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1.
Application of 1% methol, which, along with cold, activates specific thermosensitive ionic channels, changes the number of functioning cold receptors on the skin of the forearm similarly to the cold exposure test; however, it does not affect the number of heat receptors and does not significantly change the threshold of cold sensation. Group variants of responses to menthol that indicate individual differences in the sensitivity of skin receptors to the effects of methol and cold have been found. The results obtained give grounds to suggest that, from the variant of response to menthol (a decrease, increase, or absence of changes in the number of functioning cold receptors 5 min after menthol application), it is possible to predict specific features of response to cold.  相似文献   
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The effect of picrotoxin (at sub-convulsant doses, i.v.) on the background and invoked spike activity of cat dorsal horn internerons was investigated while thermal and mechanical influences were at work on the skin receptor areas. It was found that information on skin temperature is modulated at the presynaptic level and largely mediated by competitive interaction between large and small diameter fibers.Institute of Physiology, Academy of Sciences of the Kazakh SSR, Alma Ata. Translated from Neirofiziologiya, Vol. 18, No. 6, pp. 773–779, November–December, 1986.  相似文献   
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Response of low- and high-threshold mechanosensitive C fiber sensory units (MSU) in n. saphenus to close-arterial injection of potassium ions in subnoxious and noxious concentrations (SC and NC) were investigated in anesthetized cats. Two groups of high-threshold units were found: 1) MSU reacting to K+ at both SC and NC, but responding very differently to each of these concentrations and 2) MSU responding to NC only. Findings would indicate that high-rather than lowthreshold MSU participate in the perception of noxious stimuli. The possibility of differentiation between subnoxious and noxious stimuli by a proportion of high-threshold MSU is considered. High-threshold MSU discharges accompanying excitation of these units by subnoxious and noxious chemical stimuli are quantified.National Cardiology Research Center, Academy of Medical Sciences of the USSR, Moscow. translated from Neirofiziologiya, Vol. 20, No. 2, pp. 147–154, March–April, 1988.  相似文献   
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Summary We have isolated restriction fragments from a shotgun collection of Drosophila DNA which function as autonomously replicating sequences (ARS) in Saccharomyces cerevisiae and hybridize with telomeric regions of the 2L, 2R, 4, and X chromosomes. In an independently obtained set of D. melanogaster clones five fragments hybridize in situ with telomeres and a number of internal sites. Two of them also contain ARSs. A Drosophila mobile P-element also possesses ARS activity in yeast.  相似文献   
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The 1st feature revealed typical for diapause phenomena inTrichogramma species is the interaction of environmental conditions in both parental and filial generations in induction of diapause in the latter. Lowered temperature during larval development is the ultimate factor evoking diapause in pronymphs but the norm of this thermal reaction is not fixed but varies depending on photoperiod and temperature in the previous generation due to maternal influence. Short day and in some cases high temperature in parental generation enhance tendency to diapause in the progeny. Unlike maternal influence the development to filial generation itself is not (or almost is not) governed by its own photoperiodic reaction. The 2nd typical feature revealed is the occurrence of endogenous process running in the sequence of generations and causing changes in the diapause tendency and underlying reaction norms even under constant rearing conditions.   相似文献   
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Responses of neurons of the lateral (LPO) and medial (MPO) subdivisions of the preoptic region (RPO) and of the supraoptic nucleus (SO) of the hypothalamus at infusions of up to 400 µl of a hypotonic (0.2%) or a hypertonic (0.3%) NaCl solution or an isotonic (5.5%) glucose solution into the homolateral internal carotid artery were studied in acute experiments on ketamine-anesthetized cats. Changes in the firing frequency were exhibited by 69% of the examinedRPO andSO neurons, the response being of four different types: a monophasic increase (1st-type) or a monophasic decrease (2nd-type) in the activity; biphasic responses where an initial frequency rise was followed by inhibition (3rd-type) and vice versa (4th-type). Of all the neuronal responses to all stimulations, 50% (121/245) were of the 1st type; 11% (26/245), of the 2nd type; 5% (14/245), of the 3rd type; and 3% (7/245), of the 4th type. No neurons with 1st-type responses to infusion of the hypotonic NaCl solution were found in the medial sections of theMPO, and of the hypertonic solution, in the lateral sections of theLPO. Neurons with 2nd-type responses to infusion of hypo- and hypertonic NaCl solutions were almost solely detected in theSO, whereas units with such responses to glucose infusions were observed only in theRPO, being fully absent in theSO, where this stimulation gave rise only to 1st-type responses. Neurons with 3rd- and 4th-type responses to hypo- and hyperosmotic stimulations were detected predominantly in theMPO andSO, and to glucose stimulation, in theMPO andLPO.Neirofiziologiya/Neurophysiology, Vol. 25, No. 4, pp. 281–291, July–August, 1993.  相似文献   
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Two types of slow excitatory postsynaptic potentials (EPSPs) with different properties were found in neurons of the rabbit superior cervical sympathetic ganglion. In our group of neurons slow EPSPs increased during artificial hyperpolarization and decreased during depolarization of the membrane. The input resistance of the cells fell or remained unchanged during the development of slow EPSPs. In the second group of cells slow EPSPs increased during depolarization and decreased during hyperpolarization. The reversal potential of these responses, determined by extrapolation, was –78.9±3.6 mV. Depolarization responses to activation of muscarinic cholinergic receptors by acetylcholine or carbachol developed in 53% of neurons with an increase in input resistance and had a reversal potential of –83.2±6.7 mV. It is suggested that in cells of the first group the ionic mechanism of the slow EPSPs is similar to that of the fast EPSPs, whereas in cells of the second group its main component is a decrease in the potassium conductance of the membrane.A. A. Bogomolets Institute of Physiology, Academy of Sciences of the Ukrainian SSR, Kiev. Translated from Neirofiziologiya, Vol. 13, No. 4, pp. 371–379, July–August, 1981.  相似文献   
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