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海马体与小脑之间的功能关系:猫的电生理研究

Functional relationships between the hippocampus and the cerebellum: an electrophysiological study of the cat.

作者信息

Newman P P, Reza H

出版信息

J Physiol. 1979 Feb;287:405-26. doi: 10.1113/jphysiol.1979.sp012667.

Abstract
  1. Functional interrelationships between the hippocampus and the cerebellum have been investigated in the anaesthetized cat. Plots of the stimulating and recording sites as well as the latency range of the responses indicated the extent of ascending and descending lines of operation between these two structures. 2. Stimulation of the fastigial nucleus evoked the discharge of single hippocampal units on both sides of the brain. Early responses had a mean latency of 12 msec and late responses had a mean latency of 21 msec. Increasing the intensity of the stimulus had little effect on the patterns of discharge. 3. There was no topographical organization within the hippocampus. On the other hand, the activity evoked by a cutaneous stimulus was shown to be greatly depressed by a preceding cerebellar stimulus, particularly at intervals 30--40 msec between the two stimuli. 4. Cerebellar responses evoked by stimulating the hippocampus were found mainly in lobule VI of the posterior lobe. Early and late responses were frequently recorded in the same trace, ipsilateral stimulation yielding the shortest latencies. Increasing the intensity of the stimulus increased the likelihood of there being a response and increased the number of spikes in each discharge. Hippocampal stimulation also had a profound influence on resting cerebellar discharges. 5. Symmetrical points in the two hippocampi were chosen for conditioning and testing sequences. The conditioning stimulus had a long-lasting inhibitory effect on the test response followed by a slow recovery. 6. The location and extent of hippocampal influences on the cerebellum were determined by plotting the presence or absence of a response at each stimulated site. The results indicated the existence of bilateral descending projections containing fast and slow components in conformity with the known conduction properties of mossy fibre and climbing fibre inputs. 7. The physiological significance of interrelationship between the hippocampus and the cerebellum is discussed. It seems that there are many similarities as well as fundamental differences in the cerebellar control of movement under normal circumstances and in conditions of stress.
摘要
  1. 已在麻醉猫身上研究了海马体与小脑之间的功能相互关系。刺激位点和记录位点的图表以及反应的潜伏期范围表明了这两个结构之间上行和下行操作线路的范围。2. 刺激顶核可诱发双侧大脑海马单个神经元放电。早期反应的平均潜伏期为12毫秒,晚期反应的平均潜伏期为21毫秒。增加刺激强度对放电模式影响不大。3. 海马体内不存在拓扑组织。另一方面,皮肤刺激诱发的活动被证明会受到先前小脑刺激的显著抑制,尤其是当两个刺激之间的间隔为30 - 40毫秒时。4. 刺激海马体诱发的小脑反应主要出现在后叶的小叶VI。早期和晚期反应经常在同一记录中出现,同侧刺激产生的潜伏期最短。增加刺激强度会增加产生反应的可能性,并增加每次放电中的尖峰数量。海马体刺激对小脑的静息放电也有深远影响。5. 在两个海马体中选择对称点进行条件刺激和测试序列。条件刺激对测试反应有持久的抑制作用,随后是缓慢恢复。6. 通过绘制每个刺激位点有无反应来确定海马体对小脑影响的位置和范围。结果表明存在双侧下行投射,包含快速和慢速成分,这与苔藓纤维和攀缘纤维输入的已知传导特性一致。7. 讨论了海马体与小脑之间相互关系的生理意义。在正常情况下和应激条件下,小脑对运动的控制似乎既有许多相似之处,也有根本差异。

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本文引用的文献

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The subcortex and hypothalamic after-discharge in the cat.猫的皮质下及下丘脑后放电
Electroencephalogr Clin Neurophysiol. 1960 May;12:345-58. doi: 10.1016/0013-4694(60)90009-2.
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Limbic nuclei of thalamus and connections of limbic cortex.丘脑的边缘核与边缘皮质的联系。
Arch Neurol. 1960 Dec;3:620-41. doi: 10.1001/archneur.1960.00450060008002.
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Cerebellar projections to limbic system.小脑向边缘系统的投射。
J Neurophysiol. 1959 Jul;22(4):451-7. doi: 10.1152/jn.1959.22.4.451.
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Electrophysiological studies of hippocampal connections and excitability.海马体连接与兴奋性的电生理研究。
Electroencephalogr Clin Neurophysiol. 1956 May;8(2):245-63. doi: 10.1016/0013-4694(56)90117-1.

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