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1 4 dendrites that branched sparingly and were aspiny.
2                                              Aspiny (8%) and sparsely spiny multipolar (5%) CR+ neuro
3  and their dendritic processes were commonly aspiny and sometimes highly beaded.
4                               Qualitatively, aspiny and spiny neurons in both species appeared morpho
5 er than [Ca2+]i from this source on the main aspiny apical shaft.
6 iking cells anatomically fully recovered had aspiny, beaded dendrites.
7 ells were identified in the striatum: small, aspiny, bipolar cells with varicose dendrites and larger
8 ing morphological features of both spiny and aspiny cells, many of which contained GABA.
9                                          The aspiny cells, which were more prevalent, corresponded mo
10 at m2-positive neurons corresponded to large aspiny cholinergic interneurons and ultrastructurally, t
11                                        Large aspiny cholinergic interneurons provide the sole source
12 e cytoplasm of isolated medium-large somata, aspiny dendrites and axon terminals.
13 permeable to calcium and are concentrated on aspiny dendrites of interneurons, which lack obvious phy
14 maging that activation of single synapses on aspiny dendrites of neocortical fast spiking (FS) intern
15                                      Because aspiny dendrites throughout the CNS express CP-AMPA rece
16 onal perikarya are relatively large, possess aspiny dendrites, and are rich in the pallidal neuron/st
17 ll-sized spiny ITCcs, L-ITCcs possess thick, aspiny dendrites, have highly branched, long-range axona
18 s induced by diffusible second messengers in aspiny dendrites, we examined diffusion of Ca(2+) and sm
19 aft SER remained more abundant in spiny than aspiny dendritic regions, apparently supporting the adde
20 lly spiny, which contrasts with their adult, aspiny equivalents.
21                                LTP occurs in aspiny feed-forward interneurons and propagates to pyram
22 ng the dendrites and on the soma of normally aspiny hippocampal interneurons.
23 y, estrogen receptors have been localized to aspiny inhibitory hippocampal interneurons, indicating t
24      NGFI-B did not colocalize with striatal aspiny interneurons expressing choline acetyl transferas
25 een systematically investigated, these large aspiny interneurons may serve an important integrative f
26 tes characteristic of large and medium-sized aspiny interneurons, expressed SPR immunoreactivity.
27  SP and/or inhibitory neurotransmitters onto aspiny interneurons, some of which are cholinergic.
28 Kal7 are low in the dendrites of hippocampal aspiny interneurons.
29 istics of either spiny projection neurons or aspiny interneurons.
30 striatal neurons, the large and medium-sized aspiny interneurons.
31 ter transient global ischemia, whereas large aspiny (LA) neurons remain intact.
32 e categorized as medium spiny-like and large aspiny-like based on a combination of their activity aut
33               However, firing rates of large aspiny-like neurons were faster in both hemispheres of t
34 er of a second morphological type, the large aspiny neuron, did not differ following either adolescen
35        Qualitatively, the range of spiny and aspiny neurons across the three species was similar to t
36 : (1) NT and D2 receptors are colocalized in aspiny neurons and dendrites, (2) NT may produce a direc
37 elative resistance of large and medium-sized aspiny neurons and the patch compartments to degeneratio
38 s of the substantia nigra, cholinergic large aspiny neurons of the striatum, and GABAergic and cholin
39 in vivo, we found clusters of both spiny and aspiny neurons surrounding the electroporated neuron in
40                 Large cells corresponding to aspiny neurons were less frequently stained.
41 monly seen within the cytoplasm of spiny and aspiny neurons, many of which also expressed MOR.
42 -unidentifiable excitatory shaft synapses in aspiny neurons, such as parvalbumin-positive interneuron
43 membranes and nearby endosomal organelles in aspiny neurons.
44 re a heterogeneous group of medium spiny and aspiny neurons.
45  highly indented nuclei, a characteristic of aspiny neurons.
46 red throughout all nuclei of the BNC and had aspiny or spine-sparse dendrites.
47 et has distinctive traits, including largely aspiny projection neurons that directly innervate the th
48                                              Aspiny stellate neurons were the last to appear.
49 es, presumably arising from spiny as well as aspiny-type somata, which also contained CB1R immunoreac