新兴技术,包括临床前的发展,例如无线深层神经刺激和遗传靶向神经调节。最后,我们讨论了闭环精神病学脑刺激发展的持续挑战和局限性,最值得注意的是难以确定用于滴定的有意义的生物标记物。我们在最近发布的研究领域标准(RDoC)框架中考虑了这一点,并描述了神经调节和RDoC如何共同非常适合解决抗药性疾病的问题。

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