Search results for "Brain research"

showing 8 items of 8 documents

Engineering of Adult Neurogenesis and Gliogenesis

2016

Neural stem/progenitor cells (NSPCs) retain their ability to generate newborn neurons throughout life in the mammalian brain. Here, we describe how recently developed virus- and transgenesis-based techniques will help us (1) to understand the functional effects of neurogenesis in health and disease, (2) to design novel approaches to harness the potential for NSPC-associated endogenous repair, and (3) to induce the generation of neurons outside the main neurogenic niches in the adult brain.

0301 basic medicineNeurogenesisCellular differentiationPhysiology610 Medicine & healthBiologyGeneral Biochemistry Genetics and Molecular BiologyMice03 medical and health sciencesNeural Stem Cells1300 General Biochemistry Genetics and Molecular BiologyAnimalsHumansProgenitor cellCell ProliferationGliogenesis10242 Brain Research InstituteNeurogenesisBrainCell DifferentiationMammalian brainTechniquesNeural stem cell030104 developmental biology570 Life sciences; biologyNeuroscience
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Layer-Specific Refinement of Sensory Coding in Developing Mouse Barrel Cortex

2017

Rodent rhythmic whisking behavior matures during a critical period around 2 weeks after birth. The functional adaptations of neocortical circuitry during this developmental period remain poorly understood. Here, we characterized stimulus-evoked neuronal activity across all layers of mouse barrel cortex before, during, and after the onset of whisking behavior. Employing multi-electrode recordings and 2-photon calcium imaging in anesthetized mice, we tested responses to rostro-caudal whisker deflections, axial "tapping" stimuli, and their combination from postnatal day 10 (P10) to P28. Within this period, whisker-evoked activity of neurons displayed a general decrease in layer 2/3 (L2/3) and …

2805 Cognitive NeuroscienceMale0301 basic medicineNeurogenesisCognitive NeurosciencePeriod (gene)2804 Cellular and Molecular Neuroscience610 Medicine & healthSensory systemStimulationBiologySomatosensory system03 medical and health sciencesCellular and Molecular Neuroscience0302 clinical medicineCalcium imagingPhysical StimulationAnimalsPremovement neuronal activityNeuronsAfferent PathwaysNeuronal Plasticity10242 Brain Research InstituteWhisking in animalsSomatosensory CortexBarrel cortexMice Inbred C57BL030104 developmental biologyAnimals NewbornVibrissae570 Life sciences; biologyFemaleSensory DeprivationNeuroscience030217 neurology & neurosurgery
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Impaired control of an action after supplementary motor area lesion: A case study

2000

The kinematics of the action formed by reaching-grasping an object and placing it on a second target was studied in a patient who suffered from an acute vascular left brain lesion, which affected the Supplementary Motor Area proper (SMA-proper) (Matelli M, Luppino G. Thalamic input to mesial and superior area 6 in the macaque monkey. Journal of Comparative Neurology 1996;372:59-87, Matelli M, Luppino G, Fogassi L, Rizzolatti G. Thalamic input to inferior area 6 and area 4 in the macaque monkey. Journal of Comparative Neurology 1989;280:468-488), and in five healthy control subjects. The reach kinematics of the controls was affected by the positions of both the reaching-grasping and the plac…

AdultMaleMovement disordersKinematicsCognitive NeuroscienceThalamusAccelerationExperimental and Cognitive PsychologyLateralization of brain functionFunctional LateralityBehavioral NeuroscienceBasal gangliamedicineReaction TimeHumansExperimental Brain ResearchSupplementary motor areaHand StrengthMotor CortexMotor controlReaching-graspingBody movementRecovery of FunctionMiddle AgedMagnetic Resonance ImagingSupplementary motor area properFrontal LobeStrokemedicine.anatomical_structureMotor SkillsSupplementary motor area proper Action Reaching±grasping KinematicsActionArmAtaxiaFemalemedicine.symptomPsychologyNeuroscienceReaching±grasping
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ADVANCED BIO-ELECTROMAGNETIC NUMERICAL MODELLING AND ICT FOR HUMAN BRAIN RESEARCH

2016

Functional imaging is used in the research area neurological, neurophysiology and cognitive psychology, for the diagnosis of diseases metabolic and for the detection of thin / squamous lesions (eg Alzheimer's disease) and for the development of neural interfaces (brain-computer interfaces - BCI).

