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Sex and age differences of postural control in community-dwelling older adults

Rasku, Jyrki; Pyykkö, Ilmari; Juhola, Martti; Toppila, Esko; Zou, Jing; Launerd, Lenore; Siggeirsdottir, Kristin; Jonsson, Palmi; Hoffman, Howard J.; Rasmussen, Cuno; Caserotti, Paolo; Gudnason, Vilmundur; Petersen, Hannes (2026-03-13)

 
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Sex_and_age_differences_of_postural_control_in_community-dwelling_older_adults.pdf (1.181Mt)
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Rasku, Jyrki
Pyykkö, Ilmari
Juhola, Martti
Toppila, Esko
Zou, Jing
Launerd, Lenore
Siggeirsdottir, Kristin
Jonsson, Palmi
Hoffman, Howard J.
Rasmussen, Cuno
Caserotti, Paolo
Gudnason, Vilmundur
Petersen, Hannes
13.03.2026

Frontiers in Human Neuroscience
doi:10.3389/fnhum.2026.1721481
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Julkaisun pysyvä osoite on
https://urn.fi/URN:NBN:fi:tuni-202603313646

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Peer reviewed
Tiivistelmä
Objective: Force platforms are widely used to assess postural stability and fall risk in older adults. However, traditional parameters often capture overlapping phenomena and fail to fully reflect underlying control mechanisms. This study evaluated combining of six partly independent parameters to distinguish sex and age-related differences in postural control among community-dwelling elderly.Methods: A total of 4,588 adults aged 65–95 years were assessed using static posturography under non-visual conditions. Six time-domain parameters, reflect-ing torque control, positional control and anticipatory control of the center point of force. Romberg’s quotient was included for comparison.Results: Females exhibited greater stability, whereas males relied more on cor-rective force moments and showed larger sway amplitudes. Classification trees predicted sex with 71% accuracy using three parameters. Aging was associated with increased anteroposterior sway amplitude and a reduction in the critical time for transition between open- and closed-loop control. Additional age-sensitive parameters included mediolateral velocity zero-crossing rate and steady-phase duration. Age could be predicted within ±5 years for both sexes. Romberg’s quo-tient could discriminate age in 30% and sex differences in 60% of participants, only.Conclusion: Postural stability is influenced by both sex and age. The identified combination of parameters provides a framework for estimating the “biological age” of postural control and investigate balance impairments. Age-related decline appears consistent within a 5-year range, bur does not exclude the effect of life-style or comorbid factors. This study demonstrates that use of multidimensional data vectors with the implementation of AI-modeling can improve the predictive accuracy and clinical applicability of posturography.
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PL 617
33014 Tampereen yliopisto
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Kalevantie 5
PL 617
33014 Tampereen yliopisto
oa[@]tuni.fi | Tietosuoja | Saavutettavuusseloste