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1  a unique subset identified by multiple long axonal processes.
2 xpression patterns and facilitate tracing of axonal processes.
3 A previously has been shown to localize into axonal processes.
4  of caged calcium induced rapid outgrowth of axonal processes.
5 ann cells adjacent to neuronal somata versus axonal processes.
6 ) of Syp:GFP puncta formed on newly extended axonal processes.
7 he importance of this mechanism for critical axonal processes.
8 soma and did not traffic to the dendrites or axonal processes.
9 aptic vesicles each induced sprouting of SAB axonal processes.
10 n, glia are attracted to and enwrap neuronal axonal processes.
11 ccurs without the guidance of radial glia or axonal processes.
12  specific types of neurons and, possibly, to axonal processes.
13 ally and functionally distinct dendritic and axonal processes.
14 l activity instruct fine-scale refinement of axonal processes.
15 from the cell body, giving the dendritic and axonal processes a means to autonomously respond to thei
16 e connections are formed by the extension of axonal processes along predetermined pathways.
17 ult CNS neurons is polarized primarily along axonal processes and is preferentially stored in termina
18 nding protein that may be translocated along axonal processes and might be involved in the dynamic or
19 es to characterize structural alterations in axonal processes and synaptic connections using electron
20  generates specific defects in dendritic and axonal processes and synaptic connectivity, with the ord
21 which are known to engulf the neurosecretory axonal processes and terminals.
22          The timing of both the outgrowth of axonal processes and the establishment and segregation o
23 on of MTs accompanied the withdrawal of some axonal processes and the growth and stabilization of oth
24    The mRNA encoding amphoterin localizes to axonal processes and we showed recently that its 3'-UTR
25 n mRNAs were detected within minor neurites, axonal processes, and growth cones in the form of spatia
26 ght of their compartmentalization, length of axonal processes, and high-energy requirements (reviewed
27 gies, laminar distributions of dendritic and axonal processes, and molecular phenotype.
28 unction and/or maintenance of the peripheral axonal process appear to be affected.
29  rely on microtubules to shuttle cargo along axonal processes are also damaged by tubulin-binding dru
30 ronment to enclose migrating neuroblasts and axonal processes as they migrate through a non-neural te
31     In neurons, however, LYAAT1 localizes to axonal processes as well as lysosomes.
32 structural over-elaboration of dendritic and axonal processes, as well as functional alterations in s
33 rated that translation of mRNAs may occur in axonal processes at sites that are long distances away f
34 raction reduces mitochondrial density within axonal processes by impairing anterograde movement of mi
35 and a relatively large amount (up to 40%) of axonal processes contacting the neuronal cell body.
36 ion and hypertrophy of GABAergic basket cell axonal processes, could be compensatory responses to res
37 s of extracellular factors that regulate key axonal processes during development.
38 the frontal cortex indicated that individual axonal processes exhibited both CB1 receptor and DbetaH
39               The entire cell, including the axonal process, exhibited opsin-like and VIP-like immuno
40 is and degradation, especially within distal axonal processes far removed from the soma.
41 ther,Lardisrupts clock output by eliminating axonal processes from clock neurons that release pigment
42           Layer I of the neocortex comprises axonal processes from widespread regions of the brain an
43 n of the spindle-shaped cell bodies, slender axonal processes grow along the opposite direction towar
44 er and SCZ, and the strongest enrichment for axonal processes in all hCS stages.
45                       La is transported into axonal processes in both culture and peripheral nerve.
46 me in that on-off cells maintained dendritic/axonal processes in both sublamina a and b of the IPL, w
47 as identified in cell bodies, dendrites, and axonal processes in the intermediate, dorsal lateral, an
48 nd mGluR5 as observed in fibers and putative axonal processes in the interstitial, intermediate, and
49 a-galactosidase-immunoreactive (beta-gal-ir) axonal processes in the OB after short (1 week), interme
50 rastructural analyses revealed inclusions in axonal processes in the spinal cord, sciatic nerve and b
51 alamic nuclei and by progressive increase of axonal processes in the terminal zones.
52  Additionally, tau pathology was detected in axonal processes in the thalamus, hypothalamus, amygdala
53 is, we hypothesized that the outgrowth of MB axonal processes is promoted by 20E.
54 t are challenged by the lack of proximity to axonal processes, leading to poor resolution.
55 The spreading of action potentials along the axonal process of a neuron is based on three physical pa
56                      Here we show that these axonal processes of adult sensory neurons cultured after
57       Mel1a receptors localized to the large axonal processes of horizontal cells, while Mel1b recept
58 pe 3a OFF bipolar cells and in dendrites and axonal processes of horizontal cells.
59 s localized to the cell body, dendrites, and axonal processes of myenteric neurons.
60                                       In the axonal processes of neurons, they are colocalized in the
61 ne and neurotoxins into distal dendritic and axonal processes of nigrostriatal dopaminergic neurons.
62 ng experiments showed that the dendritic and axonal processes of nitrergic interneurons already appos
63 calized on the cell somata and dendritic and axonal processes of striatal cholinergic interneurons in
64 tric of all metazoan cells by extending thin axonal processes over enormous distances.
65                               Neurons extend axonal processes over long distances, necessitating effi
66 es of 19 min, and only 17% of newly extended axonal processes persisted for periods exceeding 3 h.
67 teroids, and the presence of UCP2 protein in axonal processes predicted increased local brain mitocho
68 e continuous growth of non-compartmentalized axonal processes provides a vesicle reservoir to nascent
69 alamic (L6 CT) neurons include examples with axonal processes ramifying within layer 5, and the relat
70 ographically organized columns of reciprocal axonal processes running perpendicular to the layers, an
71 Neurofibromas are complex tumors composed of axonal processes, Schwann cells, fibroblasts, perineuria
72  retinas are associated with horizontal cell axonal processes that aberrantly intrude into the outer
73                        Sprouting cholinergic axonal processes that grew into grafts of NGF-producing
74 rite degeneration, first a rapid swelling of axonal processes that manifests itself in relative imped
75 naptic sites and the competing axon extended axonal processes to occupy those sites.
76  may alter the co-transport of Nrxn1alpha at axonal processes to presynaptic terminals.
77                        They also contributed axonal processes to the longitudinal catecholamine bundl
78 ce imaging (MRI), sensitive to dendritic and axonal processes, to investigate neuroplasticity in resp
79                                              Axonal processes travelled ventrally and caudally.
80                Surprisingly outgrowth of one axonal process was almost invariably accompanied by simu
81                             Labeled varicose axonal processes were distributed most densely in the ag
82                                              Axonal processes were restricted largely to either the d
83 During embryogenesis, each neuron extends an axonal process, which can navigate a considerable distan
84 s appears normal, they develop dendritic and axonal processes with increased length and decreased bra
85 early evident in cell bodies, dendrites, and axonal processes within the area postrema.
86 le reconstruction of long, thin, and complex axonal processes within the mature nervous system.