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Skaliora I, Doubell TP, Holmes NP, Nodal FR, King AJ (2004) Functional topography of converging visual and auditory inputs to neurons in the rat superior colliculus. Journal of Neurophysiology, 92(5):2933-2946        
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1. Aitkin L, Jones R (1992) Azimuthal processing in the posterior auditory thalamus of cats. Neuroscience Letters, 142:81-84
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2. Appell PP, Behan M (1990) Sources of subcortical GABAergic projections to the superior colliculus in the cat. Journal of Comparative Neurology, 302:143-158
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3. Behan M, Appell PP (1992) Intrinsic circuitry in the cat superior colliculus: Projections from the superficial layers. Journal of Comparative Neurology, 315:230-243
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4. Behan M, Steinhacker K, Jeffrey BS, Meredith MA (2002) Chemoarchitecture of GABAergic neurons in the ferret superior colliculus. Journal of Comparative Neurology, 452:334-359
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5. Burke RE (1967) Composite nature of the monosynaptic excitatory postsynaptic potential. Journal of Neurophysiology, 30:1114-1137
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6. Burnett LR, Stein BE, Chaponis D, Wallace MT (2004) Superior colliculus lesions preferentially disrupt multisensory orientation. Neuroscience, 124(3):535-547
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7. Cadusseau J, Roger M (1985) Afferent projections to the superior colliculus in the rat, with special attention to the deep layers. Journal Fur Hirnforschung, 26(6):667-681
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8. Cash SS, Yuste R (1998) Input summation by cultured pyramidal neurons is linear and position-independent. Journal of Neuroscience, 18(1):10-15
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9. Chalupa LM, Snider CJ, Kirby MA (1996) Topographic organization in the retinocollicular pathway of the fetal cat demonstrated by retrograde labeling of ganglion cell. Journal of Comparative Neurology, 368:295-303
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10. Clark KA, Collingridge GL (1996) Evidence that heterosynaptic depolarization underlies associativity of long-term potentiation in rat hippocampus. Journal of Physiology, 490(2):455-462
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11. Doubell TP, Baron J, Skaliora I, King AJ (2000) Topographical projection from the superior colliculus to the nucleus of the brachium of the inferior colliculus in the ferret: Convergence of visual and auditory information. European Journal of Neuroscience, 12(12):4290-4308
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12. Doubell TP, Skaliora I, Baron J, King AJ (2003) Functional connectivity between the superficial and deeper layers of the superior colliculus: An anatomical substrate for sensorimotor integration. Journal of Neuroscience, 23(16):6596-6607
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13. Drager UC, Hubel DH (1975) Responses to visual stimulation and relationship between visual, auditory, and somatosensory inputs in mouse superior colliculus. Journal of Neurophysiology, 38(3):690-713
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14. Druga R, Syka J (1984) Projections from auditory structures to the superior colliculus in the rat. Neuroscience Letters, 45:247-252
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15. Edwards SB, Ginsburgh CL, Henkel CK, Stein BE (1979) Sources of subcortical projections to the superior colliculus in the cat. Journal of Comparative Neurology, 184:309-329
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16. Friauf E (1992) Tonotopic order in the adult and developing auditory system of the rat as shown by c-fos immunocytochemistry. European Journal of Neuroscience, 4:798-812
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17. Gaese BH, Johnen A (2000) Coding for auditory space in the superior colliculus of the rat. European Journal of Neuroscience, 12(5):1739-1752
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18. Grabauskas G, Bradley RM (1996) Synaptic interactions due to convergent input from gustatory afferent fibers in the rostral nucleus of the solitary tract. Journal of Neurophysiology, 76:2919-2927
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19. Hall WC, Lee PH (1997) Interlaminar connections of the superior colliculus in the tree shrew. III: The optic layer. Visual Neuroscience, 14:647-661
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20. Huerta MF, Harting JK (1984) The mammalian superior colliculus: studies of its morphology and connections. In: Vanegas H (eds) Comparative Neurology of the Optic Tectum. Plenum Press, New York, pp 687–773
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21. Isa T, Endo T, Saito Y (1998) The visuo-motor pathway in the local circuit of the rat superior colliculus. Journal of Neuroscience, 18:8496-8504
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22. King AJ, Hutchings ME, Moore DR, Blakemore CB (1988) Developmental plasticity in the visual and auditory representations in the mammalian superior colliculus. Nature, 332(6159):73-76
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23. King AJ, Hutchings ME (1987) Spatial response properties of acoustically responsive neurons in the superior colliculus of the ferret: A map of auditory space. Journal of Neurophysiology, 57(2):596-624
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24. King AJ, Palmer AR (1985) Integration of visual and auditory information in bimodal neurones in the guinea-pig superior colliculus. Experimental Brain Research, 60(3):492-500
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25. King AJ (1999) Sensory experience and the formation of a computational map of auditory space in the brain. BioEssays, 21(11):900-911
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26. King AJ, Schnupp JWH, Thompson ID (1998) Signals from the superficial layers of the superior colliculus enable the development of the auditory space map in the deeper layers. Journal of Neuroscience, 18(22):9394-9408
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27. King AJ, Jiang ZD, Moore DR (1998) Auditory brainstem projections to the ferret superior colliculus: Anatomical contribution to the neural coding of sound azimuth. Journal of Comparative Neurology, 390(3):342-365
