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1 n direction is represented in this important visual center.
2 etermine the large-scale patterns in the fly visual center.
3 signals for transfer to the lobula, a higher visual center.
4 ration and correct targeting of higher-order visual centers.
5 tic information to various non-image-forming visual centers.
6 neurons, which then provide output to higher visual centers.
7  approximately 75% and 25% of these two main visual centers.
8 vide molecular mechanisms for D-V mapping in visual centers.
9 tinal ganglion cells (RGCs), further through visual centers.
10 information processing in retina and primary visual centers.
11 late nucleus, superior colliculus, and other visual centers.
12                            Other subcortical visual centers also showed elevated basal levels of FLI
13  fly compound eye, which is connected to the visual center by photoreceptor axons, while tetragonal c
14 roject to ipsilateral or contralateral brain visual centers, critical for binocular vision.
15 tants do not infect a specific subset of the visual centers, e.g., the superior colliculus and the do
16 retinal ganglion cells and ultimately higher visual centers encode color and luminance.
17  mouse superior colliculus (SC), a prominent visual center for motion processing.
18 colliculus (SC) is a prominent and conserved visual center in all vertebrates.
19              The optic tectum is the largest visual center in most vertebrates and the main target fo
20                          In most subcortical visual centers in normal mice maintained for a period in
21  levels were determined, and the retinas and visual centers in the brain were examined by light and e
22 rons and anterogradely spreads to infect all visual centers in the brain.
23 al information before transmission to higher visual centers in the brain.
24              The superior colliculus (SC), a visual center located in the midbrain has been involved
25              Neuron responses in the brain's visual center mirrored these patterns, evidencing succes
26  deprivation influences refinement of higher visual centers, no previous studies suggest that light r
27 es refinement of neuronal function in higher visual centers of mammals.
28                       The development of the visual centers of the Drosophila brain is tightly regula
29 mined here FLI expression in the subcortical visual centers of the Royal College of Surgeons rat, foc
30 etinal ganglion cell neurons that project to visual centers on both sides of the brain.
31  In normal rats, neurons in most subcortical visual centers show low levels of fos-like immunoreactiv
32  information is relayed to non-image-forming visual centers that mediate behaviors such as the pupill
33 ive rise to direction selectivity in a major visual center, the superior colliculus (SC), are entirel
34 the anterior optic tubercle, a central brain visual center, with R neurons.