Bio-electromagnetics human brain researchSettore ING-IND/31 - ElettrotecnicaSettore MAT/08 - Analisi Numerica
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Tonically Active Neurons in the Monkey Striatum are Sensitive to Sensory Events in a Manner that Reflects their Predictability in Time

2002

It is now well established that tonically active neurons (TANs) in the monkey striatum respond to motivationally relevant sensory events, such as conditioned stimuli to which the animal had to react correctly to obtain reward. Recent findings obtained in our laboratory suggested that stimulus prediction may influence the responsiveness of the TANs. In the present study we specifically investigated the effects of temporal aspects of prediction on the responses of single TANs recorded both in the caudate nucleus and putamen of two macaque monkeys. Three different behavioral situations were employed: (1) an instrumental task, in which a visual stimulus triggering a rewarded movement was preced…

CommunicationExperimental Brain Researchbiologybusiness.industryPutamenCaudate nucleusClassical conditioningSensory systemStriatumStimulus (physiology)Macaquebiology.animalbusinessPsychologyNeurosciencepsychological phenomena and processes
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Brain Research Reveals Automatic Musical Memory Functions in Children

2009

Even though music has special meanings and values compared to other sounds, it is nonetheless processed in the brain via partly the same neural networks that are built to process all kinds of sounds. The development of these brain areas depends on the input: on the sounds that a child is exposed to and chooses to attend to. We present two brain research paradigms that can be used to assess the specialization of the brain for musical sounds, and show promising results with these paradigms in a group of young children who have music as their hobby.

General NeuroscienceBrainMismatch negativityBrain researchMusicalGeneral Biochemistry Genetics and Molecular BiologyHistory and Philosophy of ScienceMemoryEvent-related potentialChild PreschoolSpecialization (functional)HumansMemory functionsPsychologyMusicCognitive psychologyAnnals of the New York Academy of Sciences
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Aerobic fitness, but not physical activity, is associated with grey matter volume in adolescents.

2019

Higher levels of aerobic fitness and physical activity are linked to beneficial effects on brain health, especially in older adults. The generalizability of these earlier results to young individuals is not straightforward, because physiological responses (such as cardiovascular responses) to exercise may depend on age. Earlier studies have mostly focused on the effects of either physical activity or aerobic fitness on the brain. Yet, while physical activity indicates the amount of activity, aerobic fitness is an adaptive state or attribute that an individual has or achieves. Here, by measuring both physical activity and aerobic fitness in the same study, we aimed to differentiate the assoc…

GerontologyMalephysical activityBehavioral Neuroscience0302 clinical medicinenuoretExercise/physiologyMedicinemagneettitutkimusaivotutkimusGray Matterta315Childaerobic fitness0303 health sciencesBrain Mappingcardiorespiratory fitnesssydänmagneettikuvausMagnetic Resonance Imagingbrain researchAdolescencemedicine.anatomical_structureaerobinen suorituskykyFemaleaivotfyysinen aktiivisuusAdolescentbrainPhysical activityGrey matterta311203 medical and health sciencesMagnetic resonance imagingAerobic exerciseHumansGeneralizability theoryBrain/pathologyCardiorespiratory fitnessExerciseBeneficial effects030304 developmental biologyAgedbusiness.industryPhysical activityaerobic capacityAccelerometeraccelerometerVolume (thermodynamics)adolescenceSedentary Behaviorbusiness030217 neurology & neurosurgeryGray Matter/physiologyBehavioural Brain Research
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Early auditory processing in musicians and dancers during a contemporary dance piece

2016

AbstractThe neural responses to simple tones and short sound sequences have been studied extensively. However, in reality the sounds surrounding us are spectrally and temporally complex, dynamic and overlapping. Thus, research using natural sounds is crucial in understanding the operation of the brain in its natural environment. Music is an excellent example of natural stimulation which, in addition to sensory responses, elicits vast cognitive and emotional processes in the brain. Here we show that the preattentive P50 response evoked by rapid increases in timbral brightness during continuous music is enhanced in dancers when compared to musicians and laymen. In dance, fast changes in brigh…

PITCHMaleDanceEmotionsMismatch negativitydancersContemporary dance0302 clinical medicineCognitionNatural (music)aivotutkimusNatural soundsEvoked Potentialsauditory processingmedia_commonN100muusikotMultidisciplinarynatural soundsBRAIN RESPONSES05 social sciencesmusiciansBrainChoreography (dance)Magnetic Resonance Imagingbrain researchMUSICAL EMOTIONSta6131Auditory PerceptionFemaleTEST-RETEST RELIABILITYPsychologyCognitive psychologyAdultCORTEX515 Psychologymedia_common.quotation_subjectmusiikkita3112050105 experimental psychologyArticle03 medical and health sciencestanssijatPerceptionneural responsesNONMUSICIANSHumansMISMATCH NEGATIVITY0501 psychology and cognitive sciencesmusicDancingPERCEPTIONP503112 Neurosciences030217 neurology & neurosurgery
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