Brain Injury Rehabilitation Center, CRECER, Seville, Spain.
Neuropsychologia. 2013 Jun;51(7):1336-49. doi: 10.1016/j.neuropsychologia.2013.03.012. Epub 2013 Apr 2.
The thalamo-cortical system has been defined as a neural network associated with consciousness. While there seems to be wide agreement that the thalamo-cortical system directly intervenes in vigilance and arousal, a divergence of opinion persists regarding its intervention in the control of other cognitive processes necessary for consciousness. In the present manuscript, we provide a review of recent scientific findings on the thalamo-cortical system and its role in the control and regulation of the flow of neural information necessary for conscious cognitive processes. We suggest that the axis formed by the medial prefrontal cortex and different thalamic nuclei (reticular nucleus, intralaminar nucleus, and midline nucleus), represents a core component for consciousness. This axis regulates different cerebral structures which allow basic cognitive processes like attention, arousal and memory to emerge. In order to produce a synchronized coherent response, neural communication between cerebral structures must have exact timing (chronometry). Thus, a chronometric functional sub-network within the thalamo-cortical system keeps us in an optimal and continuous functional state, allowing high-order cognitive processes, essential to awareness and qualia, to take place.
丘脑-皮质系统被定义为与意识相关的神经网络。虽然人们似乎广泛认为丘脑-皮质系统直接干预警觉和觉醒,但对于其在意识所需的其他认知过程的控制中的干预仍存在分歧。在本文中,我们回顾了最近关于丘脑-皮质系统及其在控制和调节意识认知过程所需的神经信息流方面的科学发现。我们认为,由内侧前额叶皮层和不同丘脑核(网状核、板内核和中线核)形成的轴代表了意识的核心组成部分。该轴调节不同的大脑结构,使注意力、觉醒和记忆等基本认知过程得以出现。为了产生同步一致的反应,大脑结构之间的神经通讯必须具有精确的时间(计时)。因此,丘脑-皮质系统内的计时功能子网络使我们保持在最佳和连续的功能状态,使对意识和感知至关重要的高级认知过程得以发生。