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- W2128595101 abstract "Theta frequency field oscillation reflects synchronized synaptic potentials that entrain the discharge of neuronal populations within the approximately 100-200 ms range. The cellular-synaptic generation of theta activity in the hippocampus was investigated by intracellular recordings from the somata and dendrites of CA1 pyramidal cells in urethane-anesthetized rats. The recorded neurons were verified by intracellular injection of biocytin. Transition from non-theta to theta state was characterized by a large decrease in the input resistance of the neuron (39% in the soma), tonic somatic hyperpolarization and dendritic depolarization. The probability of pyramidal cell discharge, as measured in single cells and from a population of extracellularly recorded units, was highest at or slightly after the negative peak of the field theta recorded from the pyramidal layer. In contrast, cyclic depolarizations in dendrites corresponded to the positive phase of the pyramidal layer field theta (i.e. the hyperpolarizing phase of somatic theta). Current-induced depolarization of the dendrite triggered large amplitude slow spikes (putative Ca2+ spikes) which were phase-locked to the positive phase of field theta. In the absence of background theta, strong dendritic depolarization by current injection led to large amplitude, self-sustained oscillation in the theta frequency range. Depolarization of the neuron resulted in a voltage-dependent phase precession of the action potentials. The voltage-dependent phase-precession was replicated by a two-compartment conductance model. Using an active (bursting) dendritic compartment spike phase advancement of action potentials, relative to the somatic theta rhythm, occurred up to 360 degrees. These data indicate that distal dendritic depolarization of the pyramidal cell by the entorhinal input during theta overlaps in time with somatic hyperpolarization. As a result, most pyramidal cells are either silent or discharge with single spikes on the negative portion of local field theta (i.e., when the somatic region is least polarized). However, strong dendritic excitation may overcome perisomatic inhibition and the large depolarizing theta rhythm in the dendrites may induce spike bursts at an earlier phase of the extracellular theta cycle. The magnitude of dendritic depolarization is reflected by the timing of action potentials within the theta cycle. We hypothesize that the competition between the out-of-phase theta oscillation in the soma and dendrite is responsible for the advancement of spike discharges observed in the behaving animal." @default.
- W2128595101 created "2016-06-24" @default.
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- W2128595101 date "1998-12-07" @default.
- W2128595101 modified "2023-10-15" @default.
- W2128595101 title "Theta oscillations in somata and dendrites of hippocampal pyramidal cells in vivo: Activity-dependent phase-precession of action potentials" @default.
- W2128595101 cites W125804171 @default.
- W2128595101 cites W1540311052 @default.
- W2128595101 cites W1568625389 @default.
- W2128595101 cites W1590117132 @default.
- W2128595101 cites W162327871 @default.
- W2128595101 cites W1647336431 @default.
- W2128595101 cites W1653233231 @default.
- W2128595101 cites W1664754259 @default.
- W2128595101 cites W1840439775 @default.
- W2128595101 cites W1877248968 @default.
- W2128595101 cites W1966067699 @default.
- W2128595101 cites W1968687601 @default.
- W2128595101 cites W1971838313 @default.
- W2128595101 cites W1972014311 @default.
- W2128595101 cites W1972268296 @default.
- W2128595101 cites W1973372728 @default.
- W2128595101 cites W1974719406 @default.
- W2128595101 cites W1983945814 @default.
- W2128595101 cites W1987930561 @default.
- W2128595101 cites W1988694078 @default.
- W2128595101 cites W1989782443 @default.
- W2128595101 cites W1994839334 @default.
- W2128595101 cites W1998925446 @default.
- W2128595101 cites W1999127002 @default.
- W2128595101 cites W1999921358 @default.
- W2128595101 cites W2002272109 @default.
- W2128595101 cites W2007031766 @default.
- W2128595101 cites W2010505724 @default.
- W2128595101 cites W2010928535 @default.
- W2128595101 cites W2015677561 @default.
- W2128595101 cites W2016776195 @default.
- W2128595101 cites W2018964056 @default.
- W2128595101 cites W2021959734 @default.
- W2128595101 cites W2022864922 @default.
- W2128595101 cites W2024422476 @default.
- W2128595101 cites W2027066860 @default.
- W2128595101 cites W2028966854 @default.
- W2128595101 cites W2045683730 @default.
- W2128595101 cites W2047750300 @default.
- W2128595101 cites W2049100562 @default.
- W2128595101 cites W2055568369 @default.
- W2128595101 cites W2057629466 @default.
- W2128595101 cites W2058491602 @default.
- W2128595101 cites W2060900501 @default.
- W2128595101 cites W2063542323 @default.
- W2128595101 cites W2073417426 @default.
- W2128595101 cites W2079671310 @default.
- W2128595101 cites W2079948225 @default.
- W2128595101 cites W2083050232 @default.
- W2128595101 cites W2089124583 @default.
- W2128595101 cites W2089316513 @default.
- W2128595101 cites W2090740029 @default.
- W2128595101 cites W2095260984 @default.
- W2128595101 cites W2102172922 @default.
- W2128595101 cites W2111736228 @default.
- W2128595101 cites W2113430985 @default.
- W2128595101 cites W2119565218 @default.
- W2128595101 cites W2123880158 @default.
- W2128595101 cites W2124793944 @default.
- W2128595101 cites W2133406691 @default.
- W2128595101 cites W2136157364 @default.
- W2128595101 cites W2137753887 @default.
- W2128595101 cites W2147187004 @default.
- W2128595101 cites W2153273004 @default.
- W2128595101 cites W2165892338 @default.
- W2128595101 cites W2166686707 @default.
- W2128595101 cites W2172513721 @default.
- W2128595101 cites W2396656457 @default.
- W2128595101 cites W2409015354 @default.
- W2128595101 cites W2411552548 @default.
- W2128595101 cites W2414203768 @default.
- W2128595101 cites W2432110857 @default.
- W2128595101 cites W3002792705 @default.
- W2128595101 cites W301566073 @default.
- W2128595101 cites W4234546939 @default.
- W2128595101 cites W4241102178 @default.
- W2128595101 doi "https://doi.org/10.1002/(sici)1098-1063(1998)8:3<244::aid-hipo7>3.0.co;2-j" @default.
- W2128595101 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/9662139" @default.
- W2128595101 hasPublicationYear "1998" @default.
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