Exploring the effects of increased socket-residual limb coupling integrity via vacuum assisted suspension on prosthetic control: a preliminary study in transtibial prosthesis users.

Disabil Rehabil

Northwestern University Prosthetics-Orthotics Center, Department of Physical Medicine and Rehabilitation, Northwestern University, Chicago, IL, USA.

Published: August 2024

AI Article Synopsis

  • This pilot study investigates how different levels of vacuum-assisted suspension in prosthetic sockets affect limb and body control in individuals with unilateral transtibial amputation.
  • Results indicate that higher vacuum levels reduce deviation during intentional sway tasks, suggesting improved control, but no significant differences were found in overall movement patterns across vacuum levels.
  • The study emphasizes the importance of socket fit in prosthetic performance and cautions against using standard movement tests designed for unimpaired individuals for assessing prosthetic users.

Article Abstract

Purpose: The prosthetic socket provides the critical interface between prosthesis and residuum. The purpose of this pilot study was to explore the effect of altering socket-residuum coupling integrity on limb and body control, through the use of vacuum-assisted suspension. A secondary purpose was to explore the potential use of two measurement tools designed to assess mobility in a clinical context.

Materials And Methods: Individuals with unilateral transtibial amputation performed intentional sway ( = 7) and treadmill walking ( = 6) tasks at three vacuum levels. Sway deviation from a straight-line path to peripheral targets was measured using an instrumented balance platform. Step width variability and targeting accuracy were measured using an augmented reality treadmill.

Results: There was a significant difference in intentional sway performance toward the target on the anterior diagonal toward the prosthetic side ( = 0.036); higher vacuum levels tended toward less deviation from a straight-line path. We found no group differences between total intentional sway deviation, step width variability or stepping accuracy across vacuum levels.

Conclusions: Improved socket-residuum coupling integrity vacuum may have measurable effects on functional control that warrant further investigation. We highlight limitations of the clinical testing paradigms to inform future work.Implications for rehabilitationThe fit of the socket is a critical factor in the success of lower limb prosthesis use.Vacuum-assisted suspension modifies the coupling between the residuum and socket.Changes in socket-residuum coupling may lead to measurable differences in control; however, these may be activity and person-specific.Clinically intended instrumented tests of movement function derived for an intact anatomy should be used with caution when assessing prosthesis users.

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Source
http://dx.doi.org/10.1080/09638288.2024.2395454DOI Listing

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