Search results for "Shoes"

showing 10 items of 32 documents

The effects of high heeled shoes on female gait: a review.

2013

Walking is the most common form of human locomotion. From a motor control perspective, human bipedalism makes the task of walking extremely complex. For parts of the step cycle, there is only one foot on the ground, so both balance and propulsion are required in order for the movement to proceed smoothly. One condition known to compound the difficulty of walking is the use of high heeled shoes, which alter the natural position of the foot–ankle complex, and thereby produce a chain reaction of (mostly negative) effects that travels up the lower limb at least as far as the spine. This review summarises recent studies that have examined acute and chronic effects of high heels on balance and lo…

Adultmedicine.medical_specialtyBiophysicsNeuroscience (miscellaneous)Poison controlElectromyographyWalkingYoung AdultPhysical medicine and rehabilitationGait (human)medicineHumansBipedalismHuman locomotionGaitBalance (ability)BackHipmedicine.diagnostic_testElectromyographyFootPerspective (graphical)Motor controlSpineBiomechanical PhenomenaShoesPhysical therapyFemaleHeelNeurology (clinical)AnklePsychologyLocomotionJournal of electromyography and kinesiology : official journal of the International Society of Electrophysiological Kinesiology
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Ski Boots Do Not Impair Standing Balance by Restricting Ankle-Joint Mobility.

2018

Objective: This study was undertaken in order to provide new insight into sensorimotor control of posture when wearing high-shaft (HS) boots as ski boots. Background: Previous studies into the effects of HS boots on postural control have produced controversial results. Some studies reported postural control impairments with ski boots in bipedal postural tasks due to ankle movement restrictions without quantifying the actual restrictive effect of these boots and specifying the adaptations of the postural control system. Method: Eighteen young healthy subjects took part in the experiment. Bilateral postural control was assessed on stable and unstable surfaces, while standing barefoot or weari…

Adultmedicine.medical_specialtyHuman Factors and Ergonomics050105 experimental psychologyBarefootSports EquipmentBehavioral NeuroscienceYoung AdultPhysical medicine and rehabilitationJoint mobilityCenter of pressure (terrestrial locomotion)Skiingotorhinolaryngologic diseasesPostural BalancemedicineHumans0501 psychology and cognitive sciencesPostural Balance050107 human factorsApplied Psychologybusiness.industry05 social sciencesMotor controlFall riskAdaptation PhysiologicalBiomechanical PhenomenaShoesStanding balancemedicine.anatomical_structureErgonomicsAnklebusinessAnkle JointHuman factors
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Long-term use of high-heeled shoes alters the neuromechanics of human walking

2012

Human movement requires an ongoing, finely tuned interaction between muscular and tendinous tissues, so changes in the properties of either tissue could have important functional consequences. One condition that alters the functional demands placed on lower limb muscle-tendon units is the use of high-heeled shoes (HH), which force the foot into a plantarflexed position. Long-term HH use has been found to shorten medial gastrocnemius muscle fascicles and increase Achilles tendon stiffness, but the consequences of these changes for locomotor muscle-tendon function are unknown. This study examined the effects of habitual HH use on the neuromechanical behavior of triceps surae muscles during w…

Adultmusculoskeletal diseasesMuscle fasciclemedicine.medical_specialtyHeelKnee JointPhysiologyPoison controlStrain (injury)WalkingAchilles TendonPhysiology (medical)HumansMedicineGround reaction forceMuscle SkeletalGaitAchilles tendonMuscle fatigueElectromyographyFootbusiness.industrymedicine.diseaseGaitBiomechanical PhenomenaShoesmedicine.anatomical_structurePhysical therapyFemaleHeelbusinessAnkle JointJournal of Applied Physiology
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Repeatability and reliability of the footwear assessment tool in Spanish patients: A transcultural adaptation

2023

[Abstract] Background: The footwear assessment tool was designed to advise an appropriate footwear for each situation and patient. Footwear alterations structures can influence in musculoskeletal disorders, developing foot ulcers, increase the peak plantar pressure, bacterial growth, low back pain. Methods: To validate the study 101 subjects were recruited. The study was tested by two expert podiatrists using the tool for the assessment of footwear characteristics that is composed by five domains, fit, general features, general structure, motion control properties and cushioning system. Each domain analyzes different shoe items. Results: An excellent agreement between the test-retest. A sui…

FiabilidadDermatologyReliabilityFootwearPathology and Forensic MedicineShoesExtremitatsPodologíaCalzadoZapatosMalaltiesRepetibilidadToolHerramientaRepeatability
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Impact Acceleration During Prolonged Running While Wearing Conventional Versus Minimalist Shoes.

