IEEE Trans Biomed Eng. 2019 Nov;66(11):3204-3211. doi: 10.1109/TBME.2019.2902189. Epub 2019 Feb 28.
The purpose of this paper is to demonstrate how the integration of the multi-channel measurement capabilities of near-infrared spectroscopy (NIRS), electrocorticography (ECoG), and negative temperature coefficient thermistor sensors into a single device compact enough for subdural implantation can provide beneficial information on various aspects of brain cortical activity and prove a powerful medical modality for pre-, intra-, and post-operative diagnoses in neurosurgery.
The development of a flexible multi-modal multi-channel probe for the simultaneous measurement of the NIRS, ECoG, and surficial temperature obtained from the cerebral cortex was carried out. Photoelectric bare chips for NIRS channels, miniature temperature-coefficient thermistors for measuring localized temperature variation, and 3-mm-diameter platinum plates for ECoG recording were assembled on a polyimide-based flexible printed circuit to create six channels for each modality. A conformal coating of Parylene-C was applied on all the channels except the ECoG to make the probe surface biocompatible.
As a first-in-human study, the simultaneous measurement capability of the multi-modality probe, with sufficient signal-to-noise ratio and accuracy, to observe pathological neural activities in subjects during surgery and post-operative monitoring, with no complications two weeks since the implantation, was confirmed.
The feasibility of using a single device to assess the dynamic pathological activity from three different aspects was determined for human patients.
The simultaneous and accurate multi-channel recording of electrical, hemodynamic, and thermographic cortical activities in a single device small enough for subdural implantation is likely to have major implications in neurosurgery and neuroscience.
本文旨在展示如何将近红外光谱(NIRS)、皮层电图(ECoG)和负温度系数热敏电阻传感器的多通道测量功能集成到一个足够小的可植入硬脑膜下的单个设备中,从而提供有关大脑皮层活动各个方面的有益信息,并为神经外科的术前、术中和术后诊断提供一种强大的医疗模式。
开发了一种用于同时测量 NIRS、ECoG 和大脑皮层表面温度的灵活多模态多通道探头。光电裸芯片用于 NIRS 通道,微型热敏电阻用于测量局部温度变化,3 毫米直径的铂片用于 ECoG 记录,这些组件都被组装在聚酰亚胺基底的柔性印刷电路板上,以创建每个模态的 6 个通道。除 ECoG 外,所有通道都涂有聚对二甲苯 C 的 conformal coating,以使探头表面具有生物相容性。
作为首例人体研究,证实了多模态探头具有足够的信噪比和准确性,能够在手术期间和术后监测中观察到患者的病理性神经活动,并且在植入两周后没有出现并发症。
确定了在单个设备中评估来自三个不同方面的动态病理性活动的可行性。
单个设备中能够同时准确地记录电、血流动力学和热成像皮层活动,且该设备足够小可以植入硬脑膜下,这可能对神经外科和神经科学产生重大影响。