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排序方式: 共有274条查询结果,搜索用时 15 毫秒
1.
E. V. Borisova D. Yu. Rusakov S. K. Sudakov 《Bulletin of experimental biology and medicine》1992,114(3):1328-1332
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A. A. Shandra K. V. Sudakov G. N. Kryzhanovskii 《Bulletin of experimental biology and medicine》1991,111(1):64-69
Department of Normal Physiology, N. I. Pirogov Odessa Medical Institute. Department of Normal Physiology, I. M. Sechenov First Moscow Medical Institute. Laboratory of General Pathology of the Nervous System, Research Institute of General Pathology and Pathophysiology, Academy of Medical Sciences of the USSR, Moscow. Translated from Byulleten' Éksperimental'noi Biologii i Meditsiny, Vol. 111, No. 1, pp. 49–52, January, 1991. 相似文献
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S. S. Pertsov E. V. Koplik W. Krause N. Michael P. Oehme K. V. Sudakov 《Bulletin of experimental biology and medicine》1997,123(6):562-564
Acute emotional stress caused by immobilization and cutaneous electrical stimulation increases the relative weight of adrenals
in Wistar rats and decreases it in August rats. The epinephrine and norepinephrine contents of the adrenals in control and
stressed August rats are higher than in Wistar rats. Acute stress lowers the levels of these biogenic amines in the adrenals
of both strains, particularly in Wistar rats. The left adrenal gland of control and stressed August rats, but not of Wistar
rats, has a higher content of biogenic amines than the right, and both adrenals of stressed August rats contained higher dopamine
concentrations than those of stressed Wistar rats. Presumably, epinephrine and norepinephrine are resynthesized in the adrenals
of stressed August rats at higher rates than they are released from these glands, while the adrenals of Wistar rats respond
to stress by rapidly releasing these catecholamines and resynthesizing them at a slow rate.
Translated fromByulleten' Eksperimental'noi Biologii i Meditsiny, Vol. 123, No. 6, pp. 645–648, June, 1997 相似文献
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Alexander Nikolaevih Kravtsov Yutaka Oomura Konstantin Viktorovih Sudakov 《Pathophysiology》2002,8(4):255-258
We studied the sensitivity of sensorimotor cortex neurons in rabbits to microiontophoretic administration of antibodies against acid fibroblast growth factor (anti-aFGF). Spontaneous activity and reaction of neurons to electrical stimulation of ‘feeding centers’ in the lateral hypothalamic area (LHA) were recorded. We analyzed impulse activity of 52 neurons in the sensorimotor cortex. It was shown that 14 neurons (25%) reacted to microiontophoresis of anti-aFGF (excitation and inhibition in 9 and 5 neurons, respectively). Microiontophoretic administration of anti-aFGF did not change the reaction (excitation or inhibition) of 27 neurons to electrical stimulation of LHA. Initially, 14 neurons did not response to LHA stimulation. After microiontophoretic administration of anti-aFGF, 6 of 14 neurons displayed pronounced reactions to electrical stimulation of LHA (excitation and inhibition in 2 and 4 neurons, respectively). These data suggest that aFGF plays an important physiological role in feeding motivations. 相似文献
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Umriukhin AE Diukareva EV Vetrile LA Trekova NA Kravtsov AN Evseev VA Sudakov KV 《Bulletin of experimental biology and medicine》2007,143(4):399-402
The dynamics of dopamine and norepinephrine contents in the dorsal hippocampus of rats immunized with a dopamine-BSA conjugate
was studied during immobilization stress by mean of the microdialysis technique. Immunization with dopamine conjugate was
accompanied by intensive production of antibodies against dopamine in rat blood and a tendency toward an increase in dopamine
content in the dorsal hippocampus even in the basal state (before stress exposure). Under stress conditions, dopamine content
in the dorsal hippocampus of immunized rats significantly increased. In control rats, stress was accompanied by a significant
increase in norepinephrine content in the dorsal hippocampus. The observed peculiarities in dopamine and norepinephrine contents
in the dorsal hippocampus of rats immunized with a dopamine conjugate were typical of active animals more resistant to emotional
stress.
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Translated from Byulleten’ Eksperimental’noi Biologii i Meditsiny, Vol. 143, No. 4, pp. 374–377, April, 2007 相似文献
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