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Predictive Ability of Achilles Tendon Elastography for Frailty in Older Adults

Overview
Journal Eur Geriatr Med
Specialty Geriatrics
Date 2024 Aug 1
PMID 39090315
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Abstract

Purpose: The Achilles tendon (AT) is the largest and strongest tendon in the human body, and its elasticity is known to be affected by the aging process. However, the relation between AT stiffness and frailty in older individuals remains uncertain. This study aims to explore the potential of Achilles tendon shear wave elastography (AT-SWE) as a tool for assessing physical frailty in older adults.

Methods: A total of 148 patients aged 65 years and over were included in this cross-sectional study. Patients with heart failure, AT injury, stroke history, active malignancy, and claudication were excluded. All patients underwent a comprehensive geriatric assessment. Physical frailty assessment was performed with the fried frailty phenotype. Achilles tendon elastography was measured by ultrasound.

Results: The mean age of the participants was 73.8 years and 62.2% were female. 30.4% of the participants were defined as frail. Achilles tendon shear wave elastography measurements were statistically lower in the frail group (p < 0.05). In the multivariate regression analysis, AT-SWE demonstrated a statistically significant association with frailty independent of confounding factors (OR 0.982, 95% CI 0.965-0.999, p value = 0.038). In the ROC curve analysis, the area under the curve for AT-SWE was 0.647 (95% CI, 0.564-0.724, p < 0.01) and the optimum cut-off point was 124.1 kilopascals.

Conclusion: These findings highlight the value of AT-SWE as a non-invasive and objective tool for predicting frailty in older adults.

References
1.
Taguchi C, Menezes P, Melo A, Santana L, Conceicao W, Souza G . Frailty syndrome and risks for falling in the elderly community. Codas. 2022; 34(6):e20210025. PMC: 9886293. DOI: 10.1590/2317-1782/20212021025pt. View

2.
Tohno Y, Takano Y, Tohno S, Moriwake Y, Minami T, Takakura Y . Age-dependent decreases of phosphorus and magnesium in human Achilles' tendons. Biol Trace Elem Res. 2000; 74(1):1-9. DOI: 10.1385/BTER:74:1:1. View

3.
Varan H, Kizilarslanoglu M, Tuna Dogrul R, Arik G, Esme M, Kara O . Comparative Evaluation of Predictive Ability of Comprehensive Geriatric Assessment Components Including Frailty on Long-Term Mortality. Exp Aging Res. 2021; 47(3):220-231. DOI: 10.1080/0361073X.2021.1876395. View

4.
Acuna S, Ebrahimi A, Pomeroy R, Martin J, Thelen D . Achilles tendon shear wave speed tracks the dynamic modulation of standing balance. Physiol Rep. 2019; 7(23):e14298. PMC: 6900496. DOI: 10.14814/phy2.14298. View

5.
Payne C, Watt P, Cercignani M, Webborn N . Reproducibility of shear wave elastography measuresof the Achilles tendon. Skeletal Radiol. 2017; 47(6):779-784. DOI: 10.1007/s00256-017-2846-8. View