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- W2373222932 abstract "With a bridge pre-amplifier, the transmembrane of the inferior mes-enteric ganglion (IMG) cell of the rabbit was investigated by intracellular record-ing techinque. A short train of stimulation of the pregangionic nerves elicited avolley of fast excitatory postsynaptic potentials or orthodromic discharges whichwere followed, in the majority of cells, by a slow depolarization lasting for about 2min. This slow was resistant to d-tubocurarine (d-TC) and atropine,and could be reversibly blocked by a low calcium (0.25 mM) and high magnesium12 mM) Krebs solution; consequently the was termed non-cholinergicexcitatory postsynaptic and could be categorized as a kind of late slow ex-citatory postsynaptic (ls-EPSP). The ls-EPSP in the majority of cellssampled was accompanied by an inrease in membrane resistance and was attenu-ated upon conditioning hyperpolarization, which suggested that an inactivationof potassium conductance was probably involved in genesis of the slow potential.Superfusion of substance P caused no appreciable change in the ls-EPSP. In addi-tion, some of the cells in the rabbit IMG generated a hyperpolarization potentialafter a train stimulation of the preganglionic fibers. The hyperpolarization lastedabout 1 min and was enhanced by conditioning hyperpolarization. It was alsod-TC and atropine resistant, but sensitive to low calcium/high magnesium; there-fore, it was termed very slow inhibitory postsynaptic potential (vs-IPSP) to bedistinguished from the s-IPSP, a conventional term for the slow cholinergic synapticresponse in some autonomic neurones. The transmitters responsible for these twotypes of non-cholinergic synaptic potentials remain to be identified." @default.
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- W2373222932 date "1986-12-01" @default.
- W2373222932 modified "2023-10-18" @default.
- W2373222932 title "[Two types of non-cholinergic slow postsynaptic potentials in inferior mesenteric ganglion neurons in the rabbit]." @default.
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