Search results for "Neural Pathways"

showing 10 items of 164 documents

Morphological Characterization of the Entire Interneuron Population Reveals Principles of Neuromere Organization in the Ventral Nerve Cord ofDrosophi…

2011

Decisive contributions to our understanding of the mechanisms underlying the development of the nervous system have been made by studies performed at the level of single, identified cells in the fruit flyDrosophila. While all the motor neurons and glial cells in thoracic and abdominal segments of theDrosophilaembryo have been individually identified, few of the interneurons, which comprise the vast majority of cells in the CNS, have been characterized at this level. We have applied a single cell labeling technique to carry out a detailed morphological characterization of the entire population of interneurons in abdominal segments A1–A7. Based on the definition of a set of spatial parameters…

Central Nervous SystemNervous systemCell typeInterneuronCD8 AntigensGreen Fluorescent ProteinsLIM-Homeodomain ProteinsModels NeurologicalStatistics as TopicPopulationCell CountBiologyFunctional LateralityAnimals Genetically ModifiedInterneuronsNeural PathwaysmedicineAnimalsDrosophila ProteinsAmino Acidseducationeducation.field_of_studyGeneral NeurosciencefungiArticlesNeuromereAxonsmedicine.anatomical_structureVentral nerve cordDrosophilaAxon guidanceNeuroscienceDrosophila ProteinTranscription FactorsThe Journal of Neuroscience
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Neuronal Activity Drives Localized Blood-Brain-Barrier Transport of Serum Insulin-like Growth Factor-I into the CNS

2010

Upon entry into the central nervous system (CNS), serum insulin-like growth factor-1 (IGF-I) modulates neuronal growth, survival, and excitability. Yet mechanisms that trigger IGF-I entry across the blood-brain barrier remain unclear. We show that neuronal activity elicited by electrical, sensory, or behavioral stimulation increases IGF-I input in activated regions. Entrance of serum IGF-I is triggered by diffusible messengers (i.e., ATP, arachidonic acid derivatives) released during neurovascular coupling. These messengers stimulate matrix metalloproteinase-9, leading to cleavage of the IGF binding protein-3 (IGFBP-3). Cleavage of IGFBP-3 allows the passage of serum IGF-I into the CNS thro…

Central Nervous SystemTime FactorsMicrodialysismedicine.medical_treatmentAction PotentialsStimulationFunctional LateralityBody TemperatureReceptor IGF Type 1chemistry.chemical_compoundNeural PathwaysPremovement neuronal activityDrug InteractionsInsulin-Like Growth Factor IMicroscopy ImmunoelectronReceptorCells CulturedNeuronsGeneral NeuroscienceSysneuro//purl.org/becyt/ford/3.1 [https]Protein TransportMedicina Básicamedicine.anatomical_structureMatrix Metalloproteinase 9Blood-Brain BarrierSIGNALING//purl.org/becyt/ford/3 [https]Arachidonic acidNeurogliaLow Density Lipoprotein Receptor-Related Protein-1CIENCIAS MÉDICAS Y DE LA SALUDNeuroscience(all)Central nervous systemNeurocienciasBiophysicsGlutamic AcidEnzyme-Linked Immunosorbent AssayNerve Tissue ProteinsBiologyBlood–brain barrierMOLNEUROmedicineAnimalsHumansImmunoprecipitationRats WistarAnalysis of VarianceGrowth factorEndothelial CellsTransporterCoculture TechniquesElectric StimulationSignalingRatsMolneurochemistryRegional Blood FlowVibrissaeSYSNEURODigoxigeninExcitatory Amino Acid AntagonistsNeuroscience
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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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Cortical Temperature Change: A Tool for Modulating Brain States?12

2016

Reduction in temperature depolarizes neurons by a partial closure of potassium channels but decreases the vesicle release probability within synapses. Compared with cooling, neuromodulators produce qualitatively similar effects on intrinsic neuronal properties and synapses in the cortex. We used this similarity of neuronal action in ketamine-xylazine-anesthetized mice and non-anesthetized mice to manipulate the thalamocortical activity. We recorded cortical electroencephalogram/local field potential (LFP) activity and intracellular activities from the somatosensory thalamus in control conditions, during cortical cooling and on rewarming. In the deeply anesthetized mice, moderate cortical co…

Cerebral CortexMalewaking stateHot TemperatureAction PotentialsNeuronal ExcitabilityElectroencephalographyBrain WavesCold TemperatureMice Inbred C57BLMicebrain statesThalamusBiological ClocksneuromodulationNeural PathwaysCommentaryepilepsyAnimalsFemalesleepslow-wave rhythmseNeuro
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The subplate and early cortical circuits.

2010

The developing mammalian cerebral cortex contains a distinct class of cells, subplate neurons (SPns), that play an important role during early development. SPns are the first neurons to be generated in the cerebral cortex, they reside in the cortical white matter, and they are the first to mature physiologically. SPns receive thalamic and neuromodulatory inputs and project into the developing cortical plate, mostly to layer 4. Thus SPns form one of the first functional cortical circuits and are required to relay early oscillatory activity into the developing cortical plate. Pathophysiological impairment or removal of SPns profoundly affects functional cortical development. SPn removal in v…

Cerebral CortexNeuronsNeuronal PlasticityGeneral NeuroscienceStem CellsCentral nervous systemOcular dominancemedicine.anatomical_structureVisual cortexCerebral cortexSubplateNeural PathwaysmedicineBiological neural networkAnimalsHumansPsychologyNeuroscienceCortical columnOcular dominance columnAnnual review of neuroscience
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The role of the claustrum in the bilateral control of frontal oculomotor neurons in the cat.

