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1 n 60 nl) into the rvmPAG at the level of the posterior commissure.
2  one of two distinct tracts: the anterior or posterior commissure.
3 y correlated with their 3D distance from the posterior commissure.
4 Edinger-Westphal nucleus, and nucleus of the posterior commissure.
5 ll as multipolar cells in the nucleus of the posterior commissure.
6 osterior leaflet edges near the anterior and posterior commissures.
7  one of two distinct tracts, the anterior or posterior commissure (AC or PC, respec tively).
8 dle to the ipsilateral pretectal area or the posterior commissure and a ventral fiber bundle to the t
9  pretectal, parvocellular, and magnocellular posterior commissure and lateral terminal nuclei), JcP (
10 ppocampal commissure) along with an enlarged posterior commissure and supernumerary pontine cholinerg
11 ventral tegmentum, the dorsal nucleus of the posterior commissure and the lateral habenular nucleus.
12 he anterior commissure, corpus callosum, and posterior commissure, and in nondecussating pathways, su
13  within the spinal cord, optic nerve and the posterior commissure are disorganized, with the optic ne
14 act fluid output (RTFO) was collected at the posterior commissure at 6-min intervals.
15 aken from the septal, lateral, anterior, and posterior commissures attachment segments.
16 nsformation results in a specific deficit of posterior commissure axons.
17 w that Derailed keeps these axons out of the posterior commissure by acting as a receptor for Wnt5, a
18 ental area, substantia nigra, nucleus of the posterior commissure, central gray, nucleus of Darkschew
19  mm and superior -3.3+/-2.5 mm (anterior and posterior commissure coordinates).
20 rogression in the dorsolateral STN (anterior/posterior commissure coordinates: 11.07 +/- 0.82mm later
21 ns, have duplicated RP2 neurons, and display posterior commissure defects.
22 mages (n = 24), mean errors for anterior and posterior commissures generally were <1 mm, with SDs < 1
23 0) posterior and 11.4 mm (1.2) caudal to the posterior commissure in the anterior commissure-posterio
24 pontine competition, facilitated through the posterior commissure, in response to unilateral telencep
25 position parallel to the anterior commissure-posterior commissure line and segmented into CSF, gray m
26  for axial image orientation (i.e., anterior-posterior commissure line versus orbito-meatal line, res
27 iologic horizontal line (anterior commissure-posterior commissure line; ACPC line) where the majority
28 mmissural/commissural nuclei, nucleus of the posterior commissure, parabrachial nucleus, laterodorsal
29 e medial longitudinal fascicle (mlf) and the posterior commissure (pc).
30  regions 15 mm above the anterior commissure-posterior commissure plane was associated with a low rem
31 terior commissure in the anterior commissure-posterior commissure plane.
32 rpus callosum, and hippocampal), an enlarged posterior commissure, supernumerary pontine cholinergic
33 t coursed via the intermediate bundle to the posterior commissure were also seen reaching the contral
34 ly trajectory of motoneurons or axons of the posterior commissure, whose projections are directed awa