Center for Neurotechnology and Neurorecovery, Department of Neurology, Massachusetts General Hospital, Boston, MA, USA.
Department of Neurology, Harvard Medical School, Boston, MA, USA.
Nat Protoc. 2023 Oct;18(10):2927-2953. doi: 10.1038/s41596-023-00871-2. Epub 2023 Sep 11.
Neuropixels are silicon-based electrophysiology-recording probes with high channel count and recording-site density. These probes offer a turnkey platform for measuring neural activity with single-cell resolution and at a scale that is beyond the capabilities of current clinically approved devices. Our team demonstrated the first-in-human use of these probes during resection surgery for epilepsy or tumors and deep brain stimulation electrode placement in patients with Parkinson's disease. Here, we provide a better understanding of the capabilities and challenges of using Neuropixels as a research tool to study human neurophysiology, with the hope that this information may inform future efforts toward regulatory approval of Neuropixels probes as research devices. In perioperative procedures, the major concerns are the initial sterility of the device, maintaining a sterile field during surgery, having multiple referencing and grounding schemes available to de-noise recordings (if necessary), protecting the silicon probe from accidental contact before insertion and obtaining high-quality action potential and local field potential recordings. The research team ensures that the device is fully operational while coordinating with the surgical team to remove sources of electrical noise that could otherwise substantially affect the signals recorded by the sensitive hardware. Prior preparation using the equipment and training in human clinical research and working in operating rooms maximize effective communication within and between the teams, ensuring high recording quality and minimizing the time added to the surgery. The perioperative procedure requires ~4 h, and the entire protocol requires multiple weeks.
神经像素是一种基于硅的电生理记录探针,具有高通道计数和记录点密度。这些探针为以单细胞分辨率和当前临床批准设备无法达到的规模测量神经活动提供了一个交钥匙平台。我们的团队在癫痫或肿瘤切除手术以及帕金森病患者的深部脑刺激电极放置过程中,首次在人体中使用了这些探针。在这里,我们提供了对使用神经像素作为研究工具研究人类神经生理学的能力和挑战的更好理解,希望这些信息可以为未来神经像素探针作为研究设备的监管批准提供信息。在围手术期过程中,主要关注点是设备的初始无菌性、在手术过程中保持无菌场、具有多种参考和接地方案可供使用以消除记录中的噪声(如果需要)、在插入前保护硅探针免受意外接触以及获得高质量的动作电位和局部场电位记录。研究团队在与手术团队协调以消除可能对敏感硬件记录的信号产生重大影响的电噪声源的同时,确保设备的正常运行。使用设备进行预先准备、在人体临床研究方面的培训以及在手术室工作可以最大限度地提高团队内部和团队之间的有效沟通,确保高记录质量并最大限度地减少手术时间。围手术期过程需要大约 4 小时,整个方案需要数周时间。