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1                                              Rt was lower than Rg by 15%-16% for the entire populatio
2  corresponding region of visual space in all Rt subdivisions.
3 es were interpreted independently for Rg and Rt considering a value >70% as evidence of delayed empty
4     Many PV+ neurons were observed in VP and Rt, but very few were found in VPI or Po.
5 e was assessed in resected CRLM specimens by Rt-QPCR.
6 ond method, residual relative to total dose (Rt) was quantified by comparing activity in the same fin
7 PI, and Po but were very sparse or absent in Rt.
8 neurons were most prominently distributed in Rt.
9  the tectal axons innervated the ipsilateral Rt, in which some of the collaterals crossed the midline
10 eoretical upper and lower limits for the LC (Rt and Rp), which are determined by the relative rates o
11 group of nuclei (Po), and reticular nucleus (Rt).
12 was classified as nondelayed on the basis of Rt.
13  results showed that the anterior portion of Rt sent a heavy projection to the ventral region of the
14  Ec, whereas the more caudal subdivisions of Rt sent projections to more caudal and dorsal portions i
15                               The volumes of Rt (a thalamic nucleus not involved in song) and the tel
16                  Clinical decisions based on Rt did not require later management changes that would h
17 erminals in areas ventral to the presumptive Rt and PV.
18 transcription and polymerase chain reaction (Rt-PCR), it was shown that the four isoforms are all exp
19 r axons bilaterally to the nucleus rotundus (Rt).
20  are selectively relayed on to the rotundus (Rt, caudal pulvinar) in the thalamus, and to its pallial
21 he tectofugal pathway (the nucleus rotundus, Rt).
22 radius of gyration of the rod cross-section (Rt) of approximately 52 A, compatible with a coiled-coil
23 d by embryonic days 3.0-5.5 (E3.0-E5.5), the Rt by E3.5-E5.0, and the nuclei of TT by E3.5-4.5.
24 responses within the receptive fields in the Rt tend to synchronize with the tectal location receivin
25 gnals, such that the visual responses of the Rt and the E acquire a bursting modulation significantly
26 ervate ipsilaterally the SP/IPS and then the Rt/PV.
27                            In transit to the Rt, the axons of the SGC neurons collateralize in the nu
28 rates of FDG and glucose membrane transport (Rt, 1.73 +/- 0.22) and the relative rates of FDG and glu

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