Age-Associated Changes on Gait Smoothness in the Third and the Fourth Age

Author:

Pau Massimiliano1ORCID,Bernardelli Giuseppina23,Leban Bruno1,Porta Micaela1ORCID,Putzu Valeria4,Viale Daniela45,Asoni Gesuina45,Riccio Daniela45,Cerfoglio Serena67ORCID,Galli Manuela6ORCID,Cimolin Veronica67ORCID

Affiliation:

1. Department of Mechanical, Chemical and Materials Engineering, Piazza d’Armi, 09123 Cagliari, Italy

2. Department of Clinical Sciences and Community Health (DISCCO), University of Milan, 20122 Milano, Italy

3. Exercise Medicine Unit, IRCCS Istituto Auxologico Italiano, Via Pier Lombardo 22, 20135 Milano, Italy

4. Center for Cognitive Disorders and Dementia, ASL Cagliari District, 09121 Cagliari, Italy

5. Geriatric Unit, SS. Trinità Hospital, 09121 Cagliari, Italy

6. Department of Electronics, Information and Bioengineering, Politecnico di Milano, Piazza Leonardo da Vinci 32, 20133 Milano, Italy

7. Istituto Auxologico Italiano, IRCCS, S. Giuseppe Hospital, Piancavallo, 28824 Oggebbio, Italy

Abstract

Although gait disorders represent a highly prevalent condition in older adults, the alterations associated with physiologic aging are often not easily differentiable from those originated by concurrent neurologic or orthopedic conditions. Thus, the detailed quantitative assessment of gait patterns represents a crucial issue. In this context, the study of trunk accelerations may represent an effective proxy of locomotion skills in terms of symmetry. This can be carried out by calculating the Harmonic Ratio (HR), a parameter obtained through the processing of trunk accelerations in the frequency domain. In this study, trunk accelerations during level walking of 449 healthy older adults (of age > 65) who were stratified into three groups (Group 1: 65–74 years, n = 175; Group 2: 75–85 years, n = 227; Group 3: >85 years, n = 47) were acquired by means of a miniaturized Inertial Measurement Unit located in the low back and processed to obtain spatio-temporal parameters of gait and HR, in antero-posterior (AP), medio-lateral (ML) and vertical (V) directions. The results show that Group 3 exhibited a 16% reduction in gait speed and a 10% reduction in stride length when compared with Group 1 (p < 0.001 in both cases). Regarding the cadence, Group 3 was characterized by a 5% reduction with respect to Groups 1 and 2 (p < 0.001 in both cases). The analysis of HR revealed a general trend of linear decrease with age in the three groups. In particular, Group 3 was characterized by HR values significantly lower (−17%) than those of Group 1 in all three directions and significantly lower than Group 2 in ML and V directions (−10%). Taken together, such results suggest that HR may represent a valid measure to quantitatively characterize the progressive deterioration of locomotor abilities associated with aging, which seems to occur until the late stages of life.

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Computer Networks and Communications,Hardware and Architecture,Signal Processing,Control and Systems Engineering

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