Search results for " Biomechanics"

showing 10 items of 45 documents

Running in highly cushioned shoes increases leg stiffness and amplifies impact loading

2018

AbstractRunning shoe cushioning has become a standard method for managing impact loading and consequent injuries due to running. However, despite decades of shoe technology developments and the fact that shoes have become increasingly cushioned, aimed to ease the impact on runners’ legs, running injuries have not decreased. To better understand the shoe cushioning paradox, we examined impact loading and the spring-like mechanics of running in a conventional control running shoe and a highly cushioned maximalist shoe at two training speeds, 10 and 14.5 km/h. We found that highly cushioned maximalist shoes alter spring-like running mechanics and amplify rather than attenuate impact loading. T…

AdultMalemusculoskeletal diseasesrasitusvammatComputer sciencelcsh:MedicineHEEL STRIKEMASSbone quality and biomechanicsurheilujalkineetArticlejuoksuGROUND REACTION FORCES03 medical and health sciences0302 clinical medicineotorhinolaryngologic diseasesHumans315 Sport and fitness sciencesGround reaction forcelcsh:ScienceHeel strikeWORKLeg stiffnessLegMultidisciplinaryRunning injuriesbusiness.industryWork (physics)lcsh:Rtechnology industry and agricultureCushioning030229 sport sciencesStructural engineeringShoesbody regionsMECHANICSRUNNERSImpact loadingLoading rateINJURIESlcsh:Qbiomekaniikkabusiness030217 neurology & neurosurgeryScientific Reports
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Effects of Minimalist Footwear and Foot Strike Patterns on Plantar Pressure during a Prolonged Running

2022

The use of minimalist shoes (MS) in running involves changes in running mechanics compared to conventional shoes (CS), but there is still little research analysing the effects of this footwear on plantar pressure, which could help to understand some risk injury factors. Moreover, there are no studies examining the effects of a prolonged running and foot strike patterns on baropodometric variables in MS. Therefore, the aim of this study was to analyse the changes produced using MS on plantar pressure during a prolonged running, as well as its interaction with the time and foot strike pattern. Twenty-one experienced minimalist runners (age 38 ± 10 years, MS running experience 2 ± 1 years) ran…

minimalist shoes; conventional shoes; baropodometry; foot; sports biomechanicsConventional shoesTechnologyQH301-705.5QC1-999Minimalist shoessports biomechanicsEducación Física y DeportivaGeneral Materials ScienceBiology (General)QD1-999InstrumentationFluid Flow and Transfer ProcessesEsportsconventional shoesFootTPhysicsProcess Chemistry and TechnologyGeneral EngineeringBiomecànicaEsports LesionsEngineering (General). Civil engineering (General)Computer Science ApplicationsChemistryfootBaropodometrybaropodometryminimalist shoesSports biomechanicsTA1-2040
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Adhesion enhancement of cribellate capture threads by epicuticular waxes of the insect prey sheds new light on spider web evolution

2017

To survive, web-building spiders rely on their capture threads to restrain prey. Many species use special adhesives for this task, and again the majority of those species cover their threads with viscoelastic glue droplets. Cribellate spiders, by contrast, use a wool of nanofibres as adhesive. Previous studies hypothesized that prey is restrained by van der Waals' forces and entrapment in the nanofibres. A large discrepancy when comparing the adhesive force on artificial surfaces versus prey implied that the real mechanism was still elusive. We observed that insect prey's epicuticular waxes infiltrate the wool of nanofibres, probably induced by capillary forces. The fibre-reinforced composi…

0106 biological sciences0301 basic medicineInsectamedia_common.quotation_subjectSilkThread (computing)InsectBiology010603 evolutionary biology01 natural sciencesGeneral Biochemistry Genetics and Molecular BiologyPredation03 medical and health sciencesEvolutionary arms raceAnimalsGeneral Environmental Sciencemedia_commonWaxSpiderGeneral Immunology and MicrobiologyPolymer scienceMorphology and BiomechanicsEcologyAdhesivenessSpidersGeneral MedicineAdhesion030104 developmental biologyvisual_artWaxesvisual_art.visual_art_mediumAdhesiveGeneral Agricultural and Biological Sciences
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Corneal Biomechanics, Retinal Nerve Fiber Layer, and Optic Disc in Children

2014

Purpose. To evaluate the possible associations between corneal biomechanical parameters, optic disc morphology, and retinal nerve fiber layer (RNFL) thickness in healthy white Spanish children. Methods. This cross-sectional study included 100 myopic children and 99 emmetropic children as a control group, ranging in age from 6 to 17 years. The Ocular Response Analyzer was used to measure corneal hysteresis (CH) and corneal resistance factor. The optic disc morphology and RNFL thickness were assessed using posterior segment optical coherence tomography (Cirrus HD-OCT). The axial length was measured using an IOLMaster, whereas the central corneal thickness was measured by anterior segment opti…

MaleRetinal Ganglion Cellsmedicine.medical_specialtyAdolescentgenetic structuresOptic DiskNerve fiber layerEmmetropiaWhite PeopleCorneaCorneal biomechanicsNerve FibersCorneaOphthalmologyMyopiaMedicineHumansChildDioptreÓpticabusiness.industryAnatomyHealthy Volunteerseye diseasesScleraBiomechanical PhenomenaPosterior segment of eyeballOphthalmologyAxial Length EyeOptic disc parametersmedicine.anatomical_structureCross-Sectional StudiesSpainOptic nerveFemalesense organsbusinessTomography Optical CoherenceOptometryOptic disc
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Análisis del calzado técnico de tenis atendiendo a criterios epidemiológicos, de confort y biomecánicos