1991

The effect of claustrum (CL) stimulation on the spontaneous unitary activity of ipsi and contralateral frontal oculomotor neurons, was studied in chloralose-anaesthetized cats. A total of 205 units was bilaterally recorded in the medial oculomotor area, homologous of the primate "frontal eye fields"; 127 neurons were identified as projecting to the superior colliculus; for 33 of these last units stimulation of the ipsilateral CL provoked an excitatory effect lasting 10-25 ms and appearing with a latency of 5-15 ms; on 8 units the excitatory effect was followed by an inhibition lasting 100-250 ms. Ninety-eight of the 127 neurons were also tested through activation of the contralateral CL: 13…

Cerebral CortexNeuronsSuperior ColliculiOculomotor nerveGeneral NeuroscienceSuperior colliculusElectroencephalographyAnatomyFrontal eye fieldsBiologyCorpus callosumClaustrumBasal GangliaElectric StimulationStereotaxic Techniquesmedicine.anatomical_structureOculomotor NerveCerebral cortexStereotaxic techniqueNeural PathwaysmedicineExcitatory postsynaptic potentialCatsAnimalsNeuroscienceExperimental brain research
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Making Waves: Initiation and Propagation of Corticothalamic Ca2+ Waves In Vivo

2013

Corticothalamic slow oscillations of neuronal activity determine internal brain states. At least in the cortex, the electrical activity is associated with large neuronal Ca(2+) transients. Here we implemented an optogenetic approach to explore causal features of the generation of slow oscillation-associated Ca(2+) waves in the in vivo mouse brain. We demonstrate that brief optogenetic stimulation (3-20 ms) of a local group of layer 5 cortical neurons is sufficient for the induction of global brain Ca(2+) waves. These Ca(2+) waves are evoked in an all-or-none manner, exhibit refractoriness during repetitive stimulation, and propagate over long distances. By local optogenetic stimulation, we …

Cerebral CortexRefractory periodGeneral NeuroscienceNeuroscience(all)ThalamusMice TransgenicStimulationCortical neuronsBiologyOptogeneticsCortex (botany)Mice Inbred C57BLOptogeneticsMiceThalamusIn vivoNeural PathwaysAnimalsPremovement neuronal activityCalcium SignalingNeurosciencePhotic StimulationVisual CortexNeuron
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The cortical representation of pain.

1999

Anatomical and physiological studies in animals, as well as functional imaging studies in humans have shown that multiple cortical areas are activated by painful stimuli. The view that pain is perceived only as a result of thalamic processing has, therefore, been abandoned, and has been replaced by the question of what functions can be assigned to individual cortical areas. The following cortical areas have been shown to be involved in the processing of painful stimuli: primary somatosensory cortex, secondary somatosensory cortex and its vicinity in the parietal operculum, insula, anterior cingulate cortex and prefrontal cortex. These areas probably process different aspects of pain in para…

Cerebral CortexSecondary somatosensory cortexPainFunctional imagingAnesthesiology and Pain Medicinemedicine.anatomical_structureStimulus modalityNeurologySomatosensory evoked potentialCerebral cortexNeural PathwaysmedicineAnimalsHumansNeurology (clinical)PsychologyPrefrontal cortexInsulaNeuroscienceAnterior cingulate cortexPain
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Microsurgical Anatomy of the Insular Region and Operculoinsular Association Fibers and its Neurosurgical Application

2019

Objective To analyze the three-dimensional relationships of the operculoinsular compartments, using standard hemispheric and white matter fiber dissection and review the anatomy of association fibers related to the operculoinsular compartments of the Sylvian fissure and the main white matter tracts located deep into the insula. The secondary aim of this study was to improve the knowledge on this complex region to safely address tumor, vascular, and epilepsy lesions with an integrated perspective of the topographic and white matter fiber anatomy using 2D and 3D photographs. Methods Six cadaveric hemispheres were dissected. Two were fixed with formalin and the arteries were injected with red …

Cerebral CortexWhite Fiberbusiness.industryAnatomyCommissureWhite MatterWhite matter03 medical and health sciencesMicrosurgical anatomy0302 clinical medicinemedicine.anatomical_structure030220 oncology & carcinogenesismedicine.arteryNeural PathwaysMiddle cerebral arterymedicineHumansSurgeryEpilepsy surgeryNeurology (clinical)Cadaveric spasmbusinessInsula030217 neurology & neurosurgeryWorld Neurosurgery
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Satb2 Regulates Callosal Projection Neuron Identity in the Developing Cerebral Cortex

2008

SummarySatb2 is a DNA-binding protein that regulates chromatin organization and gene expression. In the developing brain, Satb2 is expressed in cortical neurons that extend axons across the corpus callosum. To assess the role of Satb2 in neurons, we analyzed mice in which the Satb2 locus was disrupted by insertion of a LacZ gene. In mutant mice, β-galactosidase-labeled axons are absent from the corpus callosum and instead descend along the corticospinal tract. Satb2 mutant neurons acquire expression of Ctip2, a transcription factor that is necessary and sufficient for the extension of subcortical projections by cortical neurons. Conversely, ectopic expression of Satb2 in neural stem cells m…

Chromatin ImmunoprecipitationNeuroscience(all)Electrophoretic Mobility Shift AssayMice TransgenicNerve Tissue ProteinsDEVBIOBiologyCorpus callosumMOLNEUROMiceNeural PathwaysmedicineAnimalsCells CulturedCerebral CortexNeuronsRegulation of gene expressionStem CellsGeneral NeuroscienceGene Expression Regulation DevelopmentalMatrix Attachment Region Binding ProteinsDNAEmbryo MammalianNeural stem cellChromatinmedicine.anatomical_structureAnimals NewbornBromodeoxyuridinenervous systemCerebral cortexRegulatory sequenceMutationCorticospinal tractEctopic expressionNeuroscienceTranscription Factors
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