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Evoked response (field potentials) were recorded in all cerebellar nuclei when stimulating the locus ceruleus (LC). Response occurring in the dentate and fastigial nuclei were of considerably greater amplitude and were repeated at a higher rate than in the interstitial nucleus. Blockade of beta-adrenoreceptors led to clear-cut depression of response in the dentate and fastigial nuclei and increased response in the interstitial nucleus. Neuronal response to LC stimulation in the nuclei mainly took the form of inhibition of spontaneous discharges. A less pronounced response was observed in the interstitial nucleus. The findings obtained would indicate the presence of noradrenergic afferents reaching the cerebellar nuclei, where they are unevenly distributed.Kh. Anovyan Pedagogical Institute, Armenia SSR, Erevan. L. A. Orbeli Institute of Physiology, Academy of Sciences of the Armenian SSR, Erevan. Translated from Neirofiziologiya, Vol. 1, pp. 39–44, January–February, 1989.  相似文献   
2.
Using several techniques of statistical analysis, we studied in detail the extracellularly recorded background impulse activity (BA) of neuronal elements of the rat locus coeruleus (LC). Impulse trains generated by most LC neurons were stationary and demonstrated different levels of regularity; a nonstationary type of BA was observed in 17% of the neurons under study. Statistical parameters of the BA generated by LC neurons showed a wide variability. Distributions of the BA interspike intervals (ISI) of most LC neurons were characterized by more or less expressed bimodality or polymodality. Serial correlation analysis of the ISI durations both in stationary and nonstationary spike trains allowed us to differentiate five main types of the dynamics of ISI successions in the BA of LC neurons.  相似文献   
3.
Simultaneous or separate coagulation of thelocus coeruleus (LC) and the pontine raphe nucleus (PRN) results in a significant increase of irregular-type background activity in the cerebellar fastigial nucleus neurons. There are also considerable changes in the dynamics of impulse sequences, in particular, the number of neurons with random interpulse intervals markedly increases. Destruction of theLC and/or PRN is followed by a marked drop in the mean frequency of discharges in the neurons of the fastigial nucleus.Neirofiziologiya/Neurophysiology, Vol. 26, No. 6, pp. 437–442, November–December, 1994.  相似文献   
4.
We studied in rats changes in the impulse background activity (BA) of locus coeruleus (LC) neurons after short- and long-term immobilization stress; distributions of LC neurons by the level of regularity of their BA, dynamics of spike trains, and pattern of histograms of interspike intervals (ISI) were taken into account. We also calculated the means of the main BA statistical indices. Both short- and long-lasting immobilizations resulted in drops in the mean frequency of background discharges of LC neurons to about half of the initial value. Two-hour-long immobilization evoked statistically significant shifts in the distribution of LC neurons by the level of regularity of their BA, while after longer (15 h) immobilization this distribution nearly returned to the initial pattern. Short-lasting immobilization exerted no significant effect on the dynamic characteristics of BA; statistically significant changes in this respect developed only after longer stress. After 15-h-long immobilization, we also observed a noticeable increase in the number of neurons with polymodal ISI distributions. Therefore, stress results in significant modifications of the temporal parameters of the BA of LC neurons; characteristics of the BA of these neurons should be considered neuronal correlates of the stress state.  相似文献   
5.
An electrophysiological proof has been obtained for the morphological data on the existence of afferent inputs from the medullary nucl. praepositus hypoglossi (NPH) to the brainstem locus coeruleus. The crucial role of the NPH in the formation of background spike activity of neurons of the locus coeruleus under conditions of short-term immobilization stress has been demonstrated. Neirofiziologiya/Neurophysiology, Vol. 37, No. 2, pp. 151–156, March–April, 2005.  相似文献   
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