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1 ribbon-type synaptic terminal, the goldfish retinal bipolar cell.
2 on channel expressed by both melanocytes and retinal bipolar cells.
3 lective potentiation on GABA(A) receptors of retinal bipolar cells.
4 ge signals transmitted by ribbon synapses of retinal bipolar cells.
5 common role in regulating gene expression in retinal bipolar cells.
6 ded pathways, are thought to be initiated in retinal bipolar cells.
7 ecifically targeted to the dendritic tips of retinal bipolar cells.
8 nits, as well as on the GABA(C) receptors of retinal bipolar cells.
9 gnal transmission between photoreceptors and retinal bipolar cells.
10 -type calcium channel currents in identified retinal bipolar cells.
11 receptors on the axon and dendrites of mouse retinal bipolar cells.
13 pool and the releasable vesicle pool of the retinal bipolar cell are situated at the ribbon-style ac
18 e eyes, and the appearance of the IgG in the retinal bipolar cells at the conclusion of the experimen
20 gs from the large axon terminals of goldfish retinal bipolar cells (BCs) have revealed detailed infor
22 mistry (IHC) showed Kir2.1 immunostaining of retinal bipolar cells (BCs) matching the labeling patter
25 active in other Otx2-positive cells such as retinal bipolar cells (BPs), retinal pigmented epitheliu
26 t the dendrites and axon terminals of ferret retinal bipolar cells by recording currents evoked by fo
27 ubunit, and a selection of Gbeta subunits in retinal bipolar cells, by using a transgenic mouse strai
33 evoked prolonged bouts of exocytosis from a retinal bipolar cell, fixed within seconds, and then stu
41 aptation of [Cl(-)](i) to voltage changes in retinal bipolar cells may add a previously unsuspected l
43 e molecular basis for electrical synapses in retinal bipolar cells, particularly ON cone bipolar cell
45 We monitored quantal glutamate release from retinal bipolar cell terminals (which receive GABA-ergic
46 ed vesicles labeled with styryl dye in mouse retinal bipolar cell terminals whose ribbons had been la
49 ent with the dysfunction at the level of the retinal bipolar cells that is presumed to underlie the M
55 ibbon-type presynaptic terminals of goldfish retinal bipolar cells were coaxed to release a false tra
58 ivo calcium imaging and electrophysiology of retinal bipolar cells, which have been assumed to be pur
59 GABA-elicited membrane current responses of retinal bipolar cells, which have both GABA(A) and GABA(
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