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首页> 外文期刊>International journal of psychophysiology: official journal of the International Organization of Psychophysiology >Modulation of response patterns in human auditory cortex during a target detection task: An intracranial electrophysiology study
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Modulation of response patterns in human auditory cortex during a target detection task: An intracranial electrophysiology study

机译:目标检测任务期间人类听觉皮层反应模式的调节:颅内电生理研究

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Selective attention enhances cortical activity representing an attended sound stream in human posterolateral superior temporal gyrus (FIST). It is unclear, however, what mechanisms are associated with a target detection task that necessitates sustained attention (vigilance) to a sound stream. We compared responses elicited by target and non-target sounds, and to sounds presented in a passive-listening paradigm. Subjects were neurosurgical patients undergoing invasive monitoring for medically refractory epilepsy. Stimuli were complex tones, band-limited noise bursts and speech syllables. High gamma cortical activity (70-150 Hz) was examined in all subjects using subdural grid electrodes implanted over PLST. Additionally, responses were measured from depth electrodes implanted within Heschl's gyrus (HG) in one subject. Responses to target sounds recorded from PLST were increased when compared to responses elicited by the same sounds when they were not-targets, and when they were presented during passive listening. Increases in high gamma activity to target sounds occurred during later portions (after 250 ms) of the response. These increases were related to the task and not to detailed stimulus characteristics. In contrast, earlier activity that did not vary across conditions did represent stimulus acoustic characteristics. Effects observed on FIST were not noted in HG. No consistent effects were noted in the averaged evoked potentials in either cortical region. We conclude that task dependence modulates later activity in PIST during vigilance. Later activity may represent feedback from higher cortical areas. Study of concurrently recorded activity from frontoparietal areas is necessary to further clarify task-related modulation of activity on PLST. (C) 2014 Elsevier B.V. All rights reserved.
机译:选择性注意增强了皮质活动,代表了人类后外侧上颞回(FIST)中伴随的声音流。但是,尚不清楚什么机制与目标检测任务相关联,需要持续关注(警惕)声音流。我们比较了目标声音和非目标声音以及被动听觉范例中呈现的声音所引起的响应。受试者为接受侵入性监测以治疗难治性癫痫的神经外科患者。刺激是复杂的音调,频带受限的噪声爆发和语音音节。使用植入在PLST上的硬膜下栅格电极检查了所有受试者的高伽马皮质活性(70-150 Hz)。此外,从植入一个对象的赫氏回旋(HG)内的深度电极测量响应。与非目标时以及在被动聆听中呈现相同声音时相比,对从PLST录制的目标声音的响应有所增加。在响应的后续部分(250毫秒后)期间,针对目标声音的高伽玛活动增加。这些增加与任务有关,与详细的刺激特征无关。相反,在不同条件下没有变化的早期活动确实代表了刺激声学特性。在HG中未观察到对FIST的影响。在两个皮层区域的平均诱发电位中均未观察到一致的影响。我们得出结论,任务依赖性会在警惕期间调节PIST的后期活动。以后的活动可能表示来自较高皮质区域的反馈。为了进一步阐明PLST上与任务相关的活动调制,有必要研究来自额顶区域的同时记录的活动。 (C)2014 Elsevier B.V.保留所有权利。

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