AnokhinK., MileusnicR., ShamakinaI., & RoseS. (1991). Effects of early experience on c-fos gene expression in the chick forebrain.Brain Research,544,101–107.
2.
ChangeuxJ.P., & DanchinA. (1976). Selective stabilization of developing synapses as a mechanism for the specification of neural networks.Nature,264, 115–122.
3.
ChiJ.G., DoolingE., & GillesF.H. (1977). Gyral development of the human brain.Annals of Neurology,1, 86.
DelisD.C., KiefnerM.G., & FridlundA.J. (1988). Visuospatial dysfunction following unilateral brain damage: Dissociations in hierarchical hemispatial analysis.Journal of Clinical and Experimental Neuropsychology,10, 421–431.
6.
Goldman-RakicP.S. (1988). Topography of cognition: Parallel distributed networks in primate association cortex.Annual Review of Neuroscience,11, 137–156.
7.
GottliebG., WahlstenD., & LickliterR. (1997). The significance of biology for human development: A developmental psychobiological systems view. In LernerR. (Ed.), Handbook of child psychology: Vol. 1. Theory (5th ed., pp. 233–273). New York: John Wiley and Sons.
8.
GreenoughW.T., HwangH.F., & GormanC. (1985). Evidence for active synapse formation or altered postsynaptic metabolism in visual cortex of rats reared in complex environments.Proceedings of the National Academy of Sciences, USA,82, 4549–4552.
9.
HubelD.H., WieselT.N., & LeVayS. (1977). Plasticity of ocular dominance columns in monkey striate cortex.Philosophical Transactions of the Royal Society of London,278, 377–409.
10.
HuttenlocherP.R., de CourtenC., GareyL.J., & Van Der LoosH. (1982). Synaptogenesis in human visual cortex-evidence for synapse elimination during normal development.Neuroscience Letters,33, 247–252.
11.
KempermannG., KuhnH.G., & GageF.H. (1997). More hippocampal neurons in adult mice living in an enriched environment.Nature,386, 493–495.
12.
KennardM.A. (1938). Reorganization of motor function in the cerebral cortex of monkeys deprived of motor and premotor areas in infancy.Journal of Neurophysiology,1, 477–496.
13.
KolbB. (1995). Brain plasticity and behavior.Mahwah, NJ: Erlbaum.
14.
KolbB., & ElliotW. (1987). Recovery from early cortical damage in rats: II. Effects of experience on anatomy and behavior following frontal lesions at 1 or 5 days of age.Behavioral Brain Research,26, 47–56.
15.
MichelG.F. (1981). Right-handedness: A consequence of infant supine head-orientation preference?Science,212, 685–687.
16.
MolfeseD.L., FreemanR.B.Jr., & PalermoD.S. (1975). The ontogeny of brain lateralization for speech and nonspeech sounds.Brain and Language,2, 356–368.
17.
NevilleH.J., NicolJ.L., BarssA., & ForsterK.I. (1991). Syntactically based sentence processing classes: Evidence from event-related brain potentials.journal of Cognitive Neuroscience,3, 151–165.
18.
ReillyJ.S., BatesE., & MarchmanV. (in press). Narrative discourse in children with early focal brain injury. In DennisM. (Ed.), Discourse in children with anomalous brain development or acquired brain injury [Special issue]. Brain and Language.
19.
StilesJ., BatesE.A., ThaiD., TraunerD., & ReillyJ. (in press). Linguistic, cognitive and affective development in children with pre-and perinatal focal brain injury: A ten-year overview from the San Diego Longitudinal Project. In Rovee-CollierC. (Ed.), Advances in infancy research.Norwood, NJ: Ablex.
20.
SurM., PallasS.L., & RoeA.W. (1990). Cross-modal plasticity in cortical development: Differentiation and specification of sensory neocortex.Trends in Neurosciences,14, 227–233.
21.
SwindellC.S., HollandA.L., FrommD., & GreenhouseJ.B. (1988). Characteristics of recovery of drawing ability in left and right brain-damaged patients.Brain,7, 16–30.
22.
WarringtonE.K., JamesM., & KinsbourneM. (1966). Drawing disability in relation to laterality of cerebral lesion.Brain,89, 53-82.
23.
WebsterM.J., BachevalierJ., & UngerleiderL.G. (1995). Transient subcortical connections of inferior temporal areas TE and TEO in infant macaque monkeys,journal of Comparative Neurology,352, 213–226.
24.
WitelsonS.F. (1977). Early hemisphere specialization and interhemispheric plasticity: An empirical and theoretical review. In SegalowitzS.J. & GruberF.A. (Eds.), Language development and neurological theory (pp. 213–289). New York: Academic Press.