Rocker-profile design shoes improve pendular energy recovery in walking with no effects on total mechanical work.
biomechanical · Level V
Where this comes from
- Record sourced from PubMed, PMID 36283145.
- Also identified by DOI 10.1016/j.jbiomech.2022.111345.
- No licence information is recorded for this record.
- Because redistribution is not established, this page shows the abstract only. Follow the links below for the full text.
Abstract
Rocker-profile design shoes are commonly used in clinical settings. Such footwear reduces in-shoe pressure over the forefoot area during the gait, and depending on the rocker-profile type (i.e., toe-only, heel negative, or double rocker), affects lower limb kinematics, kinetics, and muscle electromyographic activity. However, whether wearing rocker-profile shoes influence the dynamics of the body centre of mass (BCoM) is unknown. We used a mathematical procedure combining Lissajous contours and Fourier analysis to describe the 3D trajectory of the BCoM in walking with rocker-profile (RollingSole) and flat (Control) shoes at 0.97, 1.25, and 1.53 m s<sup>-1</sup> in 30 participants. Harmonics amplitude and phase were compared using linear and circular statistics, respectively. External (W<sub>ext</sub>), kinematic internal (W<sub>int,k</sub>) and total (W<sub>tot</sub>) mechanical works, and the mechanical energy fraction recovered from a pendular exchange of potential and kinetic energy were also calculated. RollingSole shoes yielded greater W<sub>ext</sub> (1-9 %; P < 0.05) and fractional pendular energy exchange (1-8 %; P < 0.01), with lower W<sub>int,k</sub> (2-5 %; P < 0.05) and unchanged W<sub>tot</sub> (P ≥ 0.30). RollingSole shoes led also to a greater mean height of the BCoM (1-3 %; P < 0.01), and amplitude of the anteroposterior and vertical symmetric, and mediolateral 2nd-to-5th harmonics (1-30 %; P < 0.01). No differences between shoes were found for the harmonics phase (P ≥ 0.14). Our results indicate that RollingSole shoes enhanced an inverted pendulum-like behaviour of the BCoM during walking with no alterations in total mechanical work. This may result from the combination of rocker-profile design and greater BCoM height (through thicker soles) with such shoes, increasing recovery of mechanical energy in step-to-step transitions and mid-stance.
Medical subject headings
- Shoes
- Walking