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J J Sloper

Brain research

Showing results (1-10 of 12) with videos related to

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Brain Research|September 29, 1980
Selective degeneration of interneurons in the motor cortex of infant monkeys following controlled hypoxia: a possible cause of epilepsyJ J Sloper, P Johnson, T P Powell
Brain Research|February 1, 1987
Effects of enucleation at different ages on the sizes of neurons in the lateral geniculate nucleus of infant and adult monkeysJ J Sloper, M P Headon, T P Powell
Brain Research|February 1, 1987
Changes in the size of cells in the monocular segment of the primate lateral geniculate nucleus during normal development and following visual deprivationJ J Sloper, M P Headon, T P Powell
Brain Research|August 1, 1984
Simultaneous hypertrophy of cells related to each eye in the lateral geniculate nucleus of the infant monkey following short-term reverse sutureJ J Sloper, M P Headon, T P Powell
Brain Research|May 1, 1988
Experiments to study recovery of lateral geniculate nucleus cell size following monocular lid closure and reverse suture in infant monkeysJ J Sloper, M P Headon, T P Powell
Brain Research|May 1, 1988
A comparison of cell size changes in central and pericentral representations within the primate lateral geniculate nucleus following early monocular deprivationJ J Sloper, M P Headon, T P Powell
Brain Research|April 29, 1982
Initial hypertrophy of cells in undeprived laminae of the lateral geniculate nucleus of the monkey following early monocular visual deprivationM P Headon, J J Sloper, T P Powell
Brain Research|December 14, 1981
Shrinkage of cells in undeprived laminae of the monkey lateral geniculate nucleus following late closure of one eyeM P Headon, J J Sloper, R W Hiorns, et al.
Brain Research|February 1, 1985
Sizes of neurons in the primate lateral geniculate nucleus during normal developmentM P Headon, J J Sloper, R W Hiorns, et al.
Brain Research|February 1, 1985
Effects of monocular closure at different ages on deprived and undeprived cells in the primate lateral geniculate nucleusM P Headon, J J Sloper, R W Hiorns, et al.
Pageof 2

Showing results (1-10 of 12) with videos related to

Sort By:
Pageof 2
Brain Research|September 29, 1980
Selective degeneration of interneurons in the motor cortex of infant monkeys following controlled hypoxia: a possible cause of epilepsyJ J Sloper, P Johnson, T P Powell
Brain Research|February 1, 1987
Effects of enucleation at different ages on the sizes of neurons in the lateral geniculate nucleus of infant and adult monkeysJ J Sloper, M P Headon, T P Powell
Brain Research|February 1, 1987
Changes in the size of cells in the monocular segment of the primate lateral geniculate nucleus during normal development and following visual deprivationJ J Sloper, M P Headon, T P Powell
Brain Research|August 1, 1984
Simultaneous hypertrophy of cells related to each eye in the lateral geniculate nucleus of the infant monkey following short-term reverse sutureJ J Sloper, M P Headon, T P Powell
Brain Research|May 1, 1988
Experiments to study recovery of lateral geniculate nucleus cell size following monocular lid closure and reverse suture in infant monkeysJ J Sloper, M P Headon, T P Powell
Brain Research|May 1, 1988
A comparison of cell size changes in central and pericentral representations within the primate lateral geniculate nucleus following early monocular deprivationJ J Sloper, M P Headon, T P Powell
Brain Research|April 29, 1982
Initial hypertrophy of cells in undeprived laminae of the lateral geniculate nucleus of the monkey following early monocular visual deprivationM P Headon, J J Sloper, T P Powell
Brain Research|December 14, 1981
Shrinkage of cells in undeprived laminae of the monkey lateral geniculate nucleus following late closure of one eyeM P Headon, J J Sloper, R W Hiorns, et al.
Brain Research|February 1, 1985
Sizes of neurons in the primate lateral geniculate nucleus during normal developmentM P Headon, J J Sloper, R W Hiorns, et al.
Brain Research|February 1, 1985
Effects of monocular closure at different ages on deprived and undeprived cells in the primate lateral geniculate nucleusM P Headon, J J Sloper, R W Hiorns, et al.
Pageof 2