Search results for "Red Nucleus"

showing 4 items of 4 documents

Computation of inverse functions in a model of cerebellar and reflex pathways allows to control a mobile mechanical segment.

2003

Abstract The command and control of limb movements by the cerebellar and reflex pathways are modeled by means of a circuit whose structure is deduced from functional constraints. One constraint is that fast limb movements must be accurate although they cannot be continuously controlled in closed loop by use of sensory signals. Thus, the pathways which process the motor orders must contain approximate inverse functions of the bio-mechanical functions of the limb and of the muscles. This can be achieved by means of parallel feedback loops, whose pattern turns out to be comparable to the anatomy of the cerebellar pathways. They contain neural networks able to anticipate the motor consequences …

CerebellumEfferentMovementModels NeurologicalSensory systemOlivary NucleusCerebellar CortexArtificial IntelligenceCerebellumNeural PathwaysReflexmedicineSet (psychology)Muscle SkeletalRed NucleusMotor NeuronsNeuronsArtificial neural networkGeneral NeuroscienceSupervised learningExtremitiesBiomechanical Phenomenamedicine.anatomical_structureMemory Short-TermCerebellar NucleiCerebellar cortexReflexNeural Networks ComputerPsychologyNeuroscienceAlgorithmsMuscle ContractionNeuroscience
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EFFERENT CONNECTIONS OF THE CEREBELLUM OF THE WEAKLY ELECTRIC FISH EIGENMANNIA SP. (GYMNOTODEI)

1981

An efferent connection of lobus caudalis cells of the cerebellum of the electric fish Eigenmannia sp. has been verified by means of electrical stimulation and recording techniques. Stimulating in the lobus caudalis, an orthodromic activation has been found in the reticular formation of the midbrain tegmentum. Switching recording and stimulating electrodes led to an antidromic activation in cells of the lobus caudalis. The area identified in the midbrain corresponds to what, in higher vertebrates, is called the red nucleus.

LobusMidbrainbiologyChemistryRed nucleusEfferentMidbrain tegmentumAnatomybiology.organism_classificationReticular formationNeuroscienceElectric fishAntidromic
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Influence of rubrospinal tract and the adjacent mesencephalic reticular formation on the activity of medullary respiratory neurons and the phrenic ne…

1988

Suprapontine brain sites acting on the central respiratory system have been demonstrated to give rise to inspiratory as well as expiratory facilitatory effects. In the present study the inspiratory inhibitory effect which has been reported in the cat to be elicited consistently by electrical stimulation of the rubrospinal tract and the adjacent mesencephalic reticular formation was examined in the urethane-anaesthetized rabbit. Stimulation of these sites with single electrical shocks of moderate intensity induced a short latency (onset after 3.0 ms) transient (duration: 29 ms) inhibition of the phrenic nerve activity (PHR). Short volleys of stimuli applied in mid- to late-inspiration led to…

MalePhysiologyRed nucleusClinical BiochemistryPneumotaxic centerReticular formationPhysiology (medical)Neural PathwaysmedicineAnimalsRed NucleusPhrenic nerveNeuronsMedulla Oblongatabusiness.industryReticular FormationRespiratory CenterSpinal cordElectric StimulationPonsPhrenic Nervemedicine.anatomical_structureSpinal CordFemaleRabbitsbusinessOrthodromicNeuroscienceRubrospinal tractPfl�gers Archiv European Journal of Physiology
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Afferents to the red nucleus in the lizardPodarcis hispanica: Putative pathways for visuomotor integration

1999

The afferents to the red nucleus from visual and nonvisual forebrain centers have been investigated in the lizard Podarcis hispanica by using both retrograde and anterograde transport of tracers. Because the red nucleus constitutes a key structure in the limb premotor system, these sensory afferents probably are involved in visuomotor and other forms of sensorimotor integration. After tracer injections aimed at the red nucleus, retrograde labeling was found in the reticular thalamus, the subthalamus, the nucleus of the posterior commissure, as well as in two retinorecipient nuclei, namely, the ventral lateral and pretectal geniculate nuclei, where labeled cells are especially abundant. Thes…

biologyOptic tractRed nucleusGeneral NeuroscienceThalamusSubthalamusAnatomybiology.organism_classificationPodarcis hispanicaAnterograde tracingmedicine.anatomical_structureGeniculatemedicinePretectal areaNeuroscienceThe Journal of Comparative Neurology
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