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科尔特斯脑交换实时相位触发刺激算法的开发与评估。

Development and Evaluation of a Real-Time Phase-Triggered Stimulation Algorithm for the CorTec Brain Interchange.

出版信息

IEEE Trans Neural Syst Rehabil Eng. 2024;32:3625-3635. doi: 10.1109/TNSRE.2024.3459801. Epub 2024 Sep 27.

Abstract

With the development and characterization of biomarkers that may reflect neural network state as well as a patient's clinical deficits, there is growing interest in more complex stimulation designs. While current implantable neuromodulation systems offer pathways to expand the design and application of adaptive stimulation paradigms, technological drawbacks of these systems limit adaptive neuromodulation exploration. In this paper, we discuss the implementation of a phase-triggered stimulation paradigm using a research platform composed of an investigational system known as the CorTec Brain Interchange (CorTec GmbH, Freiburg, Germany), and an open-source software tool known as OMNI-BIC. We then evaluate the stimulation paradigm's performance in both benchtop and in vivo human demonstrations. Our findings indicate that the Brain Interchange and OMNI-BIC platform is capable of reliable administration of phase-triggered stimulation and has the potential to help expand investigation within the adaptive neuromodulation design space.

摘要

随着可能反映神经网络状态以及患者临床缺陷的生物标志物的发展和特征描述,人们对更复杂的刺激设计越来越感兴趣。虽然当前的植入式神经调节系统为扩展适应性刺激范式的设计和应用提供了途径,但这些系统的技术缺陷限制了适应性神经调节的探索。在本文中,我们讨论了使用由研究系统 CorTec Brain Interchange(CorTec GmbH,德国弗莱堡)和开源软件工具 OMNI-BIC 组成的研究平台来实现相控刺激范式的情况。然后,我们评估了该刺激范式在台式和体内人体演示中的性能。我们的研究结果表明,Brain Interchange 和 OMNI-BIC 平台能够可靠地进行相控刺激,并且有可能帮助扩展适应性神经调节设计空间内的研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7cb0/11485249/164acf5933e5/nihms-2026133-f0001.jpg

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