Search results for "Bone geometry"

showing 5 items of 5 documents

Greater maintenance of bone mineral content in male than female athletes and in sprinting and jumping than endurance athletes: a longitudinal study o…

2020

Abstract Summary We investigated longitudinal changes in tibia bone strength in master power (jumping and sprinting) and endurance (distance) athletes of both sexes. Bone mass but not cross-sectional moment of inertia was better maintained in power than endurance athletes over time, particularly in men and independent of changes in performance. Objective Assessment of effects of sex and athletic discipline (lower limb power events, e.g. sprint running and jumping versus endurance running events) on longitudinal changes in bone strength in masters athletes. Methods We examined tibia and fibula bone properties at distal (4% distal-proximal tibia length) and proximal (66% length) sites using p…

AdultMaleLongitudinal studyAgingosteoporoosiOsteoporosisluu030209 endocrinology & metabolismliikuntamedicine.disease_causeMuskel- und KnochenstoffwechselBone and BonesbiomechanicsRunning03 medical and health sciences0302 clinical medicineJumpingBone DensitymedicineHumansOrthopedics and Sports MedicineTibiaLongitudinal StudiesQuantitative computed tomographyAgedOrthodonticsAged 80 and overmedicine.diagnostic_testbiologyexercisebusiness.industryAthletesBiomechanicsbone geometry030229 sport sciencesMiddle Agedbiology.organism_classificationmedicine.diseaseosteoporosisikääntyminenSprintAthletesageingFemaleOriginal ArticlebiomekaniikkabusinessSportsurheilijat
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Do bone geometric properties of the proximal femoral diaphysis reflect loading history, muscle properties, or body dimensions?

2019

Abstract Objectives: The aim of this study was to investigate activity‐induced effects from bone geometric properties of the proximal femur in athletic vs nonathletic healthy females by statistically controlling for variation in body size, lower limb isometric, and dynamic muscle strength, and cross‐sectional area of Musculus gluteus maximus. Methods: The material consists of hip and proximal thigh magnetic resonance images of Finnish female athletes (N = 91) engaged in either high jump, triple jump, soccer, squash, powerlifting, endurance running or swimming, and a group of physically active nonathletic women (N = 20). Cross‐sectional bone geometric properties were calculated for the lesse…

AdultMaleMuscle sizeluuphysical activity030209 endocrinology & metabolismIsometric exerciseThighBody sizeYoung Adult03 medical and health sciences0302 clinical medicinereisiluuGeneticsmedicineHumans0601 history and archaeologyFemurFemurMuscle SkeletalFinlandEcology Evolution Behavior and SystematicsOrthodonticsHip060101 anthropologyAnthropometrybusiness.industrybone geometry06 humanities and the artsMagnetic Resonance ImagingBiomechanical Phenomenamedicine.anatomical_structureThighlihasmassaLesser TrochanterFemoral diaphysisAthletesAnthropologyJumpFemaleDiaphysesAnatomybusinessfyysinen aktiivisuusurheilijat
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A Polymorphism in a Gene Encoding Perilipin 4 Is Associated with Height but not with Bone Measures in Individuals from the Framingham Osteoporosis St…

2011

There is increasing interest in identifying new pathways and candidate genes that confer susceptibility to osteoporosis. There is evidence that adipogenesis and osteogenesis may be related, including a common bone marrow progenitor cell for both adipocytes and osteoblasts. Perilipin 1 (PLIN1) and Perilipin 4 (PLIN4) are members of the PATS family of genes and are involved in lipolysis of intracellular lipid deposits. A previous study reported gender-specific associations between one polymorphism of PLIN1 and bone mineral density (BMD) in a Japanese population. We hypothesized that polymorphisms in PLIN1 and PLIN4 would be associated with bone measures in adult Caucasian participants of the …

MalePerilipin-1medicine.medical_specialtyCandidate geneGenotypeBone densityEndocrinology Diabetes and MetabolismOsteoporosisSingle-nucleotide polymorphismBiologyPerilipin-4Polymorphism Single NucleotideArticleAbsorptiometry PhotonEndocrinologyBone DensityInternal medicinemedicineBone mineral densityHumansSNPGenetic Predisposition to DiseaseOrthopedics and Sports MedicineHuman heightBone mineralBone geometryFramingham Osteoporosis StudyMiddle AgedPhosphoproteinsmedicine.diseaseBody HeightPerilipin 4EndocrinologyPerilipin 1PerilipinOsteoporosisFemaleCarrier Proteins
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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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Impaired geometric properties of tibia in older women with hip fracture history.

2007

This study evaluated side-to-side differences in tibial mineral mass and geometry in women with previous hip fracture sustained on average 3.5 years earlier. Both tibial mineral mass and geometry were found to be reduced in the fractured leg. INTRODUCTION: The purpose of this study was to evaluate side-to-side differences in tibial mineral mass and geometry after hip fracture and to assess the determinants of such differences. METHODS: Thirty-eight 60- to 85-year-old women with a previous hip fracture and 22 same-aged control women without fractures participated in the study. Bone characteristics of the distal tibia and tibial shaft of both legs were assessed using pQCT in order to compare …

musculoskeletal diseasesmedicine.medical_specialtyAgingInjury controlKnee JointmusclelihasEndocrinology Diabetes and MetabolismFracture (mineralogy)OsteoporosisPoison controlWalkingBone DensitymedicineHumansTibiaMuscle StrengthMuscle SkeletalpQCTAgedBone geometryOrthodonticsAged 80 and overHip fractureLegTibiabusiness.industryHip Fracturesagingbone geometryluun geometriaMiddle Agedmusculoskeletal systemmedicine.diseaseSurgeryFemoral Neck FracturesikääntyminenFractures Spontaneouship fractureOrthopedic surgeryFemalelonkkamurtumabusinessTomography X-Ray ComputedOsteoporosis international : a journal established as result of cooperation between the European Foundation for Osteoporosis and the National Osteoporosis Foundation of the USA
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