1997

Biophysics Biomechanics:PSICOLOGÍA [UNESCO]UNESCO::PSICOLOGÍAHealth Sciences Recreation
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Kinematics of Cervical Spine during Rowing Ergometer at Different Stroke Rates in Young Rowers: A Pilot Study

2022

Background: Research on biomechanics in rowing has mostly focused on the lumbar spine. However, injuries can also affect other body segments. Thus, the aim of this pilot study was to explore any potential variations in the kinematics of the cervical spine during two different stroke rates on the rowing ergometer in young rowers. Methods: Twelve young rowers of regional or national level were recruited for the study. The experimental protocol consisted of two separate test sessions (i.e., a sequence of 10 consecutive strokes for each test session) at different stroke rates (i.e., 20 and 30 strokes/min) on an indoor rowing ergometer. Kinematics of the cervical spine was assessed using an iner…

musculoskeletal diseasesLumbar VertebraerowingErgometryHealth Toxicology and MutagenesisPublic Health Environmental and Occupational HealthPilot Projectscervical range of motionAthletic PerformancebiomechanicsBiomechanical Phenomenarange of motioncervical mobilityjoint mobility; range of motion; biomechanics; kinematics; sport performance; cervical mobility; cervical range of motion; rowing; stroke cycle; stroke ratekinematicsCervical Vertebraesport performancestroke cyclejoint mobilitystroke rateWater SportsInternational Journal of Environmental Research and Public Health
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On the Finite Element Modeling of the Lumbar Spine: A Schematic Review

2023

Finite element modelling of the lumbar spine is a challenging problem. Lower back pain is among the most common pathologies in the global populations, owing to which the patient may need to undergo surgery. The latter may differ in nature and complexity because of spinal disease and patient contraindications (i.e., aging). Today, the understanding of spinal column biomechanics may lead to better comprehension of the disease progression as well as to the development of innovative therapeutic strategies. Better insight into the spine’s biomechanics would certainly guarantee an evolution of current device-based treatments. In this setting, the computational approach appears to be a remarkable …

modellingFluid Flow and Transfer Processesspinal columnlumbar spineProcess Chemistry and TechnologyGeneral EngineeringBiomechanicsGeneral Materials Sciencefinite element analysiscomputational simulationsfinite element analysis; spinal column; biomechanics; modelling; lumbar spine; computational simulationsInstrumentationComputer Science ApplicationsApplied Sciences
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A finite element-based machine learning approach for modeling the mechanical behavior of the breast tissues under compression in real-time

2017

[EN] This work presents a data-driven method to simulate, in real-time, the biomechanical behavior of the breast tissues in some image-guided interventions such as biopsies or radiotherapy dose delivery as well as to speed up multimodal registration algorithms. Ten real breasts were used for this work. Their deformation due to the displacement of two compression plates was simulated off-line using the finite element (FE) method. Three machine learning models were trained with the data from those simulations. Then, they were used to predict in real-time the deformation of the breast tissues during the compression. The models were a decision tree and two tree-based ensemble methods (extremely…

AdultFinite element methodsMean squared errorComputer scienceQuantitative Biology::Tissues and OrgansINGENIERIA MECANICAFinite Element AnalysisPhysics::Medical PhysicsDecision treeBreast compressionHealth Informatics02 engineering and technologyMachine learningcomputer.software_genreModels Biological030218 nuclear medicine & medical imagingSet (abstract data type)03 medical and health sciencesImaging Three-Dimensional0302 clinical medicineMachine learning0202 electrical engineering electronic engineering information engineeringHumansBreastbusiness.industryModelingEnsemble learningFinite element methodComputer Science ApplicationsRandom forestEuclidean distanceTree (data structure)Female020201 artificial intelligence & image processingArtificial intelligenceBreast biomechanicsbusinesscomputerLENGUAJES Y SISTEMAS INFORMATICOS
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Influence of a new bicycle crank design on aerobic parameters of non-cyclists

2012

VO2max biomechanics crank systems cycling physical exercise
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Anterior Segment Biometry and Their Correlation with Corneal Biomechanics in Caucasian Children.

2018

Purpose: To assess the relationship between the corneal biomechanical parameters and the anterior segment parameters in Caucasian children. Methods: This study included 293 eyes from 293 healthy children aged between 6 and 17 years. Corneal hysteresis (CH) and corneal resistance factor (CRF) were evaluated with the Ocular Response Analyzer, axial length (AL) with IOLMaster and the anterior segment with Pentacam. Anterior segment parameters obtained were the following: central corneal thickness (CCT), corneal volume (CV), anterior chamber depth (ACD), anterior chamber volume (ACV) and mean anterior and posterior keratometry. Two multiple linear regression models were constructed to assess th…

Malemedicine.medical_specialtyBiometrygenetic structuresAdolescentanterior ocular segmentWhite Peoplelaw.inventionCorneal hysteresisCorrelationCorneaCorneal biomechanics03 medical and health sciencesCellular and Molecular Neuroscience0302 clinical medicinechildrenlawAnterior Eye SegmentReference ValuesStatistical significanceOphthalmologyLinear regressionMedicineHumansChildIntraocular PressureKeratometerbusiness.industryBiomechanicsCorneal TopographyAxial lengtheye diseasesSensory SystemsElasticityOphthalmologyCross-Sectional Studies030221 ophthalmology & optometryFemalesense organsocular response analyzerbusiness030217 neurology & neurosurgeryCurrent eye research
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