The “staircase test”: a measure of independent forelimb reaching and grasping abilities in rats
暂无分享,去创建一个
S. Dunnett | S. B. Dunnett | C. P. Montoya | L. J. Campbell-Hope | K. D. Pemberton | Stephen B. Dunnett | S. B. Dunnett
[1] A. W. Price,et al. Deficits in contralateral and ipsilateral forepaw motor control following unilateral motor cortical ablations in rats , 1981, Brain Research.
[2] A. Castro,et al. The effects of cortical ablations on digital usage in the rat. , 1972, Brain research.
[3] P. E. Barnett,et al. The cortical destruction necessary to produce a transfer of a forced-practice function. , 1961, Journal of comparative and physiological psychology.
[4] W. Spirduso,et al. Reaction time and nigrostriatal dopamine function: the effects of age and practice , 1988, Brain Research.
[5] S. Dunnett,et al. Effects of nigral and striatal grafts on skilled forelimb use in the rat. , 1990, Progress in brain research.
[6] A. Björklund,et al. Striatal grafts in rats with unilateral neostriatal lesions—III. Recovery from dopamine-dependent motor asymmetry and deficits in skilled paw reaching , 1988, Neuroscience.
[7] G. Arbuthnott,et al. Altered paw preference after unilateral 6-hydroxy-dopamine injections into lateral hypothalamus , 1981, Neuropsychologia.
[8] G. M. Peterson. Mechanisms of handedness in the rat , 1934 .
[9] M. Pisa. Motor functions of the striatum in the rat: Critical role of the lateral region in tongue and forelimb reaching , 1988, Neuroscience.
[10] V. Montero. Comparative Studies on the Visual Cortex , 1981 .
[11] S. Wise,et al. The motor cortex of the rat: Cytoarchitecture and microstimulation mapping , 1982, The Journal of comparative neurology.
[12] R. Hall,et al. Organization of motor and somatosensory neocortex in the albino rat , 1974 .
[13] J. Bureš,et al. Handedness in rats: Blockade of reaching behavior by unilateral 6-OHDA injections into substantia nigra and caudate nucleus , 1980 .
[14] I. Whishaw,et al. Dopamine-rich grafts ameliorate whole body motor asymmetry and sensory neglect but not independent limb use in rats with 6-hydroxydopamine lesions , 1987, Brain Research.
[15] Manuel F. Gonzalez,et al. Quantitative measurement of interresponse times to assess forelimb motor function in rats , 1986, Behavioural Brain Research.
[16] T. Schallert,et al. Reactive capacity: A sensitive behavioral marker of movement initiation and nigrostriatal dopamine function , 1985, Brain Research.
[17] J. B. Justice,et al. Dopamine depletion in a striatal subregion disrupts performance of a skilled motor task in the rat , 1985, Brain Research.
[18] T. Robbins,et al. Effects of unilateral 6-Hydroxydopamine lesions of the caudate-putamen on skilled forepaw use in the rat , 1984, Behavioural Brain Research.
[19] Ian Q. Whishaw,et al. Olfaction directs skilled forelimb reaching in the rat , 1989, Behavioural Brain Research.
[20] I. Whishaw,et al. The contributions of motor cortex, nigrostriatal dopamine and caudate-putamen to skilled forelimb use in the rat. , 1986, Brain : a journal of neurology.
[21] M. Garcia-Munoz,et al. Separation of the motor consequences from other actions of unilateral 6-hydroxydopamine lesions in the nigrostriatal neurones of rat brain , 1985, Brain Research.
[22] J. Schneider,et al. Behaviorally specific limb use deficits following globus pallidus lesions in rats , 1984, Brain Research.