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1 son with counterparts in the chick and mouse pretectum.
2 neurons were observed in the prethalamus and pretectum.
3 abnormally contribute to the epithalamus and pretectum.
4 f epithalamus are derived from the embryonic pretectum.
5 ucleus, the intergeniculate leaflet, and the pretectum.
6 vidual cells project to both the SCN and the pretectum.
7 thalamus, the zona incerta, and the anterior pretectum.
8 IGL and their projections to hamster SCN and pretectum.
9 d in groups of cells in the diencephalon and pretectum.
10 ad, with 97% projecting to the contralateral pretectum.
11 s intrathalamica (ZLI), the thalamus and the pretectum].
12 t optic projections to the SCN, thalamus and pretectum and a functional GHT.
13 ing from the optic tract at the level of the pretectum and anterior superior colliculus, the other em
14                          In vertebrates, the pretectum and optic tectum (superior colliculus in mamma
15 microinjections of Fluoro-Gold into the OPN (pretectum and superior colliculus as controls) to retrog
16 opulations were located in the diencephalon (pretectum and thalamus), mesencephalon (reticular format
17 form these areas, and, instead, the adjacent pretectum and, to a lesser extent, the prethalamus expan
18 sory (medial olfactory bulb, parapineal, and pretectum) and not limbic areas, as they do in mammals;
19 ions from the thalamic reticular nucleus and pretectum, and a cholinergic projection from the parabig
20 orsal neural tube, and mesencephalic tectum, pretectum, and base, and at the midbrain-hindbrain bound
21 ates indicates that the vertebrate thalamus, pretectum, and midbrain domains jointly correspond to a
22 e ZLI (including the future dorsal thalamus, pretectum, and midbrain) was disrupted, supporting the i
23 ral lateral geniculate nuclei, nuclei of the pretectum, and nucleus of the brachium of the inferior c
24 m basal ganglia, zona incerta (ZI), anterior pretectum, and pontine reticular formation) provides tem
25  R-cadherin message in the hypothalamus, the pretectum, and the anterolateral optic tectum.
26 ged from the optic tract at the level of the pretectum/anterior mesencephalon.
27 onventionally termed "ventral" thalamus) and pretectum but is downregulated in the body of the poster
28  all four types also send projections to the pretectum, but rarely do individual cells project to bot
29                                          The pretectum can be subdivided roughly into three areas bas
30 boundaries delineating the thalamus from the pretectum, epithalamus and prethalamus, revealing multip
31 pient areas-underlines the importance of the pretectum for sensory integration and visuomotor functio
32 m has been investigated in great detail, the pretectum has received far less attention.
33 lium and the subpallium, in the thalamus and pretectum, in the optic tectum and torus semicircularis,
34 s to the reticulospinal nuclei, and thus the pretectum indirectly affects the control of movement.
35                             In addition, the pretectum is reciprocally connected with the thalamus, t
36 s vulgaris-leucoagglutin, into nuclei of the pretectum (medial, commissural, posterior, olivary, ante
37 ganglion cells (RGC) that project to the rat pretectum, much of this evidence is circumstantial, and
38 evious analysis of progenitor domains in the pretectum of Xenopus revealed three molecularly distinct
39 restricted to the roof plate of prosomere 2, pretectum, optic tectum, rhombencephalon, and spinal cor
40 and visual midbrain or neurotoxic lesions of pretectum or deep superior colliculus (but not of the su
41 s neuromodulator projections from the IGL to pretectum or SCN are discussed.
42 enopus and show that the organization of the pretectum possesses many features shared with birds.
43                                     Both the pretectum (PT) and the superior colliculus (SC) play an
44                                          The pretectum (PT) can supply the pulvinar nucleus (PUL), an
45 -sparing neurotoxic lesions were made to the pretectum (PT) or the SC.
46                           Most nuclei of the pretectum receive innervation largely, but not solely, f
47               In terms of afferentation, the pretectum receives electro- and mechanoreceptive inputs
48                                          The pretectum receives inhibitory input from the basal gangl
49                         At around E11.0, the pretectum replaces this structure.
50 l telencephalon, habenula, ventral thalamus, pretectum, rostral midbrain tegmentum, posterior tubercu
51 luded the amygdyla, auditory thalamus, pons, pretectum, superior and inferior colliculi, and central
52 ctory bulb, cerebral neocortex, hippocampus, pretectum, tectum, cranial nerve nuclei, and spinal cord
53        The primary retinal projection to the pretectum terminated in the ipsilateral and contralatera
54 nd ipsilateral to the injection site, in the pretectum, the ventral tegmentum, the dorsal nucleus of

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