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28. King AJ, Schnupp JWH, Carlile S, Smith AL, Thompson ID (1996) The development of topographically-aligned maps of visual and auditory space in the superior colliculus. Progress in Brain Research, 112:335-350
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29. King AJ, Carlile S (1993) Changes induced in the representation of auditory space in the superior colliculus by rearing ferrets with binocular eyelid suture. Experimental Brain Research, 94(3):444-455
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30. Knudsen EI, Brainard MS (1991) Visual instruction of the neural map of auditory space in the developing optic tectum. Science, 253(5015):85-87
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31. Kogo N, Ariel M (1999) Response attenuation during coincident afferent excitatory inputs. Journal of Neurophysiology, 81:2945-2955
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32. Kudo M, Niimi K (1980) Ascending projections of the inferior colliculus in the cat: An autoradiographic study. Journal of Comparative Neurology, 191:545-556
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33. LaMotte dIB, Destombes J, Thiesson D, Hellio , Lasserre X, Kouchtir DN, Jami L, Zytnicki D (1998) Indications for GABA-immunoreactive axo-axonic contacts on the intraspinal arborization of a Ib fiber in cat: A confocal microscope study. Journal of Neuroscience, 18:10030-10036
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34. Langmoen IA, Andersen P (1983) Summation of excitatory postsynaptic potentials in hippocampal pyramidal cells. Journal of Neurophysiology, 50(6):1320-1329
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35. Lee PH, Helms MC, Augustine GJ, Hall WC (1997) Role of intrinsic synaptic circuitry in collicular sensorimotor integration. Proceedings of the National Academy of Sciences USA, 94:13299-13304
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36. Lohmann H, Algur Y (1995) Spatio-temporal summation of synaptic activity in visual cortical pyramidal cells in vitro. Brain Research, 671:275-281
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37. Lomeli J, Quevedo JN, Linares P, Rudomin P (1998) Local control of information flow in segmental and ascending collaterals of single afferents. Nature, 395:600-604
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38. Margulis M, Tang CM (1998) Temporal integration can readily switch between sublinear and supralinear summation. Journal of Neurophysiology, 79:2809-2813
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39. Meredith MA, Ramoa AS (1998) Intrinsic circuitry of the superior colliculus: Pharmacophysiological identification of horizontally oriented inhibitory interneurons. Journal of Neurophysiology, 79:1597-1602
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40. Meredith MA, Stein BE (1986a) Visual, auditory, and somatosensory convergence on cells in superior colliculus results in multisensory integration. Journal of Neurophysiology, 56(3):640-662
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41. Meredith MA, Stein BE (1983) Interactions among converging sensory inputs in the superior colliculus. Science, 221(4608):389-391
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42. Middlebrooks JC, Knudsen EI (1984) A neural code for auditory space in the cat's superior colliculus. Journal of Neuroscience, 4(10):2621-2634
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43. Mooney RD, Nikoletseas MM, King TD, Savage SV, Weaver MT, Rhoades RW (1992) Structural and functional consequences of neonatal deafferentation in the superficial layers of the hamsterís superior colliculus. Journal of Comparative Neurology, 315:398-412
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44. Nettleton JS, Spain WJ (2000) Linear to supralinear summation of AMPA-mediated EPSPs in neocortical pyramidal neurons. Journal of Neurophysiology, 83:3310-3322
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45. Okada Y (1992) The distribution and function of gamma-aminobutyric acid (GABA) in the superior colliculus. Progress in Brain Research, 90:249-262
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46. Otterson OP, Storm-Mathisen J (1984) Glutamate- and GABA-containing neurons in the mouse and rat brain, as demonstrated with a new immuno- cytochemical technique. Journal of Comparative Neurology, 229:374-392
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47. Pettit DL, Helms MC, Lee PH, Augustine GJ, Hall WC (1999) Local excitatory circuits in the intermediate gray layer of the superior colliculus. Journal of Neurophysiology, 81:1424-1427
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48. Populin LC, Yin TCT (2002) Bimodal interactions in the superior colliculus of the behaving cat. Journal of Neuroscience, 22(7):2826-2834
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49. Schnupp JWH, King AJ (1997) Coding for auditory space in the nucleus of the brachium of the inferior colliculus in the ferret. Journal of Neurophysiology, 78(5):2717-2731
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50. Stein BE, Meredith MA (1990) Multisensory integration. Neural and behavioral solutions for dealing with stimuli from different sensory modalities. Annals of the New York Academy of Sciences, 608:51-65
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51. Wallace MT, Stein BE (2001) Sensory and multisensory responses in the newborn monkey superior colliculus. Journal of Neuroscience, 21(22):8886-8894
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52. Wallace MT, Stein BE (2000) Onset of cross-modal synthesis in the neonatal superior colliculus is gated by the development of cortical influences. Journal of Neurophysiology, 83(6):3578-3582
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53. Wallace MT, Stein BE (1997) Development of multisensory neurons and multisensory integration in cat superior colliculus. Journal of Neuroscience, 17(7):2429-2444
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54. Westby GWM, Keay KA, Redgrave P, Dean P, Bannister M (1990) Output pathways from the rat superior colliculus mediating approach and avoidance have different sensory properties. Experimental Brain Research, 81:626-638
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55. Zangenehpour S, Chaudhuri A (2001) Neural activity profiles of the neocortex and superior colliculus after bimodal sensory stimulation. Cerebral Cortex, 11(10):924-935
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56. Zhu JJ, Lo F. (2000) Recurrent inhibitory circuitry in the deep layers of the rabbit superior colliculus. Journal of Physiology, :731-740
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