...
首页> 外文期刊>NeuroImage >Electrocorticographic delineation of human auditory cortical fields based on effects of propofol anesthesia
【24h】

Electrocorticographic delineation of human auditory cortical fields based on effects of propofol anesthesia

机译:基于异丙酚麻醉的效果的人体听觉皮质场的电容划分

获取原文
获取原文并翻译 | 示例

摘要

Abstract The functional organization of human auditory cortex remains incompletely characterized. While the posteromedial two thirds of Heschl's gyrus (HG) is generally considered to be part of core auditory cortex, additional subdivisions of HG remain speculative. To further delineate the hierarchical organization of human auditory cortex, we investigated regional heterogeneity in the modulation of auditory cortical responses under varying depths of anesthesia induced by propofol. Non-invasive studies have shown that propofol differentially affects auditory cortical activity, with a greater impact on non-core areas. Subjects were neurosurgical patients undergoing removal of intracranial electrodes placed to identify epileptic foci. Stimuli were 50 Hz click trains, presented continuously during an awake baseline period, and subsequently, while propofol infusion was incrementally titrated to induce general anesthesia. Electrocorticographic recordings were made with depth electrodes implanted in HG and subdural grid electrodes implanted over superior temporal gyrus (STG). Depth of anesthesia was monitored using spectral entropy. Averaged evoked potentials (AEPs), frequency-following responses (FFRs) and high gamma (70–150 Hz) event-related band power were used to characterize auditory cortical activity. Based on the changes in AEPs and FFRs during the induction of anesthesia, posteromedial HG could be divided into two subdivisions. In the most posteromedial aspect of the gyrus, the earliest AEP deflections were preserved and FFRs increased during induction. In contrast, the remainder of the posteromedial HG exhibited attenuation of both the AEP and the FFR. The anterolateral HG exhibited weaker activation characterized by broad, low-voltage AEPs and the absence of FFRs. Lateral STG exhibited limited activation by click trains, and FFRs there diminished during induction. Sustained high gamma activity was attenuated in the most posteromedial portion of HG, and was absent in all other regions. These differential patterns of auditory cortical activity during the induction of anesthesia may serve as useful physiological markers for field delineation. In this study, the posteromedial HG could be parcellated into at least two subdivisions. Preservation of the earliest AEP deflections and FFRs in the posteromedial HG likely reflects the persistence of feedforward synaptic activity generated by inputs from subcortical auditory pathways, including the medial geniculate nucleus. Highlights ? Auditory cortex on Heschl’s gyrus (HG) was delineated using propofol anesthesia. ? Core auditory cortex on HG could be parcellated into two functional divisions. ? Short-latency responses in posteromedial tip of HG persisted throughout induction. ? Frequency-following responses in posteromedial tip of HG increased during induction. ? High gamma activity was attenuated during propofol induction.
机译:摘要人类听觉皮层的功能组织仍然不完全表征。虽然Heschl的后两分之二的Heschl的回形(HG)通常被认为是核心听觉皮层的一部分,但HG的额外细分仍然投机。为了进一步描绘人听诊皮质的分层组织,我们研究了在异丙酚诱导的麻醉深度下调节听觉皮质反应的区域异质性。非侵入性研究表明,异丙酚差异地影响听觉皮质活动,对非核心区域的影响更大。受试者是接受颅内电极的神经外科患者,以鉴定癫痫灶。刺激是50 Hz点击培训,在唤醒基线期间连续呈现,随后呈促进异丙酚输注以递增滴定以诱导全身麻醉。用植入Hg的深度电极和植入优越的时间回值(STG)的软栅电极进行电容。使用光谱熵监测麻醉深度。平均诱发电位(AEP),频率跟随响应(FFR)和高伽马(70-150 Hz)事件相关频带电力用于表征听觉皮质活动。基于AEPS和FFR在感受到麻醉期间的变化,PSELEROMEDIAL HG可以分为两个细分。在回流的最近似的后,最早的AEP偏转,诱导过程中的FFR增加。相反,后后HG的其余部分表现出AEP和FFR的衰减。前外部Hg表现出较弱的激活,其特征在于宽,低压AEP和不存在FFR。侧面STG通过点击列车表现出有限的激活,并且在诱导过程中减少了FFR。持续的高γ活性在Hg的最近似的后部部分中衰减,并且在所有其他地区缺席。在麻醉诱导过程中,这些听觉皮质活动的这些差异模式可用作现场描绘的有用的生理标志物。在这项研究中,PostoMedial Hg可以被包装成至少两个细分。保存在后后HG中最早的AEP偏转和FFR可能反映了由皮质主动觉途径的输入产生的前馈突触活性的持续存在,包括内侧遗传核。强调 ? Heschl的回血(Hg)上的听觉皮质使用异丙酚麻醉划定。还是HG上的核心听觉皮质可以被锁定为两个功能部门。还是HG后射尖的短期响应持续到整个诱导。还是在诱导过程中,频率跟随HG后射尖的响应增加。还是在异丙酚诱导过程中衰减高γ活性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号