Hemispheric specialization for motor sequencing: Abnormalities in levels of programming

[1]  D. Harrington,et al.  Sequencing in Parkinson's disease. Abnormalities in programming and controlling movement. , 1991, Brain : a journal of neurology.

[2]  Arthur P. Shimamura,et al.  Memory for the temporal order of events in patients with frontal lobe lesions and amnesic patients , 1990, Neuropsychologia.

[3]  Deborah L. Harrington,et al.  Hemispheric control of the initial and corrective components of aiming movements , 1989, Neuropsychologia.

[4]  K. Haaland,et al.  Neuropsychological and Neuroanatomic Aspects of Complex Motor Control , 1989 .

[5]  Gabriel Leonard,et al.  Performance on unimanual and bimanual tapping tasks by patients with lesions of the frontal or temporal lobe , 1988, Neuropsychologia.

[6]  Deborah L. Harrington,et al.  The effects of task complexity on motor performance in left and right CVA patients , 1987, Neuropsychologia.

[7]  D A Rosenbaum,et al.  Scheduling and programming of rapid finger sequences: tests and elaborations of the hierarchical editor model. , 1987, Journal of experimental psychology. Human perception and performance.

[8]  D. Harrington,et al.  Programming sequences of hand postures. , 1987, Journal of motor behavior.

[9]  G. W. Jason Performance of manual copying tasks after focal cortical lesions , 1986, Neuropsychologia.

[10]  G. W. Jason Manual sequence learning after focal cortical lesions , 1985, Neuropsychologia.

[11]  B. Milner,et al.  Frontal lobes and the temporal organization of memory. , 1985, Human neurobiology.

[12]  Gregor W. Jason,et al.  Hemispheric asymmetries in motor function: I. Left-hemisphere specialization for memory but not performance , 1983, Neuropsychologia.

[13]  G. W. Jason Hemispheric asymmetries in motor function: II. Ordering does not contribute to left-hemisphere specialization , 1983, Neuropsychologia.

[14]  Leslie G. Ungerleider,et al.  Object vision and spatial vision: two cortical pathways , 1983, Trends in Neurosciences.

[15]  E. Renzi,et al.  Performance of Left Brain-Damaged Patients on Imitation of Single Movements and Motor Sequences. Frontal and Parietal-Injured Patients Compared , 1983, Cortex.

[16]  B. Milner,et al.  Deficits on subject-ordered tasks after frontal- and temporal-lobe lesions in man , 1982, Neuropsychologia.

[17]  D. Kimura,et al.  Left-hemisphere control of oral and brachial movements and their relation to communication. , 1982, Philosophical transactions of the Royal Society of London. Series B, Biological sciences.

[18]  K. Heilman,et al.  Two forms of ideomotor apraxia , 1982, Neurology.

[19]  Harold D. Delaney,et al.  Motor deficits after left or right hemisphere damage due to stroke or tumor , 1981, Neuropsychologia.

[20]  B. Milner,et al.  Performance of complex arm and facial movements after focal brain lesions , 1981, Neuropsychologia.

[21]  E. Renzi,et al.  Imitating gestures. A quantitative approach to ideomotor apraxia. , 1980, Archives of neurology.

[22]  D. Kimura 7 – Neuromotor Mechanisms in the Evolution of Human Communication1 , 1979 .

[23]  D. Kimura,et al.  Acquisition of a motor skill after left-hemisphere damage. , 1977, Brain : a journal of neurology.

[24]  D. Kimura,et al.  Motor functions of the left hemisphere. , 1974, Brain : a journal of neurology.

[25]  Martha Taylor Sarno,et al.  Assessment of Aphasia and Related Disorders , 1973 .

[26]  E. Kaplan,et al.  The assessment of aphasia and related disorders , 1972 .

[27]  M. Wyke,et al.  The effects of brain lesions on the performance of bilateral arm movements. , 1971, Neuropsychologia.

[28]  Maria Wyke,et al.  Effect of brain lesions on the rapidity of arm movement , 1967, Neurology.

[29]  N. Geschwind Disconnexion syndromes in animals and man. II. , 1965, Brain : a journal of neurology.

[30]  N. Geschwind Disconnexion syndromes in animals and man. I. , 1965, Brain : a journal of neurology.

[31]  E. Renzi,et al.  The token test: A sensitive test to detect receptive disturbances in aphasics. , 1962, Brain : a journal of neurology.