Plantar soft tissue loading under the medial metatarsals in the standing diabetic foot.
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Skin disorders in diabetes mellitus: an epidemiology and physiopathology reviewThe design and validation of a magnetic resonance imaging-compatible device for obtaining mechanical properties of plantar soft tissue via gated acquisition.Prediction of peak pressure from clinical and radiological measurements in patients with diabetes.A comparison of lower limb EMG and ground reaction forces between barefoot and shod gait in participants with diabetic neuropathic and healthy controls.Optimization of nonlinear hyperelastic coefficients for foot tissues using a magnetic resonance imaging deformation experimentComputer simulation of stress distribution in the metatarsals at different inversion landing angles using the finite element methodEffects of a combined strengthening, stretching and functional training program versus usual-care on gait biomechanics and foot function for diabetic neuropathy: a randomized controlled trial.What has finite element analysis taught us about diabetic foot disease and its management? A systematic review.Effect of footwear and orthotic devices on stress reduction and soft tissue strain of the neuropathic footPlantar fascia enthesopathy is highly prevalent in diabetic patients without peripheral neuropathy and correlates with retinopathy and impaired kidney functionXerosis and callus formation as a key to the diabetic foot syndrome: dermatologic view of the problem and its management.Pressure gradient and subsurface shear stress on the neuropathic forefoot.Effect of metatarsal phalangeal joint extension on plantar soft tissue stiffness and thicknessPlantar pressure distribution patterns during gait in diabetic neuropathy patients with a history of foot ulcers.A preliminary study of patient-specific mechanical properties of diabetic and healthy plantar soft tissue from gated magnetic resonance imaging.Explicit finite element modelling of heel pad mechanics in running: inclusion of body dynamics and application of physiological impact loads.Prevalence of standing plantar pressure distribution variation in north Asian Indian patients with diabetes mellitus: a study to understand ulcer formation.Healing ulcers and preventing their recurrences in the diabetic footA mathematical method for quantifying in vivo mechanical behaviour of heel pad under dynamic load.Weight-Bearing Exercise and Foot Health in Native Americans.Multi-plug insole design to reduce peak plantar pressure on the diabetic foot during walking.Quantifying Dynamic Changes in Plantar Pressure Gradient in Diabetics with Peripheral Neuropathy.Lower limb electromygraphy and kinematics of neuropathic diabetic patients during real-life activities: stair negotiation.Diabesity: a polygenic model of dietary-induced obesity from ad libitum overfeeding of Sprague-Dawley rats and its modulation by moderate and marked dietary restriction.A Simulation of the Viscoelastic Behaviour of Heel Pad During Weight-Bearing Activities of Daily Living.Subject-specific finite element modelling of the human foot complex during walking: sensitivity analysis of material properties, boundary and loading conditions.Strategies towards rapid generation of forefoot model incorporating realistic geometry of metatarsals encapsulated into lumped soft tissues for personalized finite element analysis.Effect of socks structures on plantar dynamic pressure distribution.Computer-based identification of type 2 diabetic subjects with and without neuropathy using dynamic planter pressure and principal component analysis.Finite element modeling of the first ray of the foot: a tool for the design of interventions.Mechanical compression-induced pressure sores in rat hindlimb: muscle stiffness, histology, and computational models.Automated identification of diabetes type-2 subjects with and without neuropathy using eigenvalues.Biomechanical behavior of plantar fat pad in healthy and degenerative foot conditions.Finite element analysis of plantar fascia during walking: a quasi-static simulation.Biomechanical response of the plantar tissues of the foot in healthy and degenerative conditions.Finite-element-based 3D computer modeling for personalized treatment planning in clubfoot deformity: Case report with technique description.
P2860
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P2860
Plantar soft tissue loading under the medial metatarsals in the standing diabetic foot.
description
2003 nî lūn-bûn
@nan
2003年の論文
@ja
2003年学术文章
@wuu
2003年学术文章
@zh
2003年学术文章
@zh-cn
2003年学术文章
@zh-hans
2003年学术文章
@zh-my
2003年学术文章
@zh-sg
2003年學術文章
@yue
2003年學術文章
@zh-hant
name
Plantar soft tissue loading under the medial metatarsals in the standing diabetic foot.
@en
Plantar soft tissue loading under the medial metatarsals in the standing diabetic foot.
@nl
type
label
Plantar soft tissue loading under the medial metatarsals in the standing diabetic foot.
@en
Plantar soft tissue loading under the medial metatarsals in the standing diabetic foot.
@nl
prefLabel
Plantar soft tissue loading under the medial metatarsals in the standing diabetic foot.
@en
Plantar soft tissue loading under the medial metatarsals in the standing diabetic foot.
@nl
P1476
Plantar soft tissue loading under the medial metatarsals in the standing diabetic foot.
@en
P304
P356
10.1016/S1350-4533(03)00029-8
P50
P577
2003-07-01T00:00:00Z