2020

Purpose: In recent years a sub-group of minimalist runners have emerged who aim to perform physical exercise more naturally in an attempt to reduce running-related injuries. Here we aimed to determine the effect that running with minimalist footwear in a prolonged run has on footimpact accelerations. Method: Seventeen runners ran with minimalist and conventional shoes (MS and CS, respectively) in two separate sessions; the participants had experience with both footwear types. We measured the length and frequency of each stride, as well as the tibial and head impact acceleration every 5 minutes during a prolonged run (30 minutes at 80% of each individual's maximum aerobic speed). Results: Th…

Foot strikeAdultMalemedicine.medical_specialtyFerides i lesionsAcceleration030209 endocrinology & metabolismPhysical Therapy Sports Therapy and RehabilitationPhysical exerciseBarefootRunning03 medical and health sciences0302 clinical medicinePhysical medicine and rehabilitationRisk FactorsmedicineHumansOrthopedics and Sports MedicineImpact accelerationbiologyTibiaCiències de l'esportAthletesFootBiomechanicsBiomecànica030229 sport sciencesGeneral MedicineEquipment DesignEntrenament (Esport)biology.organism_classificationPhysical activity levelBiomechanical PhenomenaShoesNephrologyPsychologyGait Analysishuman activitiesResearch quarterly for exercise and sport
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Footprint Curvature in Spanish Women: Implications for Footwear Fit

2020

The incorrect adjustment of footwear produces alterations in the foot that affect quality of life. The usual measurements for shoe design are lengths, widths and girths, but these measures are insufficient. The foot presents an angle between the forefoot and the rearfoot in the transverse plane, which is associated with foot pronation, hallux valgus and metatarsus adductus. Here, we aimed at identifying the groups formed by the angulations between the forefoot and rearfoot using a sample of footprints from 102 Spanish women. The angle between the forefoot and rearfoot was measured according to the method described by Bunch. A cluster analysis was performed using the K-means algorithm. Footp…

Health Toxicology and MutagenesisFoot pronationlcsh:MedicineCurvatureshoesArticleFootprintMetatarsus adductus03 medical and health sciences0302 clinical medicineInfermeriafoot diseasesHumansMathematicsOrthodonticsanthropometrybiologyFootForefootlcsh:RPublic Health Environmental and Occupational Health030229 sport sciencesbiology.organism_classificationValgusQuality of LifeFemaleAlgorithms030217 neurology & neurosurgeryFoot (unit)clusteringInternational Journal of Environmental Research and Public Health
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Plantar pressure and EMG activity of simulated and actual ski jumping take-off

2001

Plantar pressures and activation of the four muscles (VL - vastus lateralis, GL - gluteus, TA - tibialis anterior and GA - lat. gastrocnemius) were measured from ten ski jumpers under simulated laboratory conditions with training shoes (Lab TS) and with jumping boots (Lab JB) as well as in actual hill jumping conditions (Hill). The most significant differences between measured conditions were found in muscle activation patterns and plantar pressures prior to take-off. The centrifugal force due to the curvature of the inrun under actual hill jumping conditions caused extra pressure under the fore and rear parts of the feet (P<0.001) and therefore higher activation in all muscles (P<0.001 for…

HeelMaterials sciencePhysical Therapy Sports Therapy and RehabilitationElectromyographySki jumpingmedicine.disease_causeWeight-bearingWeight-BearingJumpingSkiingPressuremedicineHumansOrthopedics and Sports MedicineMuscle SkeletalBalance (ability)medicine.diagnostic_testElectromyographyFootPlantar pressureAnatomymusculoskeletal systemShoesbody regionsmedicine.anatomical_structureEarly phaseScandinavian Journal of Medicine and Science in Sports
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Effect of biomechanical footwear on upper and lower leg muscle activity in comparison with knee brace and normal walking

2021

Abstract Aim To evaluate the activity of knee stabilizing muscles while using custom-made biomechanical footwear (BF) and to compare it when walking barefoot and with a knee brace (Unloader®). Methods Seventeen healthy working-aged (mean age: 29 years; standard deviation: 8 years) individuals participated. The knee brace was worn on the right knee and BF in both legs. Surface electromyography (sEMG) data was recorded bilaterally from vastus medialis (VM), semitendinosus (ST), tibialis anterior (TA) and lateral gastrocnemius (LG) muscles during walking, and repeated-measures ANOVA with a post-hoc t-test was used to determine differences between the different walking modalities (barefoot, bra…

