Mark Price, PhD

Postdoctoral Research Associate

AdjuSST: Adjustable Surface Stiffness Treadmill


I led the design and fabrication of an adjustable surface stiffness treadmill at UMass Amherst. This treadmill is designed to deflect vertically under load using a flexible cantilever beam suspension. We can adjust the vertical stiffness in real-time during walking by changing the effective length of the cantilever beam with a servo-controlled set of rollers. The variable stiffness treadmill has a narrow belt, located next to a rigid treadmill, allowing it to be used as a dual-belt treadmill with asymmetric ground stiffness.

We will use this treadmill to study locomotor adaptation to ground stiffness perturbations, and eventually investigate its effect on correcting weight-bearing asymmetry for stroke rehabilitation.

Publications


Weight-bearing symmetry changes after asymmetric surface stiffness walking


Mark Price, Elena G Schell, Jonaz Moreno Jaramillo, Jenna M Chiasson, Leah C Metsker, Meghan E Huber, Wouter Hoogkamer

Journal of Neurophysiology, vol. 135(3), 2026, pp. 579-589


Forward Simulations of Walking on Surfaces with Asymmetric Mechanical Impedance: Insights for Gait Rehabilitation


Mark Price*, Banu Abdikadirova*, Wouter Hoogkamer, Meghan E Huber

47th Annual International Conference of the IEEE Engineering in Medicine and Biology Society, 2025


Design and Characterization of the AdjuSST: An Adjustable Surface Stiffness Treadmill


Mark Price, Dominic Locurto, Banu Abdikadirova, Meghan E Huber, Wouter Hoogkamer

IEEE/ASME Transactions on Mechatronics, 2024