A novel robot-assisted method for implanting intracortical sensorimotor devices for brain-computer interface studies: principles, surgical techniques, and challenges.

IF 3.5 2区 医学 Q1 CLINICAL NEUROLOGY Journal of neurosurgery Pub Date : 2024-12-06 DOI:10.3171/2024.7.JNS241296
Naoki Ikegaya, Arka N Mallela, Peter C Warnke, Nicolas G Kunigk, Fang Liu, Hunter R Schone, Ceci Verbaarschot, Nicholas G Hatsopoulos, John E Downey, Michael L Boninger, Robert Gaunt, Jennifer L Collinger, Jorge A Gonzalez-Martinez
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Abstract

Precise anatomical implantation of a microelectrode array is fundamental for successful brain-computer interface (BCI) surgery, ensuring high-quality, robust signal communication between the brain and the computer interface. Robotic neurosurgery can contribute to this goal, but its application in BCI surgery has been underexplored. Here, the authors present a novel robot-assisted surgical technique to implant rigid intracortical microelectrode arrays for the BCI. Using this technique, the authors performed surgery in a 31-year-old male with tetraplegia due to a traumatic C4 spinal cord injury that occurred a decade earlier. Each of the arrays was embedded into the parenchyma with a single insertion without complication. Postoperative imaging verified that the devices were placed as intended. With the motor cortex arrays, the participant successfully accomplished 2D control of a virtual arm and hand, with a success rate of 20 of 20 attempts, and recording quality was maintained at 100 and 200 days postimplantation. Intracortical microstimulation of the somatosensory cortex arrays elicited sensations in the fingers and palm. A robotic neurosurgery technique was successfully translated into BCI device implantation as part of an early feasibility trial with the long-term goal of restoring upper-limb function. The technique was demonstrated to be accurate and subsequently contributed to high-quality signal communication.

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一种用于脑机接口研究的植入皮质内感觉运动装置的新型机器人辅助方法:原理、手术技术和挑战。
微电极阵列的精确解剖植入是成功的脑机接口(BCI)手术的基础,它确保了大脑和计算机接口之间高质量、鲁棒的信号通信。机器人神经外科手术有助于实现这一目标,但其在脑机接口手术中的应用尚未得到充分探索。在这里,作者提出了一种新的机器人辅助手术技术,用于脑机接口植入刚性皮质内微电极阵列。使用这种技术,作者对一名31岁男性患者进行了手术,该患者因10年前发生的创伤性C4脊髓损伤而四肢瘫痪。每个阵列都嵌入到薄壁组织中,只需一次插入,没有任何并发症。术后成像证实装置按预期放置。通过运动皮层阵列,参与者成功完成了对虚拟手臂和手的2D控制,20次尝试中成功率为20次,并且在植入后100天和200天保持记录质量。对躯体感觉皮层阵列的皮层内微刺激引起了手指和手掌的感觉。作为恢复上肢功能的长期目标的早期可行性试验的一部分,机器人神经外科技术成功地转化为BCI装置植入。该技术被证明是准确的,随后有助于高质量的信号通信。
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来源期刊
Journal of neurosurgery
Journal of neurosurgery 医学-临床神经学
CiteScore
7.20
自引率
7.30%
发文量
1003
审稿时长
1 months
期刊介绍: The Journal of Neurosurgery, Journal of Neurosurgery: Spine, Journal of Neurosurgery: Pediatrics, and Neurosurgical Focus are devoted to the publication of original works relating primarily to neurosurgery, including studies in clinical neurophysiology, organic neurology, ophthalmology, radiology, pathology, and molecular biology. The Editors and Editorial Boards encourage submission of clinical and laboratory studies. Other manuscripts accepted for review include technical notes on instruments or equipment that are innovative or useful to clinicians and researchers in the field of neuroscience; papers describing unusual cases; manuscripts on historical persons or events related to neurosurgery; and in Neurosurgical Focus, occasional reviews. Letters to the Editor commenting on articles recently published in the Journal of Neurosurgery, Journal of Neurosurgery: Spine, and Journal of Neurosurgery: Pediatrics are welcome.
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