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481.
In a simulated motoneuron, we studied the effects of tonic coactivation of glutamatergic (NMDA-type) synapses covering the somato-dendritic membrane and of GABA-ergic synapses located on the axon hillock. As in the prototypes, NMDA activation caused oscillatory plateau potentials with bursts of action potentials (AP). Plateau depolarizations spreading from the soma inactivated Na+ channels and reduced the number of AP in the axon compared with that in the soma. As GABA activation increased, interplateau intervals also increased, while the plateau duration and number of AP per burst decreased. 相似文献
482.
L.L Koh T.K TanL.M Chou N.K.C Goh 《Journal of experimental marine biology and ecology》2002,273(2):121-130
Gorgonians possess a huge array of secondary metabolites for various functions, many of which are not known. One of these functions is antifungal. This study investigates if gorgonians from reefs in Singapore can defend themselves against the settlement and invasion of fungi. Crude extracts from 10 species of gorgonians from three families, Ellisellidae, Subergorgiidae and Plexauridae, were screened against nine species of deuteromycetous fungi previously isolated from gorgonians. Minimum Inhibitory Concentration (MIC) experiments were carried out in 96-microwell plates using extract concentrations ranging from 1.5 to 24.0 mg/ml. Extracts from Euplexaura cf. pinnata, Echinogorgia sp. C, Junceella cf. gemmacea, Subergorgia suberosa, Ctenocella cf. umbraculum and Junceella sp. A were found to possess inhibitory effects on fungi. MICs range from 1.5 to 18.0 mg/ml. Results showed that most of the antifungal activities were exhibited by Euplexaura cf. pinnata and Echinogorgia sp. C from the family Plexauridae. However, for most gorgonian species, the concentrations required to inhibit fungal growth are much higher than the natural concentrations of extracts found in gorgonian tissues. Only the extracts of Echinogorgia sp. C, C. cf. umbraculum and S. suberosa were found to inhibit fungal growth of a few fungal species at a concentration lower than that of its natural concentration. 相似文献
483.
An identified neuron of unknown function in the CNS of the leech, the anterior pagoda (AP) cell, receives multiple synaptic inputs from mechanosensory neurons that innervate the skin. Impulses in touch (T), pressure (P) and nociceptive (N) sensory cells on both sides of the ganglion produced electrical coupling potentials on both AP cells. Sensory cells with receptive fields contralateral to the cell body of the AP neuron always gave rise to larger synaptic potentials. In addition sensory cells supplying dorsal skin gave rise to larger synaptic potentials than those with lateral or ventral fields. It is suggested that integration by the AP cell can provide information about the position of mechanical stimuli impinging on the body wall of the animal. 相似文献