Search results for "bone strength"

showing 10 items of 17 documents

Impact loading history modulates hip fracture load and location : A finite element simulation study of the proximal femur in female athletes

2018

Sideways falls impose high stress on the thin superolateral cortical bone of the femoral neck, the region regarded as a fracture-prone region of the hip. Exercise training is a natural mode of mechanical loading to make bone more robust. Exercise-induced adaptation of cortical bone along the femoral neck has been previously demonstrated. However, it is unknown whether this adaption modulates hip fracture behavior. The purpose of this study was to investigate the influence of specific exercise loading history on fall-induced hip fracture behavior by estimating fracture load and location with proximal femur finite element (FE) models created from magnetic resonance images (MRI) of 111 women w…

02 engineering and technologyFinite element simulationWeight-Bearing0302 clinical medicinemurtumatreisiluuOrthopedics and Sports MedicineFemurOrthodonticsHip fractureluustomedicine.diagnostic_testbiologyProximal femurexerciseRehabilitationfallingfemoral neckta3142lonkkamurtumatBiomechanical Phenomenamedicine.anatomical_structureFemalevahvistaminenAdultFinite Element Analysis0206 medical engineeringBiomedical EngineeringBiophysics030209 endocrinology & metabolismbone strengthYoung Adult03 medical and health sciencesmedicineHumansFemoral neckHip Fracturesbusiness.industryAthletesMagnetic resonance imagingfinite element modelingmedicine.diseasebiology.organism_classification020601 biomedical engineeringAthletesImpact loadingAccidental FallsCortical bonebusinesshuman activitiesJournal of Biomechanics
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Effect of fall direction on the lower hip fracture risk in athletes with different loading histories : A finite element modeling study in multiple si…

2022

Physical loading makes bones stronger through structural adaptation. Finding effective modes of exercise to improve proximal femur strength has the potential to decrease hip fracture risk. Previous proximal femur finite element (FE) modeling studies have indicated that the loading history comprising impact exercises is associated with substantially higher fracture load. However, those results were limited only to one specified fall direction. It remains thus unclear whether exercise-induced higher fracture load depends on the fall direction. To address this, using magnetic resonance images of proximal femora from 91 female athletes (mean age 24.7 years with >8 years competitive career) and …

Adult212 Civil and construction engineeringHistologyurheilulajitAdolescentPhysiologyEndocrinology Diabetes and MetabolismfallFinite Element Analysisluubone strengthYoung AdultHumansharjoitteluFemur3D-mallinnusluunmurtumatRetrospective Studieskaatuminen318 Medical biotechnologyexerciseHip Fracturesfinite element modeling113 Computer and information scienceslonkkaelementtimenetelmäAthleteship fracturefracture preventionFemaleurheilijat
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Neuromuscular performance and body mass as indices of bone loading in premenopausal and postmenopausal women.

2009

The strong association between body mass and skeletal robusticity has been attributed to increasing skeletal loading with increasing mass. However, it is unclear whether body mass is merely a coarse substitute for bone loading rather than a true independent predictor of bone strength. As indices of neuromuscular performance, impulse and peak power were determined from vertical ground reaction force during a maximal counter movement jump test in 221 premenopausal and 82 postmenopausal women. Bone compressive (BSI(d) g(2)/cm(4)) and bending (SSImax(mid) mm(3)) strength indices were measured with peripheral quantitative computed tomography (pQCT) at the distal ((d)) and midshaft ((mid)) sites …

Adultmedicine.medical_specialtyHistologyCompressive StrengthPhysiologyEndocrinology Diabetes and MetabolismMovementPhysical Exertion030209 endocrinology & metabolismIndependent predictorWeight-Bearing03 medical and health sciences0302 clinical medicineBone strengthBone loadingWeight lossOsteoarthritisMedicineHumansTibiaMuscle StrengthQuantitative computed tomography030304 developmental biologyOrthodontics0303 health sciencesHip fracturePostmenopausal womenmedicine.diagnostic_testTibiabusiness.industryBody WeightAge FactorsMiddle Agedmedicine.diseaseSurgeryPostmenopauseRadiographyPremenopauseBody CompositionRegression AnalysisFemaleStress Mechanicalmedicine.symptombusinessMuscle ContractionBone
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Genetic and Environmental Influence on Structural Strength of Weight-Bearing and Non-Weight-Bearing Bone: A Twin Study

2007

A bivariate genetic analysis among 217 older female twin pairs showed that, although the structural strength of tibia and radius are mainly regulated by same genetic and environmental factors, the tibia is more affected by environment. Introduction: The habitual loading environment of the bone may modulate the relative contribution of genetic and environmental factors to bone structure. The purpose of this study was to estimate the contribution of the common and site-specific genetic and environmental factors to interindividual variation in compressive structural strength of the weight-bearing tibia and non–weight-bearing radius. Materials and Methods: pQCT scans were obtained from both mem…

AgingosteoporoosiEndocrinology Diabetes and MetabolismOsteoporosis030209 endocrinology & metabolismBone strengthEnvironmentBiologymedicine.disease_causeMechanical loadingBone and BonesWeight-bearing03 medical and health sciences0302 clinical medicineAnimal scienceBone DensityGenetic modelmedicineHumansOrthopedics and Sports MedicineTibia10. No inequalityAged030304 developmental biology0303 health sciencesmekaaninen kuormitusBody WeightEnvironmental factorAnatomyMiddle AgedHeritabilitymedicine.diseaseTwin studyperiytyvyysikääntyminenCompressive strengthluun lujuusTomography X-Ray ComputedJournal of Bone and Mineral Research
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Relationship between lower limb neuromuscular performance and bone strength in postmenopausal women with mild knee osteoarthritis.

