Sarnthein Johannes, Neidert Marian C
Klinik für Neurochirurgie, Universitätsspital Zürich, Universität Zürich, Zurich, Switzerland.
Klinisches Neurozentrum, Universitätsspital Zürich, Zurich, Switzerland.
Expert Rev Med Devices. 2024 May;21(5):373-379. doi: 10.1080/17434440.2024.2343421. Epub 2024 Apr 17.
During intraoperative neurophysiological monitoring in neurosurgery, brain electrodes are placed to record electrocorticography or to inject current for direct cortical stimulation. A low impedance electrode may improve signal quality.
We review here a brain electrode (WISE Cortical Strip, WCS®), where a thin polymer strip embeds platinum nanoparticles to create conductive electrode contacts. The low impedance contacts enable a high signal-to-noise ratio, allowing for better detection of small signals such as high-frequency oscillations (HFO). The softness of the WCS may hinder sliding the electrode under the dura or advancing it to deeper structures as the hippocampus but assures conformability with the cortex even in the resection cavity. We provide an extensive review on WCS including a market overview, an introduction to the device (mechanistics, cost aspects, performance standards, safety and contraindications) and an overview of the available pre- and post-approval data.
The WCS improves signal detection by lower impedance and better conformability to the cortex. The higher signal-to-noise ratio improves the detection of challenging signals. The softness of the electrode may be a disadvantage in some applications and an advantage in others.
在神经外科手术的术中神经生理监测期间,放置脑电极以记录皮质脑电图或注入电流进行直接皮质刺激。低阻抗电极可能会改善信号质量。
我们在此回顾一种脑电极(WISE皮质条带,WCS®),其中一条薄聚合物条带嵌入铂纳米颗粒以形成导电电极触点。低阻抗触点可实现高信噪比,有助于更好地检测高频振荡(HFO)等小信号。WCS的柔软性可能会妨碍电极在硬脑膜下滑动或将其推进到海马体等更深结构,但即使在切除腔内也能确保与皮质贴合。我们对WCS进行了广泛综述,包括市场概述、设备介绍(作用机制、成本方面、性能标准、安全性和禁忌症)以及可用的批准前和批准后数据概述。
WCS通过更低的阻抗和更好的皮质贴合性改善了信号检测。更高的信噪比提高了对具有挑战性信号的检测能力。电极的柔软性在某些应用中可能是劣势,而在其他应用中则是优势。