Search Results - "ROUILLER, E. M"

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  1. 1

    The Insula of Reil Revisited: Multiarchitectonic Organization in Macaque Monkeys by Gallay, D. S., Gallay, M. N., Jeanmonod, D., Rouiller, E. M., Morel, A.

    Published in Cerebral cortex (New York, N.Y. 1991) (01-01-2012)
    “…The insula of Reil represents a large cortical territory buried in the depth of the lateral sulcus and subdivided into 3 major cytoarchitectonic domains:…”
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    Journal Article
  2. 2

    Mechanisms of recovery of dexterity following unilateral lesion of the sensorimotor cortex in adult monkeys by Liu, Y, Rouiller, E M

    Published in Experimental brain research (03-09-1999)
    “…The mechanisms of recovery of manual dexterity after unilateral lesion of the sensorimotor cortex in adult primates remain a matter of debate. It has been…”
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  3. 3

    Invasion of lesion territory by regenerating fibers after spinal cord injury in adult macaque monkeys by Beaud, M.-L, Rouiller, E.M, Bloch, J, Mir, A, Schwab, M.E, Wannier, T, Schmidlin, E

    Published in Neuroscience (27-12-2012)
    “…Graphical abstract Highlights ► We examined the lesion territory in 18 macaque monkeys subjected to a cervical cord hemisection. ► Five monkeys received…”
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  4. 4

    Multisensory anatomical pathways by Cappe, C., Rouiller, E.M., Barone, P.

    Published in Hearing research (01-12-2009)
    “…In order to interact with the multisensory world that surrounds us, we must integrate various sources of sensory information (vision, hearing, touch…). A…”
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  5. 5

    A unilateral section of the corticospinal tract at cervical level in primate does not lead to measurable cell loss in motor cortex by Wannier, T, Schmidlin, E, Bloch, J, Rouiller, E M

    Published in Journal of neurotrauma (01-06-2005)
    “…The effects of a unilateral interruption of the dorsolateral funiculus at cervical level on the survival of neurons in the motor cortex were investigated in…”
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  6. 6

    Fate of rubrospinal neurons after unilateral section of the cervical spinal cord in adult macaque monkeys: Effects of an antibody treatment neutralizing Nogo-A by Wannier-Morino, P, Schmidlin, E, Freund, P, Belhaj-Saif, A, Bloch, J, Mir, A, Schwab, M.E, Rouiller, E.M, Wannier, T

    Published in Brain research (27-06-2008)
    “…Abstract The present study describes in primates the effects of a spinal cord injury on the number and size of the neurons in the magnocellular part of the red…”
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  7. 7

    Bayesian optimization of peripheral intraneural stimulation protocols to evoke distal limb movements by Losanno, E, Badi, M, Wurth, S, Borgognon, S, Courtine, G, Capogrosso, M, Rouiller, E M, Micera, S

    Published in Journal of neural engineering (29-12-2021)
    “…Motor neuroprostheses require the identification of stimulation protocols that effectively produce desired movements. Manual search for these protocols can be…”
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  8. 8

    Direct comparison between properties of adaptation of the auditory nerve and the ventral cochlear nucleus in response to repetitive clicks by Meyer, K., Rouiller, E.M., Loquet, G.

    Published in Hearing research (01-06-2007)
    “…The present study was designed to complete two previous reports [Loquet, G., Rouiller, E.M., 2002. Neural adaptation to pulsatile acoustical stimulation in the…”
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  9. 9

    Do bimanual motor actions involve the dorsal premotor (PMd), cingulate (CMA) and posterior parietal (PPC) cortices? Comparison with primary and supplementary motor cortical areas by Kermadi, Y. Liu, E. M. Rouiller, I.