2014

Objectives: To investigate whether neuromuscular performance predicts lower limb bone strength in different lower limb sites in postmenopausal women with mild knee osteoarthritis (OA). Methods: Neuromuscular performance of 139 volunteer women aged 50-68 with mild knee OA was measured using maximal counter movement jump test, isometric knee flexion and extension force and figure-of-eight-running test. Femoral neck section modulus (Z, mm³) was determined by data obtained from dualenergy X-ray absorptiometry. Data obtained using peripheral quantitative computed tomography was used to asses distal tibia compressive (BSId, g2/cm4) and tibial mid-shaft bending (SSImaxmid, mm3) strength indices. R…

DXAnivelrikkoNeuromuscular PerformanceCompressive StrengthTibianeuromuskulaarinen suorituskykyMiddle AgedOsteoarthritis KneeBone StrengthPQCTPostmenopauseAbsorptiometry PhotonOsteoarthritisluun lujuusHumansFemaleTomography X-Ray ComputedPsychomotor PerformanceAgedJournal of musculoskeletalneuronal interactions
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Prolonged breastfeeding is associated with greater bone size and bone strength

2011

HistologyBone strengthPhysiologybusiness.industryEndocrinology Diabetes and MetabolismBreastfeedingMedicineDentistrybusinessBone
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Maximal voluntary isokinetic knee flexion torque is associated with femoral shaft bone strength indices in knee replacement patients.

2012

It is currently unknown whether knee replacement-associated bone loss is modified by rehabilitation programs. Thus, a sample of 45 (18 men and 25 women) persons with unilateral knee replacement were recruited; age 66 years (sd 6), height 169 cm (sd 8), body mass 83 kg (sd 15), time since operation 10 months (sd 4) to explore the associations between maximal torque/power in knee extension/flexion and femoral mid-shaft bone traits (Cortical cross-sectional area (CoA, mm(2)), cortical volumetric bone mineral density (CoD, mg/mm(3)) and bone bending strength index (SSI, mm(3))). Bone traits were calculated from a single computed tomography slice from the femoral mid-shaft. Pain in the operated …

Malemedicine.medical_specialtyWOMACTime FactorsKnee JointFemoral shaftmedicine.medical_treatmentKnee flexionKnee replacementModels BiologicalBone strengthBone DensitySurveys and QuestionnairesMedicineHumansOrthopedics and Sports MedicineFemurMuscle StrengthRange of Motion ArticularArthroplasty Replacement KneeMuscle SkeletalAgedPain MeasurementBone mineralOrthodonticsPain PostoperativeRehabilitationbusiness.industryStepwise regressionSurgeryTorqueFemaleStress MechanicalbusinessTomography X-Ray ComputedMuscle ContractionThe Knee
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Muscle Cross-Sectional Area and Structural Bone Strength Share Genetic and Environmental Effects in Older Women

2009

The purpose of this study was to estimate to what extent muscle cross-sectional area of the lower leg (mCSA) and tibial structural strength are influenced by common and trait-specific genetic and environmental factors. pQCT scans were obtained from both members of 102 monozygotic (MZ) and 113 dizygotic (DZ) 63- to 76-yr-old female twin pairs to estimate the mCSA of the lower leg, structural bending strength of the tibial shaft (BSIbend), and compressive strength of the distal tibia (BSIcomp). Quantitative genetic models were used to decompose the phenotypic variances into common and trait-specific additive genetic (A), shared environmental (C), and individual environmental (E) effects. The …

SenescenceAgingEndocrinology Diabetes and MetabolismOsteoporosis030209 endocrinology & metabolismEnvironmentBiologyBone and Bones03 medical and health sciences0302 clinical medicineBone strengthGenetic modelTwins DizygoticmedicineHumansOrthopedics and Sports Medicine030304 developmental biology0303 health sciencesModels GeneticMusclesTwins MonozygoticAnatomyHeritabilitymedicine.diseaseDistal tibiaAgeingSarcopeniaMultivariate AnalysisFemaleDemographyJournal of Bone and Mineral Research
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Targeted exercise against osteoporosis: A systematic review and meta-analysis for optimising bone strength throughout life

2010

Background. Exercise is widely recommended to reduce osteoporosis, falls and related fragility fractures, but its effect on whole bone strength has remained inconclusive. The primary purpose of this systematic review and meta-analysis was to evaluate the effects of long-term supervised exercise (≥6 months) on estimates of lower-extremity bone strength from childhood to older age. Methods. We searched four databases (PubMed, Sport Discus, Physical Education Index, and Embase) up to October 2009 and included 10 randomised controlled trials (RCTs) that assessed the effects of exercise training on whole bone strength. We analysed the results by age groups (childhood, adolescence, and young and …

luustoexerciseosteoporoosiluun lujuusbone strengthliikuntaosteoporosisbone
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Neuromuscular function and bone geometry and strength in aging

2010

luustoneuromuscular performanceikääntyminenneuromuskulaarinen suorituskykyosteoporoosiagingbone geometrypredictors of bone strengthbonelonkkaluunmurtumat
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