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参与丘脑对自发巴比妥纺锤波控制的一些因素。

Some factors involved in the thalamic control of spontaneous barbiturate spindles.

作者信息

Andersen P, Andersson S A, Lomo T

出版信息

J Physiol. 1967 Sep;192(2):257-81. doi: 10.1113/jphysiol.1967.sp008299.

Abstract
  1. The origin of thalamic and cortical spontaneous spindles was studied in cats anaesthetized with sodium pentobarbital.2. Complete removal of all cortical grey matter left the thalamic rhythmic spindle activity unchanged.3. Removal of the entire thalamus or pronounced oedema in the thalamus abolished completely the spindle activity in the corresponding hemisphere.4. In a neuronally isolated cortical area, a fast, low voltage background activity appeared, interrupted by occasional irregular rapid potential changes (sharp waves) of high voltage. Regular spindle rhythms were seldom observed unless excited by a depolarizing drug. Spontaneous spindles did not invade the isolated cortex via a bridge of intact cortical tissue.5. With increasingly larger destruction of the thalamus in a rostro-caudal direction, the activity in the post-cruciate cortex did not change until the anterior third of the thalamus was encroached upon. A transverse section in front of the thalamus nearly eliminated the cortical spindles.6. Complete removal of the mid line and intralaminar nuclei left the spontaneous rhythmic activity of the lateral thalamic nuclei and of the frontal cortex principally unchanged.7. Removal of the laterally located thalamic nuclei, including the n. ventralis posterolateralis (VPL), abolished virtually all spontaneous spindle activity of the frontal cortex, including the post-cruciate area.8. Local cortical cooling reduced the amplitude but not the frequency of the cortical spindles.9. Cooling of the whole brain reduced both the amplitude and the frequency of the spindles. At low temperatures, all spindle activity in the cortex disappeared, and occasional sharp waves occurred, as with de-afferentation.10. It is concluded that the rhythm of the cortical spontaneous barbiturate spindles is generated exclusively by thalamic neurones. The electromotive force of the corticographic waves, however, has a cortical origin.
摘要
  1. 研究了戊巴比妥钠麻醉的猫丘脑和皮层自发纺锤波的起源。

  2. 完全切除所有皮层灰质后,丘脑的节律性纺锤波活动未变。

  3. 切除整个丘脑或丘脑出现明显水肿,会使相应半球的纺锤波活动完全消失。

  4. 在神经元隔离的皮层区域,出现了快速、低电压的背景活动,偶尔被不规则的高电压快速电位变化(尖波)打断。除非被去极化药物激发,很少观察到规则的纺锤波节律。自发纺锤波不会通过完整皮层组织桥侵入隔离的皮层。

  5. 沿前后方向对丘脑的破坏越来越大时,直到丘脑前三分之一受到侵犯,十字后皮层的活动才会改变。丘脑前方的横断几乎消除了皮层纺锤波。

  6. 完全切除中线核和板内核,外侧丘脑核和额叶皮层的自发节律活动基本不变。

  7. 切除外侧丘脑核,包括腹后外侧核(VPL),几乎消除了额叶皮层包括十字后区的所有自发纺锤波活动。

  8. 局部皮层冷却降低了皮层纺锤波的振幅,但频率未变。

  9. 全脑冷却降低了纺锤波的振幅和频率。在低温时,皮层的所有纺锤波活动消失,偶尔出现尖波,如同传入神经切断时一样。

  10. 得出结论:皮层自发巴比妥纺锤波的节律完全由丘脑神经元产生。然而,皮层电图波的电动势起源于皮层。

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本文引用的文献

1
Some properties of the cat's isolated cerebral cortex.猫离体大脑皮层的一些特性。
J Physiol. 1950 Apr 15;111(1-2):50-68. doi: 10.1113/jphysiol.1950.sp004463.
3
Cortical and subcortical components in the recruiting responses.
Electroencephalogr Clin Neurophysiol. 1951 May;3(2):189-96. doi: 10.1016/0013-4694(51)90010-7.
4
Electrical activity of isolated cortex in the unanesthetized cat with intact brain stem.
Acta Physiol Scand. 1955;33(2-3):151-68. doi: 10.1111/j.1748-1716.1955.tb01201.x.
6
THE ACTIVITY OF THE CATS NEURONALLY ISOLATED CEREBRAL CORTEX BETWEEN 25 DEGREES AND 40 DEGREES C.
Electroencephalogr Clin Neurophysiol. 1964 Nov;17:531-9. doi: 10.1016/0013-4694(64)90184-1.
8
Inhibitory phasing of neuronal discharge.神经元放电的抑制性相位
Nature. 1962 Nov 17;196:645-7. doi: 10.1038/196645a0.
9
Cerebral and cerebellar potentials.大脑和小脑电位。
Physiol Rev. 1958 Jul;38(3):357-88. doi: 10.1152/physrev.1958.38.3.357.
10
[Mechanism of bioelectric synergisms in the cerebral hemisphere].
Acta Physiol Pharmacol Neerl. 1957;6:487-96.

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