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February 28, 2026Journal of Functional Morphology and Kinesiology0 citationsOpen Access

Nonlinear Gait Variability and the Role of Cognitive-Physical Exercise in Mitigating Mobility Decline in Institutionalized Older Adults with Cognitive Impairment

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JGJoão GalrinhoMBMarco BatistaMGMarta A. Gonçalves

Key Points

  • This research aims to assess the impact of cognitive-physical exercise on gait complexity in older adults with cognitive impairment.
  • Participants included 42 institutionalized older adults, 26 with cognitive impairment and 16 controls.
  • An 8-week motor-cognitive exercise program involved 24 structured sessions targeting balance and coordination.
  • Gait was evaluated using inertial sensors during normal and cognitive task conditions.
  • Cognitive impairment group demonstrated increased gait complexity during dual-task walking, particularly in both limbs.
  • Significant improvement was noted in the left limb during single-task walking (p = 0.006).
  • Effect sizes indicated positive changes in gait adaptability under dual-task conditions.

Abstract

Background: Age-related cognitive decline is linked to reduced gait complexity and higher fall risk. Traditional linear gait measures may miss subtle motor-cognitive deficits in older adults with dementia. This study examined whether an 8-week motor-cognitive exercise program could improve gait adaptability in institutionalized older adults with cognitive impairment. Gait complexity, measured using Sample Entropy, was the primary outcome. Methods: Forty-two institutionalized older adults completed follow-up assessments, including 26 with cognitive impairment and 16 controls. Gait was assessed during normal walking (single-task) and while performing cognitive tasks (dual-task), such as naming animals or counting backward. Inertial sensors recorded stride intervals, and Sample Entropy was calculated to evaluate gait regularity and adaptability, (gait complexity). The intervention included 24 structured sessions combining physical and cognitive exercises targeting balance, coordination, and executive function. Non-parametric tests (Wilcoxon) were used, with Bonferroni correction for multiple comparisons. Results: Participants with cognitive impairment showed increased gait complexity, especially during dual-task walking. Significant improvements were found in both limbs under dual-task conditions (left: p = 0.015, effect size = 0.34; right: p = 0.030, effect size = 0.31). During single-task walking, a significant improvement was observed in the left limb (p = 0.006, effect size = 0.39). Conclusions: Motor-cognitive exercise may enhance non-linear gait complexity in institutionalized older adults with cognitive impairment. The use of dual-task training in rehabilitation and highlight the value of entropy-based gait assessment for detecting subtle functional changes. However, the lack of a randomized non-exercising cognitive impairment control group limits definitive conclusions about causality.

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Cite This Study

Galrinho et al. (2026) studied this question.

synapsesocial.com/papers/69a287e20a974eb0d3c03c1dhttps://doi.org/10.3390/jfmk11010097
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