Search results for "Neural Pathways"

showing 10 items of 164 documents

Thalamic relay or cortico-thalamic processing? Old question, new answers.

2013

Ascending and descending information is relayed through the thalamus via strong, “driver” pathways. According to our current knowledge, different driver pathways are organized in parallel streams and do not interact at the thalamic level. Using an electron microscopic approach combined with optogenetics and in vivo physiology, we examined whether driver inputs arising from different sources can interact at single thalamocortical cells in the rodent somatosensory thalamus (nucleus posterior, POm). Both the anatomical and the physiological data demonstrated that ascending driver inputs from the brainstem and descending driver inputs from cortical layer 5 pyramidal neurons converge and interac…

MaleCognitive Neuroscienceposterior-medial nucleussupralinearThalamusSensory systemrelaylaw.inventionlayer 5BsomatosensoryCellular and Molecular NeuroscienceThalamusRelaylawNeural PathwaysmedicineAnimalstop–down processingtrigeminalSymptom onsetCerebral CortexNeuronsArticlesmedicine.anatomical_structureCerebral cortexThalamic structureSynapsesPsychologyNeuroscienceCerebral cortex (New York, N.Y. : 1991)
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Cross-frequency coupling between gamma oscillations and deep brain stimulation frequency in Parkinson's disease.

2020

Abstract The disruption of pathologically enhanced beta oscillations is considered one of the key mechanisms mediating the clinical effects of deep brain stimulation on motor symptoms in Parkinson’s disease. However, a specific modulation of other distinct physiological or pathological oscillatory activities could also play an important role in symptom control and motor function recovery during deep brain stimulation. Finely tuned gamma oscillations have been suggested to be prokinetic in nature, facilitating the preferential processing of physiological neural activity. In this study, we postulate that clinically effective high-frequency stimulation of the subthalamic nucleus imposes cross-…

MaleDeep brain stimulationmedicine.medical_treatmentDeep Brain StimulationStimulationcross-frequency couplingsource analysis610 Medicine & healthArticlePremotor cortexvolume of tissue activatedSubthalamic NucleusCerebellumGamma RhythmNeural PathwaysmedicineGamma RhythmHumans610 Medicine & healthAgedMovement DisordersSupplementary motor areaResting state fMRIChemistryMotor CortexElectroencephalographyParkinson DiseaseMiddle AgedSubthalamic nucleusmedicine.anatomical_structureFemaleNeurology (clinical)gamma oscillationsBeta RhythmNeuroscienceAlgorithmsMotor cortex
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rTMS of supplementary motor area modulates therapy-induced dyskinesias in Parkinson disease

2005

The neural mechanisms and circuitry involved in levodopa-induced dyskinesia are unclear. Using repetitive transcranial magnetic stimulation (rTMS) over the supplementary motor area (SMA) in a group of patients with advanced Parkinson disease, the authors investigated whether modulation of SMA excitability may result in a modification of a dyskinetic state induced by continuous apomorphine infusion. rTMS at 1 Hz was observed to markedly reduce drug-induced dyskinesias, whereas 5-Hz rTMS induced a slight but not significant increase.

MaleDyskinesia Drug-InducedApomorphinemedicine.medical_treatmentDopamineNeurological disorderNOCentral nervous system diseaseDegenerative diseasemental disordersNeural PathwaysmedicineHumansAgedSupplementary motor areaDyskinesiabusiness.industryDyskinesia Drug-Induced; Treatment Outcome; Male; Middle Aged; Female; Humans; Parkinson Disease; Motor Cortex; Recovery of Function; Apomorphine; Dopamine Agonists; Neural Pathways; Aged; Transcranial Magnetic Stimulation; DopamineMotor CortexParkinson DiseaseRecovery of FunctionMiddle Agedmedicine.diseaseSMA*Transcranial Magnetic Stimulationnervous system diseasesTranscranial magnetic stimulationApomorphinemedicine.anatomical_structureTreatment OutcomeDyskinesiaDrug-InducedDopamine AgonistsFemaleSettore MED/26 - NeurologiaNeurology (clinical)medicine.symptombusinessNeurosciencemedicine.drug
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Alterations in striatal neuropeptide mRNA produced by repeated administration of L-DOPA, ropinirole or bromocriptine correlate with dyskinesia induct…

2002

Chronic administration of L-DOPA to MPTP-treated common marmosets induces marked dyskinesia while repeated administration of equivalent antiparkisonian doses of ropinirole and bromocriptine produces only mild involuntary movements. The occurrence of dyskinesia has been associated with an altered balance between the direct and indirect striatal output pathways. Using in situ hybridisation histochemistry, we now compare the effects of these drug treatments on striatal preproenkephalin-A (PPE-A) and adenosine A(2a) receptor mRNA expression as markers of the indirect pathway and striatal preprotachykinin (PPT) mRNA and preproenkephalin-B (PPE-B, prodynorphin) mRNA expression as markers of the d…

