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巴比妥类药物诱发的自发纺锤波活动期间丘脑-皮质关系的本质

Nature of thalamo-cortical relations during spontaneous barbiturate spindle activity.

作者信息

Andersen P, Andersson S A, Lomo T

出版信息

J Physiol. 1967 Sep;192(2):283-307. doi: 10.1113/jphysiol.1967.sp008300.

Abstract
  1. The relation between thalamic and cortical spontaneous spindles was investigated in cats anaesthetized with barbiturates.2. Simultaneous recordings with multiple electrodes in the thalamus and cortex revealed a high correlation between thalamic and cortical spindle activity, both with regard to the occurrence of the spindles as well as to their individual waves, provided a critical location of the electrodes was secured. The results indicate a point-to-point relation between a group of thalamic cells and a small cortical area to which these cells project. In the spontaneous rhythm, the cortical columns are probably individually controlled by a thalamic rhythmic entity. This point-to-point relation was found in all the major sensory projection systems and in one thalamic ;association' nucleus and its corresponding ;association' cortex.3. Cortical barbiturate spindles appeared either as local spindles in a restricted cortical area or as compound spindles in several areas. Spindles recorded from electrodes separated by 2 mm or more were clearly different with regard to intraspindle wave frequency, duration, and the time of start and stop of the spindle. These differences increased with increasing distance between the electrodes, and were most pronounced when the corticograms of the two hemispheres were compared.4. Spontaneous spindle activity interfered with orthodromic transmission through n. ventralis posterolateralis (VPL) and medial geniculate nucleus (MG), judged by depression of the thalamic and cortical responses to peripheral nerve volleys or clicks. Such inhibition required the afferent volley to be delivered at a particular time of the spontaneous oscillations. Further, orthodromic volleys reset the rhythmic spindle waves in the appropriate thalamic and cortical areas.5. These findings lead to a new concept of the thalamic pace-maker function. During barbiturate anaesthesia, small assemblages of thalamic neurones seem to have the ability to generate independent rhythmic discharges, and thereby control the rhythm of the particular cortical column to which this thalamic group projects.6. During barbiturate anaesthesia, many facultative pace-makers seem to be present in the thalamus. The total number may be as large as 25,000-35,000. Usually, many of these rhythmic thalamic units beat in synchrony or near synchrony.
摘要
  1. 在使用巴比妥类药物麻醉的猫身上,研究了丘脑与皮层自发纺锤波之间的关系。

  2. 在丘脑和皮层中使用多个电极同时记录发现,丘脑和皮层纺锤波活动之间存在高度相关性,这在纺锤波的出现以及它们的单个波方面都成立,前提是电极的关键位置得到保证。结果表明,一组丘脑细胞与这些细胞投射到的一个小皮层区域之间存在点对点关系。在自发节律中,皮层柱可能由一个丘脑节律实体单独控制。这种点对点关系在所有主要的感觉投射系统以及一个丘脑“联合”核及其相应的“联合”皮层中都被发现。

  3. 皮层巴比妥类纺锤波要么表现为局限于一个受限皮层区域的局部纺锤波,要么表现为几个区域的复合纺锤波。从相距2毫米或更远的电极记录到的纺锤波,在纺锤波内波频率、持续时间以及纺锤波开始和停止的时间方面明显不同。这些差异随着电极之间距离的增加而增大,并且在比较两个半球的皮层电图时最为明显。

  4. 通过丘脑和皮层对周围神经冲动或点击的反应受到抑制来判断,自发纺锤波活动干扰了通过后外侧腹核(VPL)和内侧膝状体核(MG)的顺向传导。这种抑制要求传入冲动在自发振荡的特定时间传递。此外,顺向冲动在适当的丘脑和皮层区域重置节律性纺锤波。

  5. 这些发现引出了丘脑起搏器功能的一个新概念。在巴比妥类麻醉期间,一小群丘脑神经元似乎有能力产生独立的节律性放电,从而控制该丘脑组投射到的特定皮层柱的节律。

  6. 在巴比妥类麻醉期间,丘脑中似乎存在许多兼性起搏器。总数可能多达25000 - 35000个。通常,这些节律性丘脑单元中的许多以同步或接近同步的方式跳动。

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