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下橄榄核神经元的非时钟行为:清醒行为猴中浦肯野细胞复合峰放电的峰峰间期是随机的。

Nonclock behavior of inferior olive neurons: interspike interval of Purkinje cell complex spike discharge in the awake behaving monkey is random.

作者信息

Keating J G, Thach W T

机构信息

Department of Anatomy and Neurobiology, Washington University School of Medicine, St. Louis, Missouri 63110, USA.

出版信息

J Neurophysiol. 1995 Apr;73(4):1329-40. doi: 10.1152/jn.1995.73.4.1329.

Abstract
  1. Complex spikes of cerebellar Purkinje cells recorded from awake, behaving monkeys were studied to determine the extent to which their discharge could be quantified as periodic. Three Rhesus monkeys were trained to perform up to five different tasks involving rotation of the wrist in relation to a visual cue. Complex spike activity was recorded during task performance and intertrial time. Interspike intervals were determined from the discharge of each of 89 Purkinje cells located throughout lobules IV, V, and VI. Autocorrelation and Fourier transform of the autocorrelation function were performed on the data. In addition, the activity from one cell was transformed so that the discharge occurred on the beat of a 10-Hz clock, and in a further transformation, on the beat of a noisy 10-Hz clock. These transformed data were then analyzed as described above. 2. Fourier transform of the autocorrelogram function of the data that had been transformed to a 10-Hz clock, and that of the noisy 10-Hz clock, both showed a prominent peak at 10 Hz. However, the autocorrelograms and the Fourier transforms of the autocorrelogram functions failed to reveal a prominent periodicity for the actual discharge of any of cells, at any frequency up to 100 Hz: the discharge appeared random with respect to the interspike interval. The discharge was not random with respect to behavior. Complex spike activity was commonly time locked to the start of wrist movement. We examined this discharge to see whether oscillatory discharge could be seen after alignment of the data on the start of wrist movement, or after alignment of the data on the complex spike occurring peri-start of wrist movement. No oscillation was seen for either alignment. 3. The inferior olive, which sends its climbing fibers to the cerebellum, has been implicated in such different activities as 1) pathological tremor of the soft palate, 2) physiological tremor, 3) the normal initiation of all bodily movement, and 4) motor learning. Previous work in pharmacologically or surgically treated animals has shown that, under some conditions, the discharge of these neurons is periodic and synchronous. This firing pattern has been interpreted to support a role in the first two activities. But measurements reported here in the awake monkey show just the opposite: the discharge is aperiodic to the extent of being random. As such, the inferior olive cannot be a "motor clock" in the general role that has been proposed.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 对从清醒、行为中的猴子记录到的小脑浦肯野细胞的复合锋电位进行了研究,以确定其放电可被量化为周期性的程度。三只恒河猴经过训练,可执行多达五项涉及腕部相对于视觉线索旋转的不同任务。在任务执行期间和试验间隔时间记录复合锋电位活动。从位于小叶IV、V和VI的89个浦肯野细胞中的每一个细胞的放电确定峰峰间隔。对数据进行自相关和自相关函数的傅里叶变换。此外,对一个细胞的活动进行变换,使放电在10赫兹时钟的节拍上发生,在进一步的变换中,在有噪声的10赫兹时钟的节拍上发生。然后对这些变换后的数据进行如上所述的分析。2. 对已变换为10赫兹时钟的数据以及有噪声的10赫兹时钟的数据的自相关图函数进行傅里叶变换,两者在10赫兹处均显示出一个突出的峰值。然而,自相关图以及自相关图函数的傅里叶变换未能揭示任何细胞在高达100赫兹的任何频率下实际放电的突出周期性:放电相对于峰峰间隔似乎是随机的。放电相对于行为并非随机。复合锋电位活动通常与腕部运动的开始时间锁定。我们检查了这种放电,以查看在将数据与腕部运动开始对齐后,或者在将数据与腕部运动开始附近出现的复合锋电位对齐后,是否能看到振荡放电。两种对齐方式均未观察到振荡。3. 下橄榄核将其攀缘纤维发送至小脑,它与以下不同活动有关:1)软腭的病理性震颤,2)生理性震颤,3)所有身体运动的正常启动,以及4)运动学习。先前在药物或手术治疗动物中的研究表明,在某些情况下,这些神经元的放电是周期性且同步的。这种放电模式被解释为支持在前两项活动中的作用。但此处报道的在清醒猴子中的测量结果却恰恰相反:放电在很大程度上是随机的,是非周期性的。因此,下橄榄核不可能是所提出的一般意义上的“运动时钟”。(摘要截断于400字)

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