MaleDyskinesia Drug-Inducedmedicine.medical_specialtyIndolesCaudate nucleusStriatumIndirect pathway of movementAntiparkinson AgentsLevodopachemistry.chemical_compoundDopamine Uptake InhibitorsParkinsonian DisordersTachykininsInternal medicineNeural PathwaysmedicineAnimalsheterocyclic compoundsRNA MessengerProtein PrecursorsBromocriptineGeneral NeuroscienceMPTPPutamenNeuropeptidesReceptors Purinergic P1CallithrixEnkephalinsMazindoldopamine agonists peptide mRNAs L-DOPA 1-methyl-4-phenyl-1236-tetrahydropyridine primates dyskinesiaBromocriptinenervous system diseasesNeostriatumRopiniroleEndocrinologynervous systemchemistryDyskinesiaSettore BIO/14 - FarmacologiaFemalemedicine.symptommedicine.drugNeuroscience
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Electrolytic lesion of the nucleus incertus retards extinction of auditory conditioned fear

2013

Fear memory circuits in the brain function to allow animals and humans to recognize putative sources of danger and adopt an appropriate behavioral response; and research on animal models of fear have helped reveal the anatomical and neurochemical nature of these circuits. The nucleus (n.) incertus in the dorsal pontine tegmentum provides a strong GABAergic projection to forebrain ‘fear centers’ and is strongly activated by neurogenic stressors. In this study in adult male rats, we examined the effect of electrolytic lesions of n. incertus on different stages of the fear conditioning-extinction process and correlated the outcomes with anatomical data on the distribution of n. incertus-derive…

MaleElectrolytic lesionConditioning ClassicalNerve Tissue ProteinsAmygdalaExtinction PsychologicalRats Sprague-DawleyBehavioral NeuroscienceS100 Calcium Binding Protein GPonsNeural PathwaysmedicineAnimalsFear conditioningHabituationFear memoryNeuronsFear processing in the brainBehavior AnimalRelaxinExtinctionFearExtinction (psychology)AmygdalaNucleus IncertusRatsFreezing behaviormedicine.anatomical_structureAcoustic StimulationCalbindin 2Relaxin-3PsychologyNucleus incertusNeuroscienceBasolateral amygdalaBehavioural Brain Research
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Nucleus incertus contribution to hippocampal theta rhythm generation.

2006

The hippocampal theta rhythm is generated by the pacemaker activity of the medial septum-diagonal band of Broca (MS/DBB) neurons. These nuclei are influenced by brainstem structures that modulate the theta rhythm. The aim of the present work is to determine whether the nucleus incertus (NI), which has important anatomical connections with the MS/DBB, contributes to the hippocampal theta rhythm generation in rats. Hippocampal field activity was recorded in urethane-anaesthetized rats. Electrical stimulation of the NI not only evoked theta rhythm in the hippocampus, but also decreased the amplitude of delta waves. Unit recordings in the NI revealed either a non-rhythm discharge pattern in mos…

MaleHippocampusStimulationHippocampal formationDiagonal Band of BrocaHippocampuschemistry.chemical_compoundRhythmMesencephalonNeural PathwaysmedicineAnimalsRats WistarTheta RhythmBrain MappingGeneral NeuroscienceNucleus IncertusDiagonal band of BrocaElectric StimulationRatsmedicine.anatomical_structurenervous systemMuscimolchemistryFemaleSeptum of BrainNeuroscienceNucleusMicroelectrodesThe European journal of neuroscience
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Information decomposition of multichannel EMG to map functional interactions in the distributed motor system

2019

AbstractThe central nervous system needs to coordinate multiple muscles during postural control. Functional coordination is established through the neural circuitry that interconnects different muscles. Here we used multivariate information decomposition of multichannel EMG acquired from 14 healthy participants during postural tasks to investigate the neural interactions between muscles. A set of information measures were estimated from an instantaneous linear regression model and a time-lagged VAR model fitted to the EMG envelopes of 36 muscles. We used network analysis to quantify the structure of functional interactions between muscles and compared them across experimental conditions. Co…

MaleInformation transferMuscle networkNeurologyTransfer entropyComputer scienceSocial SciencesPostural controlFunctional connectivity0302 clinical medicineCONNECTIVITYNeural PathwaysDecomposition (computer science)Medicine and Health Sciencesmotor controlMuscle activityPostural Balance0303 health sciencesMuscle networksConditional mutual information05 social sciencesmedicine.anatomical_structureNeurologySYNCHRONIZATIONFemaleSpinal reflexAdultCORTEXmedicine.medical_specialtyCognitive NeurosciencePostureCentral nervous systemORGANIZATIONCognitive neuroscienceGRANGER CAUSALITY050105 experimental psychology03 medical and health sciencesReflexMotor systemCOHERENCEBiological neural networkmedicineHumans0501 psychology and cognitive sciencesMuscle SkeletalSet (psychology)signal processing030304 developmental biologyIDENTIFICATIONElectromyographyPostural controlMotor controlINPUTSMUSCLE SYNERGIESBRAIN NETWORKSSettore ING-INF/06 - Bioingegneria Elettronica E InformaticaNeuroscience030217 neurology & neurosurgery
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Drosophila female courtship and mating behaviors: sensory signals, genes, neural structures and evolution.

