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1 neurons that had formed recurrent synapses (autapses).
2 R) and release probability (Pr), compared to autapses.
3 ts modulation by BDNF in mouse glutamatergic autapses.
4 o acid-activated currents in neurons lacking autapses.
5 d 1 of 2 close appositions were confirmed as autapses.
6 ransmission at inhibitory but not excitatory autapses.
7 entials are produced by GABAergic excitatory autapses.
8 Some neurons have long collaterals that form autapses.
9 itic arborization(2,3), prevent formation of autapses(4) and allow free interaction among non-self ne
10 was evoked in the axon of a POMC neuron with autapses, a short-latency synaptic current was recorded
11 ll class determines functional properties of autapses and cannabinoid-mediated modulation of synaptic
12 compared synaptic transmission in excitatory autapses and in two-neuron micronetworks consisting of t
14 sion of transmission in cultured hippocampal autapses; and we perform whole-cell recording, FM imagin
20 PV cells are autoconnected through powerful autapses, but the contribution of this form of fast disi
21 1 and -2, largely carried out in hippocampal autapses, did not detect changes in the RRP size or in s
22 and morphological experiments in cholinergic autapses established by superior cervical ganglion neuro
23 ptic transmission at more mature synapses or autapses formed in this culture system and are reminisce
26 ough morphological evidence for existence of autapses has been reported in several brain areas, it is
28 mossy fiber long-term potentiation (LTP) at autapses in single-cell cultures of guinea pig hippocamp
29 the optically estimated distribution of p at autapses in single-neuron microislands predicts, with no
31 oreover, dynamic clamp experiments that show autapse-induced firing in entorhinal cortical interneuro
32 ere much more likely to display both PIR and autapse-induced firing than GAD2(+) cells, supporting th
34 e uPN in DL5 contain a substantial amount of autapses interconnecting distant regions of the dendriti
37 ons, realistic dynamic-clamp hyperpolarizing autapses restored precision of spike timing, even in the
45 ampal cells in culture form onto themselves (autapses) to determine if some synapses lack functional
46 g in rat sympathetic neurons and hippocampal autapses using pituitary adenylate cyclase activating pe
48 diated self-innervation in both species, but autapses were rare in nonfast-spiking GABAergic interneu