Department of Surgical Sciences, Section of Neurosurgery, Dunedin School of Medicine, University of Otago, Dunedin, New Zealand.
Stereotactic and Functional Neurosurgery, Department of Neurosurgery, University Hospital Bonn, Bonn, Germany.
Expert Rev Med Devices. 2021 Apr;18(4):307-317. doi: 10.1080/17434440.2021.1909470. Epub 2021 Apr 5.
: The International Neuromodulation Society defines neuromodulation as the alteration of nerve activity through targeted delivery of a stimulus, such as electrical stimulation or chemical agents, to specific neurological sites in the body.: In the near future (<5 years) increasingly complex implantable neuromodulation systems will enter the market. These devices are capable of closed-loop stimulation and the delivery of novel stimulation designs, pushing the need for upgradability. But what about the near-to-far future, meaning 5-10 years from now?: We propose that neuromodulation in the near to far future (5-10 years) will involve integration of adaptive network neuromodulation with predictive artificial intelligence, automatically adjusted by brain and external sensors, and controlled via cloud-based applications. The components will be introduced in a phased approach, culminating in a fully autonomous brain-stimulator-cloud interface. This may, in the long future (>10 years), lead to the brain of the future, a brain with integrated artificial intelligence.
国际神经调节学会将神经调节定义为通过向身体的特定神经部位靶向传递刺激,如电刺激或化学剂,来改变神经活动。在不久的将来(<5 年),越来越复杂的可植入神经调节系统将进入市场。这些设备能够进行闭环刺激和新型刺激设计的输送,这就需要具备可升级性。那么,更近的未来,也就是 5-10 年之后呢?我们提出,在不久的未来(5-10 年),神经调节将涉及自适应网络神经调节与预测性人工智能的整合,由大脑和外部传感器自动调节,并通过基于云的应用程序进行控制。这些组件将分阶段引入,最终形成一个完全自主的大脑刺激器-云接口。从长远来看(>10 年),这可能会导致未来的大脑,即具有人工智能集成的大脑。