MaleKnee JointVastus medialispolvetWalkingElectromyographyBarefootLeg muscle0302 clinical medicineexercise therapymedicine.diagnostic_testknee bracemusculoskeletal systemBiomechanical PhenomenakävelyelektromyografiaLower Extremityfootweargait analysisFemalebiomekaniikkajalkineetLateral gastrocnemiusliikuntahoitomusculoskeletal diseasesmedicine.medical_specialtynivelrikkoBiophysicsNeuroscience (miscellaneous)surface electromyographyknee osteoarthritisYoung Adult03 medical and health sciencesPhysical medicine and rehabilitationmedicineHumansMuscle SkeletalLegBracesElectromyographybusiness.industry030229 sport sciencesBraceShoesGait analysisBarefoot walkingNeurology (clinical)businessbiomechanical devicehuman activities030217 neurology & neurosurgeryJournal of Electromyography and Kinesiology
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Effects of unstable shoes on trunk muscle activity in patients with chronic low back pain

2018

Este artículo se encuentra disponible en la página web de la revista en la siguiente URL: https://www.sciencedirect.com/science/article/abs/pii/S0966636218307252?via%3Dihub En este artículo científico también participan los siguientes autores: María Dolores Arguisuelas, Julio Doménech-Fernández, Daniel Sánchez-Zuriaga, Juan José Amer-Cuenca, Javier Martínez-Gramage, Francisco Javier Montañez-Aguilera y Juan Francisco Lisón. Este es el pre-print del siguiente artículo: Salvador Coloma, P., Arguisuelas, MD., Doménech-Fernández, J., Sánchez-Zuriaga, D., Amer-Cuenca, JJ., Martínez-Gramage, J. et al. (2018). Effects of unstable shoes on trunk muscle activity in patients with chronic low back pai…

MaleWalkingElectromyography0302 clinical medicineOrthopedics and Sports MedicineTreadmillGaitBackache - Treatment.Spine - Electromyography.030222 orthopedicsmedicine.diagnostic_testRehabilitationTorsoMiddle AgedLow back painTrunk musclesRoland Morris Disability QuestionnaireFemaleChronic Painmedicine.symptomAbdomen - Electromiografía.Adultmedicine.medical_specialtyAdolescentAbdomen - Electromyography.BiophysicsYoung Adult03 medical and health sciencesPhysical medicine and rehabilitationmedicineHumansLow back painMuscle SkeletalAgedChronic pain - Treatment.Arthrometry ArticularElectromyographybusiness.industryUnstable shoes030229 sport sciencesGaitSpineShoesDolor crónico - Tratamiento.Cross-Sectional StudiesLumbago - Tratamiento.Gait analysisOrthopedic surgeryExercise TestColumna vertebral - Electromiografía.Trunk musclebusinessLow Back Painhuman activities
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The influence of wearing ski-boots with different rigidity characteristics on postural control

2018

External supports that reduce ankle joint mobility such as ski-boots can impair postural control of healthy participants. Although this disruptive effect has been attributed to the rigidity of the external supports, the results remained controversial and no study has been conducted in order to evaluate the influence of ski-boots rigidity. Hence, the question about the influence of ankle support rigidity on postural control remains open. This study was therefore undertaken in order to investigate the effect of ski-boots rigidity on postural control. Ten healthy active participants were recruited. The wearing of soft and rigid ski-boots was compared to barefoot while standing on a seesaw gene…

Malemedicine.medical_specialtyAdolescentMovement0206 medical engineeringPhysical Therapy Sports Therapy and RehabilitationRigidity (psychology)02 engineering and technologyThighBarefootPostural controlSports EquipmentYoung Adult03 medical and health sciences0302 clinical medicinePhysical medicine and rehabilitationSkiingotorhinolaryngologic diseasesmedicineHumansKneeOrthopedics and Sports MedicineForce platformMuscle SkeletalPostural BalanceHipElectromyographybusiness.industryMotor controlEquipment Design030229 sport sciencesmusculoskeletal system020601 biomedical engineeringTrunkBiomechanical PhenomenaShoesmedicine.anatomical_structureTime and Motion StudiesFemaleAnkleAnklebusinesshuman activitiesSports Biomechanics
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