The passive, human calf muscles in relation to standing: the non-linear decrease from short range to long range stiffness.
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Asymmetric sensory reweighting in human upright stance.Clinical, biomechanical, and physiological translational interpretations of human resting myofascial tone or tension.Strategy switching in the stabilization of unstable dynamics.Spinal mechanisms may provide a combination of intermittent and continuous control of human posture: predictions from a biologically based neuromusculoskeletal modelFoot anatomy specialization for postural sensation and control.A mechanism for sensory re-weighting in postural control.Identification of the plant for upright stance in humans: multiple movement patterns from a single neural strategy.Sway-dependent changes in standing ankle stiffness caused by muscle thixotropy.Experimental measure of arm stiffness during single reaching movements with a time-frequency analysis.Reduced effects of tendon vibration with increased task demand during active, cyclical ankle movementsPostural compensation strategy depends on the severity of vestibular damage.Nonlinear 2D arm dynamics in response to continuous and pulse-shaped force perturbations.Human standing: does the control strategy preprogram a rigid knee?Visual control of stable and unstable loads: what is the feedback delay and extent of linear time-invariant control?Postural control at the human wrist.Contribution of muscle short-range stiffness to initial changes in joint kinetics and kinematics during perturbations to standing balance: A simulation study.The passive, human calf muscles in relation to standing: the short range stiffness lies in the contractile component.Shear wave elastography reveals different degrees of passive and active stiffness of the neck extensor muscles.Intrinsic ankle stiffness during standing increases with ankle torque and passive stretch of the Achilles tendon.Effect of Ankle Range of Motion (ROM) and Lower-Extremity Muscle Strength on Static Balance Control Ability in Young Adults: A Regression Analysis.Human Postural Control.Bed Rest, Exercise Countermeasure and Reconditioning Effects on the Human Resting Muscle Tone System.Interaction between muscle tone, short-range stiffness and increased sensory feedback gains explains key kinematic features of the pendulum test in spastic cerebral palsy: A simulation study
P2860
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P2860
The passive, human calf muscles in relation to standing: the non-linear decrease from short range to long range stiffness.
description
2007 nî lūn-bûn
@nan
2007年の論文
@ja
2007年学术文章
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2007年学术文章
@zh
2007年学术文章
@zh-cn
2007年学术文章
@zh-hans
2007年学术文章
@zh-my
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2007年學術文章
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2007年學術文章
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name
The passive, human calf muscle ...... range to long range stiffness.
@en
The passive, human calf muscle ...... range to long range stiffness.
@nl
type
label
The passive, human calf muscle ...... range to long range stiffness.
@en
The passive, human calf muscle ...... range to long range stiffness.
@nl
prefLabel
The passive, human calf muscle ...... range to long range stiffness.
@en
The passive, human calf muscle ...... range to long range stiffness.
@nl
P2860
P1476
The passive, human calf muscle ...... range to long range stiffness.
@en
P2093
Constantinos N Maganaris
Martin Lakie
P2860
P304
P356
10.1113/JPHYSIOL.2007.140046
P407
P50
P577
2007-09-06T00:00:00Z