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来自人类言语皮层的慢性动态皮层脑电图

Chronic ambulatory electrocorticography from human speech cortex.

作者信息

Rao Vikram R, Leonard Matthew K, Kleen Jonathan K, Lucas Ben A, Mirro Emily A, Chang Edward F

机构信息

University of California, San Francisco, Department of Neurology, San Francisco, CA 94143, United States.

University of California, San Francisco, Department of Neurosurgery, San Francisco, CA 94143, United States; Weill Institute for Neurosciences, University of California, San Francisco, San Francisco, CA 94143, United States.

出版信息

Neuroimage. 2017 Jun;153:273-282. doi: 10.1016/j.neuroimage.2017.04.008. Epub 2017 Apr 7.

Abstract

Direct intracranial recording of human brain activity is an important approach for deciphering neural mechanisms of cognition. Such recordings, usually made in patients with epilepsy undergoing inpatient monitoring for seizure localization, are limited in duration and depend on patients' tolerance for the challenges associated with recovering from brain surgery. Thus, typical intracranial recordings, similar to most non-invasive approaches in humans, provide snapshots of brain activity in acute, highly constrained settings, limiting opportunities to understand long timescale and natural, real-world phenomena. A new device for treating some forms of drug-resistant epilepsy, the NeuroPace RNS® System, includes a cranially-implanted neurostimulator and intracranial electrodes that continuously monitor brain activity and respond to incipient seizures with electrical counterstimulation. The RNS System can record epileptic brain activity over years, but whether it can record meaningful, behavior-related physiological responses has not been demonstrated. Here, in a human subject with electrodes implanted over high-level speech-auditory cortex (Wernicke's area; posterior superior temporal gyrus), we report that cortical evoked responses to spoken sentences are robust, selective to phonetic features, and stable over nearly 1.5 years. In a second subject with RNS System electrodes implanted over frontal cortex (Broca's area, posterior inferior frontal gyrus), we found that word production during a naming task reliably evokes cortical responses preceding speech onset. The spatiotemporal resolution, high signal-to-noise, and wireless nature of this system's intracranial recordings make it a powerful new approach to investigate the neural correlates of human cognition over long timescales in natural ambulatory settings.

摘要

直接颅内记录人类大脑活动是破译认知神经机制的重要方法。这种记录通常在因癫痫发作定位而接受住院监测的癫痫患者中进行,持续时间有限,并且取决于患者对脑手术后恢复相关挑战的耐受性。因此,与大多数人类非侵入性方法类似,典型的颅内记录只能在急性、高度受限的环境中提供大脑活动的快照,限制了理解长时间尺度和自然、现实世界现象的机会。一种用于治疗某些形式耐药性癫痫的新设备——NeuroPace RNS® 系统,包括一个植入颅骨的神经刺激器和颅内电极,可连续监测大脑活动并通过电对抗刺激对初期癫痫发作做出反应。RNS 系统可以记录数年的癫痫脑活动,但它是否能记录有意义的、与行为相关的生理反应尚未得到证实。在此,在一名电极植入高级言语听觉皮层(韦尼克区;颞上回后部)的人类受试者中,我们报告说,对口语句子的皮层诱发反应强烈,对语音特征具有选择性,并且在近 1.5 年的时间里保持稳定。在另一名 RNS 系统电极植入额叶皮层(布洛卡区,额下回后部)的受试者中,我们发现命名任务期间的单词生成可靠地诱发了言语开始前的皮层反应。该系统颅内记录的时空分辨率、高信噪比和无线特性使其成为在自然动态环境中长时间研究人类认知神经关联的强大新方法。

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