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首页> 外文期刊>Neurosurgery >Simultaneous Recording of Single-Neuron Activities and Broad-Area Intracranial Electroencephalography: Electrode Design and Implantation Procedure
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Simultaneous Recording of Single-Neuron Activities and Broad-Area Intracranial Electroencephalography: Electrode Design and Implantation Procedure

机译:同时记录单神经元活动和广域颅内脑电图:电极设计和植入程序。

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BACKGROUND: There has been growing interest in clinical single-neuron recording to better understand epileptogenicity and brain function. It is crucial to compare this new information, single-neuronai activity, with that obtained from conventional intracraniai electrcencephalography during simultaneous recording. However, it is difficult to implant microwires and subdural electrodes during a single surgical operation because the stereotactic frame hampers flexible craniotomy. OBJECTIVE:To describe newly designed electrodes and surgical techniques for implanting them with subdural electrodes that enable simultaneous recording from hippocampal neurons and broad areas of the cortical surface. METHODS:We designed a depth electrode that does not protrude into the dura and pulsates naturally with the brain. The length and tract of the depth electrode were determined preoperatively between the lateral subiculum and the lateral surface of the temporal lobe. A frameiess navigation system was used to insert the depth electrode. Surface grids and ventral strips were placed before and after the insertion of the depth electrodes, respectively. Finally, a microwire bundle was inserted into the lumen of the depth electrode. We evaluated the precision of implantation, the recording stability, and the recording rate with microwire electrodes. RESULTS:Depth-microwire electrodes were placed with a precision of 3.6 mm. The mean successful recording rate of single- or multiple-unit activity was 14.8%, which was maintained throughout the entire recording period. CONCLUSION: We achieved simultaneous implantation of microwires, depth eiectro-des, and broad-area subdural electrodes. Our method enabled simultaneous and stable recording of hippocampal single-neuron activities and multichannel intracranial electroencephalography.
机译:背景:人们对临床单神经元记录越来越感兴趣,以更好地了解癫痫发生性和脑功能。至关重要的是,将这种新信息,单个神经元活动与同时记录时从常规颅内脑电图获得的信息进行比较。然而,由于立体定向框架妨碍了柔性颅骨切开术,因此在单次外科手术期间难以植入微线和硬膜下电极。目的:描述新设计的电极和将硬脑膜下电极植入其中的手术技术,这些电极能够同时记录海马神经元和皮质表面的宽阔区域。方法:我们设计了一种深度电极,该电极不会伸入硬脑膜,不会随大脑自然脉动。术前确定深度电极的长度和束在侧下颌骨和颞叶侧面之间。一个深空导航系统被用来插入深度电极。在插入深度电极之前和之后分别放置表面网格和腹侧条。最后,将微丝束插入深度电极的内腔中。我们评估了植入的精度,记录稳定性以及微线电极的记录速率。结果:深度微丝电极的放置精度为3.6 mm。单单元或多单元活动的平均成功记录率为14.8%,在整个记录期间都保持这一水平。结论:我们实现了同时植入微线,深度电电极和广域硬膜下电极。我们的方法能够同时稳定记录海马单神经元活动和多通道颅内脑电图。

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