    Published in Somatosensory & motor research (2000)
    “…Single neuronal activity was recorded from the dorsal premotor cortex (PMd), the cingulate motor area (CMA) and the posterior parietal cortex (PPC) in two…”
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  10. 10

    The projection from auditory cortex to cochlear nucleus in guinea pigs: an in vivo anatomical and in vitro electrophysiological study by JACOMME, A.-V, NODAL, F. R, BAJO, V. M, MANUNTA, Y, EDELINE, J.-M, BABALIAN, A, ROUILLER, E. M

    Published in Experimental brain research (01-12-2003)
    “…Previous anatomical experiments have demonstrated the existence of a direct, bilateral projection from the auditory cortex (AC) to the cochlear nucleus (CN)…”
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    Conference Proceeding Journal Article
  11. 11

    Asymmetric and Distant Effects of a Unilateral Lesion of the Primary Motor Cortex on the Bilateral Supplementary Motor Areas in Adult Macaque Monkeys by Contestabile, A, Colangiulo, R, Lucchini, M, Gindrat, A-D, Hamadjida, A, Kaeser, M, Savidan, J, Wyss, A F, Rouiller, E M, Schmidlin, E

    Published in The Journal of neuroscience (12-12-2018)
    “…A restricted lesion of the hand area in the primary motor cortex (M1) leads to a deficit of contralesional manual dexterity, followed by an incomplete…”
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  12. 12

    Transcallosal connections of the distal forelimb representations of the primary and supplementary motor cortical areas in macaque monkeys by ROUILLER, E. M, BABALIAN, A, KAZENNIKOV, O, MORET, V, YU, X.-H, WIESENDANGER, M

    Published in Experimental brain research (01-12-1994)
    “…The goal of the present neuroanatomical study in macaque monkeys was twofold: (1) to clarify whether the hand representation of the primary motor cortex (M1)…”
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  13. 13
  14. 14

    Neuronal activity in primate striatum and pallidum related to bimanual motor actions by Wannier, Th, Liu, J, Morel, A, Jouffrais, C, Rouiller, E. M

    Published in Neuroreport (21-01-2002)
    “…To assess whether striatal and pallidal neurones may contribute to bimanual co-ordination, two macaque monkeys were trained to perform a delayed conditional…”
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  15. 15

    Single-unit responses in the auditory cortex of monkeys performing a conditional acousticomotor task by DURIF, Caroline, JOUFFRAIS, Christophe, ROUILLER, Eric M

    Published in Experimental brain research (01-12-2003)
    “…The general goal of the present study was to assess the response properties to tones of single neurons in the auditory cortex (primary auditory area, A1, and…”
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    Conference Proceeding Journal Article
  16. 16

    Effects of intensity of repetitive acoustic stimuli on neural adaptation in the ventral cochlear nucleus of the rat by LOQUET, G, MEYER, K, ROUILLER, E. M

    Published in Experimental brain research (01-12-2003)
    “…To study neural adaptation as a function of stimulus intensity, auditory near-field evoked potentials were recorded from the ventral cochlear nucleus in awake…”
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    Conference Proceeding Journal Article
  17. 17

    Effects of dorsolateral prefrontal cortex lesion on motor habit and performance assessed with manual grasping and control of force in macaque monkeys by Badoud, S., Borgognon, S., Cottet, J., Chatagny, P., Moret, V., Fregosi, M., Kaeser, M., Fortis, E., Schmidlin, E., Bloch, J., Brunet, J. F., Rouiller, E. M.

    Published in Brain Structure and Function (01-04-2017)
    “…In the context of an autologous adult neural cell ecosystem (ANCE) transplantation study, four intact adult female macaque monkeys underwent a unilateral…”
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  18. 18

    Variable Interhemispheric Asymmetry in Layer V of the Supplementary Motor Area following Cervical Hemisection in Adult Macaque Monkeys by Contestabile, A, Colangiulo, R, Lucchini, M, Rouiller, E M, Schmidlin, E

    Published in eNeuro (01-09-2020)
    “…Motor cortical areas from both hemispheres play a role during functional recovery after a unilateral spinal cord injury (SCI). However, little is known about…”
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  19. 19

    Thalamocortical and the dual pattern of corticothalamic projections of the posterior parietal cortex in macaque monkeys by Cappe, C, Morel, A, Rouiller, E.M

    Published in Neuroscience (25-05-2007)
    “…Abstract The corticothalamic projection includes a main, modulatory projection from cortical layer VI terminating with small endings whereas a less numerous,…”
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  20. 20

    Neural activity of supplementary and primary motor areas in monkeys and its relation to bimanual and unimanual movement sequences by Kazennikov, O, Hyland, B, Corboz, M, Babalian, A, Rouiller, E.M, Wiesendanger, M

    Published in Neuroscience (01-03-1999)
    “…A chronic single-unit study of motor cortical activity was undertaken in two monkeys trained to perform a bimanually coordinated task. The hypothesis was…”
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