Search results for "balance control"

showing 4 items of 4 documents

What are the effects of the aging of the neuromuscular system on postural stability?

2015

International audience; Aging is frequently associated with a decreased postural stability, essentially after 60 years, leading to an increased risk of falling. In this article we propose to highlight the influence of the aging of the neuromuscular system on postural stability when standing upright. To maintain balance while standing upright, human needs to control the activity of ankle muscles and particularly the plantar flexors. During the aging process, the performance of these muscles are strongly altered. It is commonly observed large deficits in elderly people with history of falls. Some authors reported an inverse correlation between the amplitude of postural sway and the capacity o…

Central Nervous SystemMale030506 rehabilitationnursing-home residents0302 clinical medicineelderly adultsElderly peopleolder-adultsrisk-factorsPostural BalanceAged 80 and overNeuropsychology and Physiological Psychologymedicine.anatomical_structurePostural stabilitytriceps suraeFemale[SDV.NEU]Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]0305 other medical scienceFalling (sensation)medicine.medical_specialtysoleus h-reflexfallmechanical-propertieshuman skeletal-musclePhysical exercise03 medical and health sciencesPhysical medicine and rehabilitationankle muscleslength-tension relationshipmedicineHumansInverse correlationMuscle SkeletalBiological PsychiatryBalance (ability)Agedbusiness.industryagingage-related-changesbalance controlIncreased riskpostural stability[ SDV.NEU ] Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]Physical therapyAccidental FallsNeurology (clinical)Geriatrics and GerontologyAnklebusiness030217 neurology & neurosurgery
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Effects of different lower-limb sensory stimulation strategies on postural regulation : A systematic review and meta-analysis

2017

Systematic reviews of balance control have tended to only focus on the effects of single lower-limb stimulation strategies, and a current limitation is the lack of comparison between different relevant stimulation strategies. The aim of this systematic review and meta-analysis was to examine evidence of effects of different lower-limb sensory stimulation strategies on postural regulation and stability. Moderate- to high- pooled effect sizes (Unbiased (Hedges’ g) standardized mean differences (SMD) = 0.31–0.66) were observed with the addition of noise in a Stochastic Resonance Stimulation Strategy (SRSS), in three populations (i.e., healthy young adults, older adults, and individuals with lo…

lower-limb sensory stimulationpostural regulationsystematic reviewmeta-analyysibalance controlstability
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Effects of Textured Compression Socks on Postural Control in Physically Active Elderly Individuals

2014

The aim of this investigation was to analyze the role of textured compression socks on somatosensory function in a sample of physically active elderly individuals when performing a static balancing task. Both textured insoles and athletic tape are deemed to be beneficial for enhancing proprioception because of the capacity for exploiting availability of “sensorimotor system noise”, which enhances movement control and individuals’ joint position perception. It was hypothesized that the compression feature in knee length socks would provide greater stimulation to lower leg mechanoreceptors, and help participants achieve better balance control. Participants (N=8) performed a 30-s Romberg stati…

medicine.medical_specialtyProprioceptioncomputer.internet_protocolbalance controlRecurrence Quantification Analysis (RQA)Poison controlCompression socksGeneral Medicinecompression socksBarefootPhysical medicine and rehabilitationSOCKSMultivariate analysis of varianceRecurrence quantification analysisBalance Control.medicineMain effectta315Recurrence plotcomputerEngineering(all)SimulationMathematicsProcedia Engineering
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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
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