PubMed HealthSearch

PubMed · 7503469

Parameter estimation for a prosthetic ankle.

Abstract

The mechanical parameters of a model of an energy storage and return ankle prosthesis are estimated for normal level walking by means of an optimization procedure. The walking cycle is divided into six fields, such that the power does not change sign within each field; the transition between successive fields occurs at zero power. The optimal spring stiffness as a function of time, is found by optimizing a quadratic cost function to minimize the difference between the estimated ankle moments and the moments in normal walking. The optimization is subjected to four continuous constraints within each field and to two continuity constraints for the transitions between successive fields. The time-varying spring stiffness and the implications of additional external energy are discussed and are presented as recommendations for the designer.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

E Singer, G Ishai, E Kimmel. Parameter estimation for a prosthetic ankle.. https://doi.org/10.1007/bf02584466

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Identification of physiological systems: a robust method for non-parametric impulse response estimation.

The identification of non-parametric impulse response functions (IRFs) from noisy finite-length data records is analysed using the techniques of matrix perturbation theory. Based on these findings, a method for IRF estimation is developed that is more robust than existing techniques, particularly when the input is non-white. Furthermore, methods are developed for computing confidence bounds on the resulting IRF estimates. Monte Carlo simulations are used to assess the capabilities of this new method and to demonstrate its superiority over classical techniques. An application to the identification of dynamic ankle stiffness in humans is presented.

Ankle Joint

Modification of the Van Nes rotationplasty: report of a case.

Rotationplasty is a reconstructive option that provides a highly functional limb after tumor resection about the knee in the skeletally immature patient. However, in the very young child with large intramedullary extension of the tumor, leg length may not be possible to maintain. Described is a modification of the Van Nes rotationplasty that preserves the proximal tibial physis, allowing maximization of future growth.

Ankle Joint

Identification of intrinsic and reflex contributions to human ankle stiffness dynamics.

We have examined dynamic stiffness at the human ankle using position perturbations which were designed to provide a wide-bandwidth input with low average velocity. A parallel-cascade, nonlinear system identification technique was used to separate overall stiffness into intrinsic and reflex components. Intrinsic stiffness was described by a linear, second-order system similar to that demonstrated previously. Reflex stiffness dynamics were more complex, comprising a delay, a unidirectional rate-sensitive element and then lowpass dynamics. Reflex mechanisms were found to be most important at frequencies of 5-10 Hz. The gain and dynamics of reflex stiffness varied strongly with the parameters of the perturbation, the gain decreasing as the mean velocity of the perturbation increased. Under some conditions, torques generated by reflex mechanisms were of the same magnitude as those from intrinsic mechanisms. It is concluded that reflex stiffness can be large enough to be important functionally, but that its effects will depend strongly upon the particular conditions.

Ankle Joint