0000000000359685

AUTHOR

Nijia Hu

0000-0001-5471-7873

showing 3 related works from this author

Modulations of corticospinal excitability following rapid ankle dorsiflexion in skill- and endurance-trained athletes

2022

Abstract Purpose Long-term sports training, such as skill and endurance training, leads to specific neuroplasticity. However, it remains unclear if muscle stretch-induced proprioceptive feedback influences corticospinal facilitation/inhibition differently between skill- and endurance-trained athletes. This study investigated modulation of corticospinal excitability following rapid ankle dorsiflexion between well-trained skill and endurance athletes. Methods Ten skill- and ten endurance-trained athletes participated in the study. Corticospinal excitability was tested by single- and paired-pulse transcranial magnetic stimulations (TMS) at three different latencies following passive rapid ankl…

stretch reflextraining adaptationPhysiologyPyramidal Tractsphysical exercisePhysiology (medical)transcranial magnetic stimulationHumansharjoitteluOrthopedics and Sports MedicineneuroplastisuusMuscle SkeletalmotoriikkaElectromyographytranskraniaalinen magneettistimulaatioPublic Health Environmental and Occupational HealthGeneral MedicineEvoked Potentials MotorTranscranial Magnetic StimulationharjoitusvasteEndurance Traininghermo-lihastoimintaAthletescorticospinal excitabilityrefleksitAnkleurheilijatEuropean Journal of Applied Physiology
researchProduct

Modulation of H-reflex and V-wave responses during dynamic balance perturbations

2023

AbstractMotoneuron excitability is possible to measure using H-reflex and V-wave responses. However, it is not known how the motor control is organized, how the H-reflex and V-wave responses modulate and how repeatable these are during dynamic balance perturbations. To assess the repeatability, 16 participants (8 men, 8 women) went through two, identical measurement sessions with ~ 48 h intervals, where maximal isometric plantar flexion (IMVC) and dynamic balance perturbations in horizontal, anterior–posterior direction were performed. Soleus muscle (SOL) neural modulation during balance perturbations were measured at 40, 70, 100 and 130 ms after ankle movement by using both H-reflex and V-…

V-wavehermo-lihastoimintaelektromyografiaGeneral Neurosciencetasapainodynamic balancerefleksitdynamic conditiontasapainoaistineural modulationH-reflexmotoriikkaExperimental Brain Research
researchProduct

Reliability of transcranial magnetic stimulation and H-reflex measurement during balance perturbation tasks

2022

Following ankle movement, posterior balance perturbation evokes short- (SLR ∼30–50 ms), medium- (MLR ∼50–60 ms), and long-latency responses (LLR ∼70–90 ms) in soleus muscle before voluntary muscle contraction. Transcranial magnetic stimulation (TMS) and Hoffmann-reflex (H-reflex) measurements can provide insight into the contributions of corticospinal and spinal mechanisms to each response. Motor evoked potential (MEP) and H-reflex responses have shown good reliability in some dynamic muscle contraction tasks. However, it is still unclear how reliable these methods are in dynamic balance perturbation and corticospinal modulation during long amplitude balance perturbation tasks. 14 subjects …

motor evoked potentialcorticospinal modulationtranskraniaalinen magneettistimulaatiotasapainovoluntary activationkehonhallintamittausmenetelmäthermo-lihastoimintadynamic balance controlrefleksitintraclass correlation coefficientstasapainoaistireliabiliteettimotoriikka
researchProduct