2010

International audience; Interest in Drosophila courtship behavior has a long-standing tradition, starting with the works by Sturtevant in 1915, and by Bastock and Manning in the 50s. The neural and genetic base of Drosophila melanogaster courtship behavior has made big strides in recent years, but the studies on males far outnumber those on females. Recent technical developments have made it possible to begin to unravel the biological substrates underlying the complexity of Drosophila female sexual behavior and its decisive effect on mating success. The present review focus more on the female side and summarizes the sensory signals that the male sends, using multiple channels, and which neu…

MaleMESH: Signal Transduction[ SDV.AEN ] Life Sciences [q-bio]/Food and NutritionMESH: NeuronsCourtshipSexual Behavior AnimalMESH : Neural PathwaysMESH : Biological EvolutionNeural PathwaysMESH : Drosophila melanogasterDrosophila ProteinsMESH : FemaleMESH: AnimalsMatingMESH: Sexual Behavior Animalmedia_commonNeuronsbiologyGeneral NeuroscienceBiological EvolutionDrosophila melanogasterFemaleDrosophila melanogasterDrosophila ProteinSignal TransductionMESH: Drosophila ProteinsMESH : Malemedia_common.quotation_subjectMESH: CourtshipSensory systemMESH: Biological EvolutionMESH : NeuronsMESH: Drosophila melanogasterBiological neural networkAnimalsDrosophila (subgenus)MESH : Sexual Behavior AnimalMESH : Signal TransductionMESH : CourtshipCourtship displayMESH: Neural PathwaysfungiCourtshipMESH : Drosophila Proteinsbiology.organism_classificationMESH: MaleMESH : AnimalsNeuroscienceMESH: Female[SDV.AEN]Life Sciences [q-bio]/Food and Nutrition
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Antiaggressive and motor effects of haloperidol show different temporal patterns in the development of tolerance.

1993

Abstract The study of the temporal course of tolerance development was used as a means to separate different aspects of the action of haloperidol on social behavior. Agonistic behavior was studied in isolated male mice that confronted standard opponents (anosmic and grouped conspecifics) in a neutral area. The aggressive and motor behaviors of the experimental animals were evaluated 30 min or 24 h either after a single injection of haloperidol (0.4 mg/kg) or following the last of a series of 15 or 30 injections. When animals were evaluated 30 min after the haloperidol injection, no tolerance to the antiaggressive effects was evident. The action on immobility, on the contrary, showed a clear…

MaleMale miceExperimental and Cognitive PsychologyPharmacologyMotor ActivityDrug Administration ScheduleBehavioral NeuroscienceMiceNeural PathwaysAgonistic behaviourHaloperidolmedicineAnimalsDose-Response Relationship DrugDrug administrationBrainSingle injectionHaloperidol injectionBehavioral analysisAggressionHaloperidolPsychologyArousalNeuroscienceAgonistic Behaviormedicine.drugPhysiologybehavior
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Anatomical evidence for a ponto-septal pathway via the nucleus incertus in the rat.

2008

Abstract Hippocampal theta activity is involved in sensory–motor integration and constitutes a functional basis for mnemonic functions. The medial septum–diagonal band of Broca (MS/DBv) is a key structure as pacemaker of the oscillation. In addition, some brainstem reticular structures are crucial for the activation of MS/DBv. Specifically, the nucleus reticularis pontis oralis (RPO) is considered the most effective pontine site for eliciting theta rhythm. Nevertheless, its connection with the MS/DBv is not direct. A previous study by our group pointed out that the nucleus incertus (NI) could be considered as a relay in this multisynaptic pathway. From this study, the stimulation of RPO inc…

MaleModels AnatomicStilbamidinesHippocampusAction PotentialsHippocampal formationRats Sprague-DawleyPonsNeural PathwaysTegmentummedicineAnimalsMolecular BiologyBrain MappingChemistryGeneral NeuroscienceDextransNucleus IncertusDiagonal band of BrocaElectric StimulationRatsElectrophysiologymedicine.anatomical_structureReticular connective tissueFemaleSeptum of BrainNeurology (clinical)BrainstemNeuroscienceDevelopmental BiologyBrain research
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