Search results for "Biomechanical Phenomena"

showing 4 items of 504 documents

Treatment of distal intraarticular tibial fractures: A biomechanical evaluation of intramedullary nailing vs. angle-stable plate osteosynthesis

2015

In factures of the distal tibia with simple articular extension, the optimal surgical treatment remains debatable. In clinical practice, minimally invasive plate osteosynthesis and intramedullary nailing are both routinely performed. Comparative biomechanical studies of different types of osteosynthesis of intraarticular distal tibial fractures are missing due to the lack of an established model. The goal of this study was first to establish a biomechanical model and second to investigate, which are the biomechanical advantages of angle-stable plate osteosynthesis and intramedullary nailing of distal intraarticular tibial fractures. Seven 4(th) generation biomechanical composite tibiae feat…

musculoskeletal diseasesmedicine.medical_specialtyIntra-Articular Fracturesmedicine.medical_treatmentBone ScrewsTorsion MechanicalBone Nailsmedicine.disease_causeOsteotomyWeight-bearingBiomechanical Phenomenalaw.inventionWeight-BearingIntramedullary rodFixation (surgical)lawBone platemedicineHumansGeneral Environmental ScienceOrthodonticsOsteosynthesisbusiness.industrymusculoskeletal systemBiomechanical PhenomenaFracture Fixation IntramedullaryOsteotomySurgeryTibial FracturesFeasibility StudiesGeneral Earth and Planetary SciencesImplantbusinessBone PlatesInjury
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Two different posterior-stabilized mobile-bearing TKA designs: navigator evaluation of intraoperative kinematic differences

2020

Purpose: The purpose of this study was to compare two types of posterior-stabilized (PS) mobile-bearing (MB) total knee arthroplasties (TKAs). The hypothesis was that no major differences were going to be found among the two TKA designs. Methods: Two cohorts of patients who were divided according to implant design (Cohort A, new design gradually reducing radius PS MB TKA; Cohort B, traditional dual-radius PS MB TKA) were analyzed by means of intraoperative navigation. All operations were guided by a non-image-based navigation system that recorded relative femoral and tibial positions in native and implanted knees during the following kinematic tests: passive range of motion (PROM), varus–va…

musculoskeletal diseasesmedicine.medical_specialtyKinematicsKnee Jointmedicine.medical_treatmentComparisonKinematicsPromProsthesis DesignProsthesis03 medical and health sciences0302 clinical medicinemedicineHumansOrthopedics and Sports MedicinePosterior-stabilized kneeRange of Motion ArticularSettore ING-IND/15 - Disegno E Metodi Dell'Ingegneria IndustrialeArthroplasty Replacement KneeOrthodontics030222 orthopedicsKnee laxitybusiness.industryTKAPosterior stabilized030229 sport sciencesKinematicmusculoskeletal systemNavigationBiomechanical PhenomenaSurgeryCohortOrthopedic surgerySurgeryMobile bearingKnee ProsthesisRange of motionbusinessMUSCULOSKELETAL SURGERY
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Kinematics of the patellofemoral joint. Investigations on a computer model with reference to patellar fractures.

1990

Patellofemoral kinematics were studied on a computer model. The articulating point of the patella moves from distal to proximal during flexion, until the quadriceps tendon starts to turn around the femur tendo-femoral gliding. The pattern of patellofemoral movement consists of a gliding and rolling component, the latter at its maximum at the beginning of flexion. The pathway of the instant centers of motion moves from dorsal to ventral during flexion. Stress analysis shows that the contact area is at all times the area of maximum bending stress. The distal part of the patella is the part with mechanical stress at all angles of flexion. The conclusions to be drawn for treatment are that frac…

musculoskeletal diseasesmedicine.medical_specialtyKnee Jointmedicine.medical_treatmentMovementKinematicsModels BiologicalFractures BonemedicineInternal fixationHumansOrthopedics and Sports MedicineFemurComputer Simulationbusiness.industryBiomechanicsGeneral MedicineAnatomyPatellamusculoskeletal systemBiomechanical Phenomenamedicine.anatomical_structureOrthopedic surgerySurgeryPatellaQuadriceps tendonContact areabusinessArchives of orthopaedic and trauma surgery
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Foot and Lower Limb Clinical and Structural Changes in Overuse Injured Recreational Runners Using Floating Heel Shoes: Preliminary Results of a Rando…

2021

Foot-strike and the associated load rate are factors related to overuse injuries in runners. The purpose of this study was to analyse structural and functional changes in runners using floating heel running shoes, compared with runners using conventional footwear. A randomised control trial was conducted. Twenty runners with overuse injuries were followed over a 12-week gait retraining programme using floating heel running shoes or their conventional footwear. Pain was measured with pressure pain thresholds (PPTs), structural changes were measured with ultrasonography, and severity and impact of injury was scored on the Oslo Sports Trauma Research Centre Overuse Injury Questionnaire (OSTRC-…

running footwearmusculoskeletal diseasesmedicine.medical_specialtyHeelgait retrainingOveruse InjuryTP1-1185BiochemistryArticleLower limbAnalytical Chemistryrunning; gait retraining; foot; overuse injury; pain management; running footwearrunningotorhinolaryngologic diseasesHumansMedicineElectrical and Electronic EngineeringSports activityGaitInstrumentationbusiness.industryGait retrainingoveruse injuryChemical technologyTrauma researchAtomic and Molecular Physics and OpticsBiomechanical PhenomenaShoesbody regionsmedicine.anatomical_structureLower Extremitypain managementfootPhysical therapyHeelUltrasonographybusinesshuman activitiesFoot (unit)Sensors; Volume 21; Issue 23; Pages: 7814
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