情感脑机接口作为响应式精神刺激的赋能技术。

IF 1.8 Q3 ENGINEERING, BIOMEDICAL
Alik S Widge, Darin D Dougherty, Chet T Moritz
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引用次数: 0

摘要

临床上迫切需要响应式神经刺激器,它能感知患者的大脑活动,并提供有针对性的电刺激,以抑制不必要的症状。这一点在精神疾病中尤为明显,因为精神疾病的症状会在一天中不断变化。从神经活动中解码情感体验的情感生物识别(BCI)是针对边缘回路的响应式刺激器的候选控制信号。然而,目前的情感解码器还不能区分病态和健康的极端情感。不加区分地提供刺激会降低生活质量,并可能对人体有害。我们认为,克服这一局限性的关键在于对意志,尤其是患者体验情绪调节的意图进行具体解码。这些情绪调节信号已经存在于前额叶皮层(PFC)中,可以通过相对简单的 BCI 算法提取出来。我们描述了由前额叶皮质控制的边缘脑刺激动物模型的初步数据,并讨论了临床前测试的下一步工作和可能的转化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Affective Brain-Computer Interfaces As Enabling Technology for Responsive Psychiatric Stimulation.

Affective Brain-Computer Interfaces As Enabling Technology for Responsive Psychiatric Stimulation.

Affective Brain-Computer Interfaces As Enabling Technology for Responsive Psychiatric Stimulation.

Affective Brain-Computer Interfaces As Enabling Technology for Responsive Psychiatric Stimulation.

There is a pressing clinical need for responsive neurostimulators, which sense a patient's brain activity and deliver targeted electrical stimulation to suppress unwanted symptoms. This is particularly true in psychiatric illness, where symptoms can fluctuate throughout the day. Affective BCIs, which decode emotional experience from neural activity, are a candidate control signal for responsive stimulators targeting the limbic circuit. Present affective decoders, however, cannot yet distinguish pathologic from healthy emotional extremes. Indiscriminate stimulus delivery would reduce quality of life and may be actively harmful. We argue that the key to overcoming this limitation is to specifically decode volition, in particular the patient's intention to experience emotional regulation. Those emotion-regulation signals already exist in prefrontal cortex (PFC), and could be extracted with relatively simple BCI algorithms. We describe preliminary data from an animal model of PFC-controlled limbic brain stimulation and discuss next steps for pre-clinical testing and possible translation.

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来源期刊
CiteScore
4.00
自引率
9.50%
发文量
14
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