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1 ear tonotopic organization, i.e., in dorsal, posteroventral, and anteroventral cochlear nuclei, and i
2 ach major CN subdivision: the anteroventral, posteroventral, and dorsal cochlear nucleus, (AVCN, PVCN
3                                              Posteroventral CN (PVCN) projections (normalized for CN
4 ntense labeling in the nerve root region and posteroventral CN (PVCN).
5                        Lesions involving the posteroventral cochlear nucleus (PVCN), but not the othe
6 nteroventral cochlear nucleus (AVCN) and the posteroventral cochlear nucleus (PVCN).
7 rons in the brain stem, octopus cells in the posteroventral cochlear nucleus and principal cells of t
8  was used to identify the projections of the posteroventral cochlear nucleus in cats.
9 forming it, suggests that it originates from posteroventral cochlear nucleus stellate/multipolar neur
10 it in rats consisting of the auditory nerve, posteroventral cochlear nucleus, an area near the ventro
11 ear nucleus, anteroventral cochlear nucleus, posteroventral cochlear nucleus, some divisions of the s
12 ctions had an additional projection into the posteroventral cochlear nucleus.
13 e octopus and multipolar cell regions of the posteroventral cochlear nucleus.
14 monly identified as receiving input from the posteroventral cochlear nucleus.
15   Here, we have characterized neurons in the posteroventral division of the medial amygdala (MePV) us
16 at selective unilateral surgical ablation of posteroventral globus pallidus interna relieves the move
17 tic strategy to conditionally delete Lhx2 in posteroventral hypothalamic neuroepithelium, both embryo
18 ry sensory neurons (primary neurons), to the posteroventral main olfactory bulb (PV MOB) in mice.
19 munoreactivity (IR) in the posterodorsal and posteroventral medial amygdala (MeA), bed nucleus of the
20                     Posterodorsal (MePD) and posteroventral medial amygdala were examined for the fir
21  unilateral (UPVP) or simultaneous bilateral posteroventral pallidotomy (BPVP) using Image Fusion and
22 ts with Parkinson's disease after unilateral posteroventral pallidotomy (PVP).
23                                              Posteroventral pallidotomy as a treatment for Parkinson'
24                                        Since posteroventral pallidotomy improves motor performance in
25                     We studied the effect of posteroventral pallidotomy on movement preparation and e
26  detailed quantitative data on the impact of posteroventral pallidotomy on previously described measu
27  'off' medication underwent unilateral right posteroventral pallidotomy.
28 180 Gy delivered in one sitting to the right posteroventral pallidum site, used by Laitinen and colle
29 era toxin B and fluorescent dextrans) in the posteroventral part of the ventrolateral thalamic nucleu
30 he nucleus accumbens core (AcbC), the medial posteroventral portion of the central nucleus of the amy
31  was measured in slices of the dorsal (DCN), posteroventral (PVCN) and anteroventral (AVCN) cochlear
32 ze, projections to the anteroventral (AVCN), posteroventral (PVCN), and dorsal (DCN) subdivisions are
33 g were assessed in the anteroventral (AVCN), posteroventral (PVCN), and dorsal cochlear nucleus (DCN)
34 second bilaterally symmetrical vortex in the posteroventral region of the cylinder.
35 comes the endolymphatic duct (ED), while the posteroventral rim becomes the lateral otocyst wall.
36                            Cells forming the posteroventral subnucleus (pvLNTB), when investigated by
37 al nucleus of the trapezoid body, called the posteroventral subnucleus.
38 erodorsal, anteroventral, posterodorsal, and posteroventral tegmental nuclei; and the periaqueductal
39                               In addition, a posteroventral temporal area is activated simultaneously
40 but they are task-dependent, suggesting that posteroventral temporal cortex may encode visual categor
41  have robustly shown that different areas of posteroventral temporal lobe are selectively activated b

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