Search results for " Monosynaptic"

showing 3 items of 3 documents

Evidence of a contralateral motor influence on reciprocal inhibition in man

1992

The role of contralateral movement on both H reflex and reciprocal inhibition was studied. In normal men H reflex was induced by median nerve stimulation. Reciprocal inhibition was achieved through stimulation of the antagonist radial nerve. On this basis the effects of contralateral arm movement were analized. Furthermore the putative influence of exteroceptive origin was also verified by means of digit stimulation. Results showed that contralateral arm movement did not affect H reflex amplitude; on the contrary, it was able to enhance reciprocal inhibition induced by extensors on flexors. Study of cutaneous afferents demonstrated that contralateral digit stimulation failed to elicit modif…

AdultAdolescentInterneuronMovementWithdrawal reflexStimulationStimulus (physiology)H-ReflexInterneuronsSkin Physiological PhenomenaReflexHumansMedicineBiological PsychiatryRadial nerveSkinMotor NeuronsReflex Monosynapticbusiness.industryGeneral NeuroscienceAntagonistReciprocal inhibitionNeural InhibitionElectric StimulationPsychiatry and Mental healthmedicine.anatomical_structureNeurologyRadial NerveNeurology (clinical)H-reflexbusinessNeuroscienceJournal of Neural Transmission - Parkinson's Disease and Dementia Section
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Changes of electrically elicited reflexes in hand and forearm muscles in man.

1987

Cutaneo-muscular reflexes with short and long latency excitatory phases following digital nerve stimulation were observed in the first dorsal interosseus muscle of the hand in healthy subjects. The short latency reflex was obtained also with the H-reflex method in the flexor carpi radialis muscle, stimulating the median nerve, with a mean latency (+/- SE) of 15.4 +/- 0.5 ms. The height of the subject correlated with the H-reflex latency. The amplitudes of maximal M-response and maximal H-reflex were higher in athletes than in normals. During weak voluntary contraction of the muscle studied the 50% H-reflex amplitude increased and during passive stretching of wrist flexors the resting amplit…

AdultMaleFlexor carpi radialis musclePhysical Therapy Sports Therapy and RehabilitationPassive stretchingElectromyographyH-ReflexForearmmedicineHumansLatency (engineering)medicine.diagnostic_testbusiness.industryElectromyographyReflex MonosynapticMusclesRehabilitationAnatomyHandMedian nerveElectric Stimulationbody regionsForearmmedicine.anatomical_structurePhysical FitnessReflexUpper limbFemalebusinessMuscle ContractionAmerican journal of physical medicine
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Modulation of spinal cord excitability by subthreshold repetitive transcranial magnetic stimulation of the primary motor cortex in humans.

2001

Repetitive transcranial magnetic stimulation (rTMS) allows the modulation of intra-cortical excitability and may therefore affect the descending control of spinal excitability. We applied rTMS at subthreshold intensity and 1 Hz frequency for 10 min to the left primary motor cortex representation of the flexor carpi radialis muscle (FCR) in 10 subjects and assessed the H and M responses to median nerve stimulation before and after the rTMS. Following rTMS, H wave thresholds significantly reduced by ∼20%. Maximal H but not M wave amplitude significantly increased over the baseline, so that H/M amplitude ratio was increased by 41%. Sham stimulation did not induce any noticeable change in M or …

AdultMalemedicine.medical_treatmentFlexor carpi radialis muscleNeural ConductionPyramidal TractsStimulationElectric Stimulation TherapyReflex modulationMembrane Potentialsmental disordersmedicineReaction TimeHumansH reflexMuscle SkeletalNeuronsPyramidal tractsMovement Disordersbusiness.industryElectromyographyReflex Monosynapticmusculoskeletal neural and ocular physiologyGeneral NeuroscienceMotor CortexSpinal cordTranscranial Magnetic StimulationTranscranial magnetic stimulationmedicine.anatomical_structurenervous systemSpinal CordMuscle SpasticityAnesthesiaPrimary motor cortexH-reflexbusinessNeurosciencepsychological phenomena and processesMotor cortexMuscle ContractionNeuroreport
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